Pipeline project management system, management server, pipeline project management method, and pipeline project management program
Through the pipeline engineering management system, the coordinated work of the management server and the performance acquisition terminal is solved, and the cumbersome problems of document creation and management in pipeline engineering are realized, and efficient processing and management of construction planning and performance data are achieved.
Patent Information
- Application Number
- CN202380073641.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2022-10-18
- Filing Date
- 2023-07-27
- Publication Date
- 2025-05-30
AI Technical Summary
In pipeline engineering business, the process of creating and managing a large number of files is cumbersome, resulting in complex data processing and increasing the operating burden of project performance management.
A pipeline engineering management system was designed to collaborate between the management server and the performance acquisition terminal, generate and associate construction planning information and performance information, automatically create and manage related files, and reduce manual operations.
It realizes efficient processing and management of construction planning data and project performance data, simplifies the file creation process, and reduces the operating burden of project performance management.
Smart Images

Figure CN120077402A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a pipeline project management system, a management server, a pipeline project management method, and a pipeline project management program for managing pipeline projects. Background Art
[0002] Generally, in the water supply business, it is required to record the content of the project according to the progress of the project. The content to be recorded varies depending on each water supply business entity that contracts the project. In addition, in the water supply business, it is necessary to create and submit a document in a format specified by each water supply business entity.
[0003] In the water supply business, for example, the shape, dimensions, etc. of the completed part (hereinafter referred to as "completed form") in the planned construction part are measured and recorded according to specified standards. In addition, in the water supply business, the difference between the measured value and the design value of the project is recorded (hereinafter referred to as "completed form management"). In addition, in the completed form management, a completed form management table in a specified format that records these design values, measured values, and the difference between the measured value and the design value is created.
[0004] In the completed form management, generally, the person in charge handwrites the measured values actually measured at the construction site on a management form on paper. In addition, the person in charge transcribes the data of the measured values in the management form on paper into spreadsheet software or the like on a computer in an office or the like using a keyboard or the like.
[0005] Therefore, in Patent Document 1, a scheme is proposed to input information on inspections at the construction site required in construction management using a mobile terminal, and to support the creation of a completed form management table by collecting the input information with a server.
[0006] In addition, in each process of the project, photo management is required. During construction, the number of photos required for management is very large. Therefore, the operation of photo management takes a lot of time. For example, the operation of associating the management location of the construction part with the photos taken at that location by the person in charge takes a lot of time. In addition, for photo management, the person in charge takes a photo of the blackboard with the content of the project handwritten on it together with the construction status at the site. Therefore, taking photos for photo management also takes time.
[0007] Therefore, in Patent Documents 2 and 3, a scheme of electronically creating a blackboard and generating a photo image with an electronic blackboard is proposed.
[0008] Prior Art Documents
[0009] Patent Documents
[0010] Patent Document 1: Japanese Unexamined Patent Application Publication No. 2017-102935
[0011] Patent Document 2: Japanese Unexamined Patent Application Publication No. 2008-225862
[0012] Patent Document 3: Japanese Unexamined Patent Application Publication No. 2016-189199 Summary of the Invention
[0013] Problems to be Solved by the Invention
[0014] As shown in the above Patent Documents 1 to 3, in the completion of form management or photo management, etc., a document associated with a construction plan and construction results is created.
[0015] However, the pipeline engineering business has a plurality of processes. In addition, in the pipeline engineering business, in the plurality of processes, a plurality of documents need to be created respectively. Therefore, in the pipeline engineering business, a large number of documents need to be created.
[0016] Furthermore, in the pipeline engineering business, a plurality of pipeline engineering contractors contract the plurality of processes. Therefore, there are also many pipeline engineering contractors related to the creation of the above documents.
[0017] In this way, in the pipeline engineering business, since there are many types of documents created and there are also many pipeline engineering contractors related to document creation, when using the data of the construction plan and the data of the construction results to create documents, the amount of data to be processed is large and the data processing is also complicated. Therefore, in the pipeline engineering business, the burden on the operator who manages the results of the project including document creation is large.
[0018] In contrast, it is desired to efficiently process the data of the construction plan and the data of the construction results, and to more efficiently manage the results of the project.
[0019] An object of the present invention is to realize a pipeline engineering management system and the like that can efficiently process the data of the construction plan and the data of the construction results and can more efficiently manage the results of the project.
[0020] Technical Means for Solving the Problems
[0021] A pipeline project management system according to an embodiment of the present invention is a system for managing pipeline projects. The pipeline project management system includes: a management server; and a performance acquisition terminal capable of communicating with the management server and acquiring data related to project performance corresponding to management items for which performance is managed in the pipeline project as performance information. The management server includes: a construction plan information generation unit that associates information related to the construction plan of the pipeline that is the object of the pipeline project with the management items and generates construction plan information; and a construction management information generation unit that associates the performance information acquired by the performance acquisition terminal with the construction plan information and generates construction management information (first structure).
[0022] According to the above structure, the management server generates construction plan information in which information related to the construction plan is associated with management items of management performance.
[0023] In addition, the performance acquisition terminal acquires data related to project performance corresponding to the management items as performance information. In contrast, the management server associates the performance information with the construction plan information and generates construction management information.
[0024] Thereby, the construction plan information and the performance information can be associated via the management items. Therefore, data processing of the construction plan data and the project performance data can be efficiently performed, and the project performance can be managed more efficiently.
[0025] In the first structure, the construction management information generation unit associates the construction plan information and the performance information with a management position that is the management object in the pipeline and generates the construction management information (second structure).
[0026] Thereby, a large amount of data of the construction plan information and the performance information can be efficiently sorted out, and comparison of the construction plan information and the performance information can be easily performed at each management position.
[0027] In the second structure, the management server further includes a work information management list generation unit that creates list data of performance information acquired during a specified project period based on the construction management information (third structure).
[0028] Thereby, the performance information acquired during the specified project period can be confirmed in a list. Therefore, it is possible to prompt the on-site work responsible person to acquire the performance information that should be acquired.
[0029] In the second structure, the management server further includes a file creation unit that creates a file associated with the performance information for each management position in a specified format based on the construction management information (fourth structure).
[0030] Accordingly, based on the construction management information, the workload for creating files for each management location can be reduced.
[0031] In the second structure, the construction plan information includes design values related to the earthwork of the pipeline project. The data related to the project actual performance is the measured values corresponding to the design values. The construction management information generation unit calculates the difference between the design values and the measured values included in the actual performance information obtained in the actual performance acquisition terminal, associates the design values, the measured values, and the difference with the management location, and generates the construction management information (fifth structure).
[0032] Accordingly, the design values, the measured values, and the difference between the design values and the measured values related to the earthwork in the pipeline project can be associated with the management location and managed as construction management information.
[0033] Therefore, so-called completion form management of the design values, the measured values, and their differences can be efficiently performed.
[0034] In the second structure, the management item is a photo. The actual performance acquisition terminal acquires the photographed photo data as the actual performance information. The construction management information generation unit associates the photo data photographed by the actual performance acquisition terminal with the management location and generates the construction management information (sixth structure).
[0035] Accordingly, performance management based on photos (photo management) can be associated with the management location. Therefore, photo management can be efficiently performed.
[0036] In the sixth structure, the management server further has an electronic blackboard creation unit, and the electronic blackboard creation unit creates an electronic blackboard to be appended to the photo data based on the construction plan information. The construction management information generation unit associates the photo data appended with the electronic blackboard with the management location and generates the construction management information (seventh structure).
[0037] Accordingly, the management server can easily create an electronic blackboard to be appended to the photo data. Therefore, image data with the electronic blackboard appended to the photo data can be easily created. Therefore, the image data appended with the electronic blackboard can be efficiently managed.
[0038] In any one of the first to sixth structures, the construction plan information, the actual performance information, and the construction management information are respectively associated with the operation scope in the pipeline project (eighth structure).
[0039] In the above structure, pipeline engineering can be planned and managed for each operation scope. Therefore, even in the case of a planning change, it is easy to make a planning change and perform arithmetic processing, etc. according to the operation scope.
[0040] In the eighth structure, the construction planning information is associated with the operation schedule information, which is information related to the schedule of the operations in the operation scope. The actual result acquisition terminal acquires the construction planning information from the management server. On the other hand, after acquiring the actual result information corresponding to the construction planning information and associated with the operation scope and the operation schedule information, the actual result information is output to the management server, and the management server corrects the construction planning information based on the actual result information output from the actual result acquisition terminal (ninth structure).
[0041] As described above, in pipeline engineering, by using the actual result information associated with the operation scope to correct the construction planning information, it is possible to easily correct the construction planning information. That is, it is possible to easily change the planning of the pipeline engineering according to the operation scope.
[0042] The management server according to an embodiment of the present invention is used to manage pipeline engineering. The management server has: a construction planning information generation unit that associates information related to the construction planning of the pipeline that is the object of the pipeline engineering with the management items for managing the actual results in the pipeline engineering, and generates construction planning information; a communication unit that can communicate with an actual result acquisition terminal that acquires data related to the engineering actual results corresponding to the management items as actual result information; and a construction management information generation unit that receives the actual result information from the actual result acquisition terminal, associates the received actual result information with the construction planning information, and generates construction management information (tenth structure).
[0043] According to the above structure, the management server generates the construction planning information that associates the information related to the construction planning with the management items.
[0044] In addition, the management server associates the actual result information acquired by the actual result acquisition terminal with the construction planning information, and generates construction management information.
[0045] Thereby, it is possible to establish an association between the construction planning information and the actual result information via the management items. Therefore, it is possible to efficiently perform data processing on the data of the construction planning and the data of the engineering actual results, and it is possible to more efficiently manage the actual results of the project.
[0046] In addition, thereby, it is possible to use the management server and the actual result acquisition terminal to efficiently perform arithmetic processing.
[0047] In the tenth structure, the construction management information generation unit associates the construction plan information and the actual performance information with the management positions in the pipeline that are the management targets, and generates the construction management information (eleventh structure).
[0048] Thereby, it is possible to efficiently organize the huge data of the construction plan information and the actual performance information, and it is easy to compare the construction plan information and the actual performance information at each management position.
[0049] In the tenth structure or the eleventh structure, the management server further has a file creation unit, and the file creation unit creates a file associated with the actual performance information for each management position in a prescribed format based on the construction management information (twelfth structure).
[0050] Thereby, based on the construction management information, it is possible to reduce the operation burden when creating files for each management position.
[0051] A pipeline engineering management method according to an embodiment of the present invention controls a pipeline engineering management system that has an actual performance acquisition terminal and a management server and manages pipeline engineering. The pipeline engineering management method includes: a construction plan information generation process in which the management server associates information related to the construction plan of a pipeline that is the object of the pipeline engineering with management items and generates construction plan information; a construction plan information transmission process in which the management server transmits the construction plan information to the actual performance acquisition terminal; an actual performance information acquisition process in which the actual performance acquisition terminal acquires data related to the engineering actual performance corresponding to the management items in the pipeline engineering as actual performance information; an actual performance information reception process in which the management server receives the actual performance information from the actual performance acquisition terminal; and a construction management information generation process in which the management server associates the actual performance information received from the actual performance acquisition terminal with the construction plan information and generates construction management information (thirteenth structure).
[0052] According to the above structure, the management server generates construction plan information in which information related to the construction plan is associated with the management items of the management actual performance.
[0053] In addition, the actual performance acquisition terminal acquires data related to the engineering actual performance corresponding to the management items as actual performance information. In contrast, the management server associates the actual performance information with the construction plan information and generates construction management information.
[0054] Thereby, it is possible to establish an association between the construction plan information and the actual performance information via the management items. Therefore, it is possible to efficiently perform data processing on the data of the construction plan and the data of the engineering actual performance, and it is possible to manage the actual performance of the project more efficiently.
[0055] In the thirteenth structure, in the construction management information generation process, the management server associates the construction plan information and the actual performance information with the management positions in the pipeline that are the management objects, and generates the construction management information (fourteenth structure).
[0056] Thereby, it is possible to efficiently organize the huge data of the construction plan information and the actual performance information, and it is easy to compare the construction plan information and the actual performance information at each management position.
[0057] In the thirteenth structure or the fourteenth structure, the pipeline engineering management method further has a document creation process, and the management server creates a document associated with the actual performance information for each of the management positions in a prescribed format based on the construction management information (fifteenth structure).
[0058] Thereby, based on the construction management information, it is possible to reduce the work load when creating documents for each management position.
[0059] A pipeline engineering management program according to an embodiment of the present invention controls a pipeline engineering management system that has an actual performance acquisition terminal and a management server and manages a pipeline engineering. The pipeline engineering management program causes the management server to execute the following processes: a construction plan information generation process of associating information related to a construction plan of a pipeline that is an object of the pipeline engineering with management items and generating construction plan information; a construction plan information transmission process of transmitting the construction plan information to the actual performance acquisition terminal; an actual performance information reception process of receiving the actual performance information from the actual performance acquisition terminal that has acquired actual performance information including data related to the engineering actual performance corresponding to the management items in the pipeline engineering; and a construction management information generation process of associating the actual performance information received from the actual performance acquisition terminal with the construction plan information and generating construction management information (sixteenth structure).
[0060] According to the above structure, the management server generates construction plan information in which information related to a construction plan is associated with management items of management actual performance.
[0061] In addition, the management server associates the actual performance information acquired by the actual performance acquisition terminal with the construction plan information and generates construction management information.
[0062] Thereby, it is possible to establish an association between the construction plan information and the actual performance information via the management items. Therefore, it is possible to efficiently perform data processing on the data of the construction plan and the data of the engineering actual performance, and it is possible to more efficiently manage the actual performance of the project.
[0063] In the sixteenth structure, in the construction management information generation process, there is a process (seventeenth structure) in which the management server associates the construction plan information and the actual performance information with the management positions in the pipeline that are the objects of management to generate the construction management information.
[0064] Thereby, it is possible to efficiently organize the huge data of the construction plan information and the actual performance information, and it is easy to compare the construction plan information and the actual performance information at each management position.
[0065] In the sixteenth structure or the seventeenth structure, the management server is also made to execute a submission document creation process (eighteenth structure) of creating a document associated with the actual performance information for each management position in a prescribed format based on the construction management information.
[0066] Thereby, based on the construction management information, it is possible to reduce the work burden when creating files for each management position.
[0067] Advantages of the Invention
[0068] In the pipeline construction management system according to an embodiment of the present invention, the management server has: a construction plan information generation unit that associates information related to the construction plan of the pipeline that is the object of the pipeline construction with the management items to generate construction plan information; and a construction management information generation unit that associates the actual performance information acquired by the actual performance acquisition terminal with the construction plan information to generate construction management information.
[0069] Thereby, it is possible to efficiently perform data processing on the construction plan data and the project actual performance data, and it is possible to manage the actual performance of the project more efficiently. BRIEF DESCRIPTION OF THE DRAWINGS
[0070] Figure 1 It is a functional block diagram showing the schematic structure of the water supply pipe construction management system according to Embodiment 1 of the present invention.
[0071] Figure 2 It is a functional block diagram showing the schematic structure of the management server, the construction plan terminal, and the actual performance acquisition terminal included in the water supply pipe construction management system.
[0072] Figure 3 It is a diagram for explaining the excavation trench width and the covering soil of the place where the water supply pipe is buried.
[0073] Figure 4 It is a diagram for explaining the types and thicknesses of the road pavement or the roadbed.
[0074] Figure 5 It is a diagram for explaining the method of setting the starting point and the ending point of the pipeline of the water supply pipe that is the object of the water supply pipe construction.
[0075] Figure 6 It is a diagram for explaining a method of setting the management position of pipelines in a water supply pipeline project.
[0076] Figure 7 It is a flowchart showing the process of the water supply pipeline project management method of the water supply pipeline project management system for controlling and managing the water supply pipeline project.
[0077] Figure 8 It is a functional block diagram showing the schematic structure of the water supply pipeline project management system according to Embodiment 2 of the present invention.
[0078] Figure 9 It is a diagram showing the prototype of a completion form management table as an example of construction planning information.
[0079] Figure 10 It is a diagram showing a completion form management table as an example of a submitted document.
[0080] Figure 11 It is a functional block diagram showing the schematic structure of the water supply pipeline project management system according to Embodiment 3 of the present invention.
[0081] Figure 12 It is a diagram for explaining a method of setting the management position of pipelines in photo management.
[0082] Figure 13 It is a diagram showing an example of an electronic blackboard.
[0083] Figure 14 It is a diagram showing an example of a job information management list.
[0084] Figure 15 It is a diagram showing an example of the monitoring image of the performance acquisition terminal during photo shooting.
[0085] Figure 16 It is a diagram showing the monitoring image with an additional electronic blackboard.
[0086] Figure 17 It is a functional block diagram showing the schematic structure of the water supply pipeline project management system according to Embodiment 4 of the present invention.
[0087] Figure 18 It is a diagram schematically showing sectional drawing data.
[0088] Figure 19 It is a diagram schematically showing construction planning information.
[0089] Figure 20 It is a diagram schematically showing the correction process of construction planning information. Detailed implementation mode
[0090] Hereinafter, each embodiment will be described with reference to the accompanying drawings. In each figure, the same reference numerals are assigned to the same parts, and the description of the same parts will not be repeated. In addition, the dimensions of the structural members in each figure do not faithfully represent the actual dimensions of the structural members and the dimensional ratios of the respective structural members, etc.
[0091] [Embodiment 1]
[0092] (Water supply pipe construction management system)
[0093] Figure 1 is a functional block diagram showing the schematic structure of the water supply pipe construction management system (pipe line construction management system) 1 according to Embodiment 1 of the present invention.
[0094] The water supply pipe construction management system 1 is a system for managing the actual achievements of water supply pipe construction (pipe line construction). The water supply pipe construction refers to the work of burying water supply pipes, etc. underground. The water supply pipe construction includes not only the work of newly burying water supply pipes, etc. underground, but also the work of renewing the water supply pipes, etc. buried underground. The water supply pipes, etc. include not only water supply pipes, but also components required for forming a pipe line such as valves.
[0095] As Figure 1 shown, the water supply pipe construction management system 1 includes a management server 3, a construction plan terminal 5, and an actual achievement acquisition terminal 7. The management server 3 and the construction plan terminal 5 are communicably connected to each other via a network such as the Internet. In addition, the management server 3 and the actual achievement acquisition terminal 7 are communicably connected to each other via a network such as the Internet.
[0096] The management server 3 is a server device having a database storing various data for managing water supply pipe construction and providing a function for processing the data.
[0097] The construction plan terminal 5 is a front-end terminal for performing an operation of creating information related to a construction plan for a pipe line of a water supply pipe that is the object of water supply pipe construction. The user of the construction plan terminal 5 is a plan manager U1 who is in charge of creating the construction plan. The construction plan terminal 5 is used by the plan manager U1 as the user to create a construction plan. The construction plan terminal 5 can be implemented by, for example, a personal computer or a tablet terminal. The construction plan terminal 5 accesses the management server 3 through wired or wireless communication, and performs an operation of associating information related to a construction plan for a pipe line of a water supply pipe that is the object of the water supply pipe construction with management items for managing actual achievements in the water supply pipe construction.
[0098] The actual result acquisition terminal 7 acquires data related to the project actual results corresponding to the management items as actual result information. The user of the actual result acquisition terminal 7 is the on-site person in charge U2 of the water supply pipe project. The actual result acquisition terminal 7 is used for the on-site person in charge U2 as the user to input the actual result information. The actual result acquisition terminal 7 can be implemented by a mobile terminal such as a notebook PC, a tablet terminal, or a smart phone, for example. Since the actual result acquisition terminal 7 is used on-site, it is preferably capable of wireless communication, but wired communication can also be performed.
[0099] (Management server)
[0100] Figure 2 It is a functional block diagram showing the schematic structure of the management server 3, the construction planning terminal 5, and the actual result acquisition terminal 7 included in the water supply pipe project management system 1.
[0101] As Figure 2 shown, the management server 3 has a communication unit 31, a storage unit 32, and a control unit 33.
[0102] The communication unit 31 is a network interface for communicating by connecting to a wired or wireless network.
[0103] The storage unit 32 stores programs executed in the control unit 33 and data used in the programs, etc. In addition, the details of the data stored in the storage unit 32 will be described later.
[0104] The control unit 33 executes various functions in the management server 3 by executing programs. In addition, the details of the control unit 33 will be described later.
[0105] (Construction planning terminal)
[0106] As described above, the construction planning terminal 5 has a communication function with the management server 3. In addition, the construction planning terminal 5 can implement various functions by executing various processes such as local programs. In addition, the construction planning terminal 5 can store local programs and various data used in the programs.
[0107] The construction planning terminal 5 has an operation input unit (not shown) that can be operated by the planning person in charge U1 as the user. The construction planning terminal 5 executes various processes such as programs based on the input operation content. The construction planning terminal 5 may have a display unit or may be configured to output display data to another display unit.
[0108] In addition, the construction planning terminal 5 sends the input operation content to the management server 3. According to the operation content, the management server 3 executes various applications.
[0109] For example, the construction planning terminal 5 has CAD software and other programs installed locally, and can edit information related to construction planning. In addition, by communicating with the management server 3 via a network, the construction planning terminal 5 can synchronize the information related to the edited construction planning with the data stored in the storage unit 32 of the management server 3.
[0110] (Actual result acquisition terminal)
[0111] As Figure 2 shown, the actual result acquisition terminal 7 includes a communication unit 71, a storage unit 72, a control unit 73, and a touch panel unit 74.
[0112] The communication unit 71 is a network interface for connecting to and communicating with a wireless network or a wired network based on a mobile phone communication network or a wireless communication standard, etc.
[0113] The storage unit 72 stores programs executed in the control unit 73 and various data including data used in the programs. In addition, the details of the data stored in the storage unit 72 will be described later.
[0114] The control unit 73 executes various functions in the actual result acquisition terminal 7 by executing programs.
[0115] The touch panel unit 74 accepts touch inputs from the user of the actual result acquisition terminal 7. On the other hand, it displays various screens to the user. The actual result acquisition terminal 7 performs various processes based on the operation content accepted in the touch panel unit 74. In addition, the actual result acquisition terminal 7 sends the operation content accepted in the touch panel unit 74 to the management server 3.
[0116] (Details of the control unit of the management server)
[0117] As Figure 2 shown, the control unit 33 of the management server 3 includes a construction planning information generation unit 51, an information sending unit 54, a construction management information generation unit 55, and a submission file creation unit 56.
[0118] The construction planning information generation unit 51 associates information 320 related to the construction plan of the pipeline of the water supply pipe that is the object of the water supply pipe project with management items, and generates construction planning information 327. In addition, the construction planning information generation unit 51 associates the management positions in the pipeline that are the management objects with the management items.
[0119] The information 320 related to the construction plan includes, for example, design information 3201, earthwork information 3202, obstacle information 3203, project case information 3204, site information 3205, ground information 3206, and process information 3207.
[0120] The design information 3201 is information related to the design of the pipeline. The design information 3201 includes information related to the water supply pipe used in the water supply pipe project, such as the diameter, length, type (straight pipe, special-shaped pipe, cut pipe, etc.), quantity, and configuration of the water supply pipe. The design information 3201 is, for example, information obtained from the pipeline diagram of the water supply pipe, etc. That is, the design information 3201 includes information related to the designed pipeline (hereinafter referred to as "designed pipeline"). The design information 3201 is created, for example, based on the operation content in the construction planning terminal 5.
[0121] The earthwork information 3202 is information related to the earthwork of the water supply pipe project. Refer to Figure 3 and Figure 4 For a more specific description, it is as follows. Figure 3 It is a diagram that illustrates the excavation trench width and the covering soil of the place where the water supply pipe 91 is buried. Figure 4 It is a diagram that illustrates the type and thickness of the road pavement or subgrade. As Figure 3 shown, the earthwork information 3202 includes the excavation trench width W 1 of the place where the water supply pipe 91 is buried, the excavation depth H 1 and the covering soil H 2 for the water supply pipe 91. In addition, as Figure 4 shown, the earthwork information 3202 includes the types L1, L2, L3 of the pavement or subgrade before and after burial and the various different thicknesses T1, T2, T3. The types can also represent the structures in the road R structure that are higher than the ground surface. For example, the type L1 is the surface layer, the type L2 is the upper subgrade, and the type L3 is the lower subgrade. In addition, the earthwork information 3202 includes the standard values of the information related to the design dimensions of these earthworks. The standard value is a value that represents the allowable range of the error relative to the design dimension. In addition, the earthwork information 3202 may also include information related to the characteristics of the road structure and the retaining wall part.
[0122] The obstacle information 3203 includes information related to the underground obstacles (underground structures such as cross pipes, other underground buried objects, etc.) at the place where the water supply pipe is buried. In addition, the obstacle information 3203 may also include information related to at least one of the road structure, soil quality, and groundwater.
[0123] The project case information 3204 includes information related to the project of the water supply pipe project. The project case information 3204 may, for example, also include the identification information for determining the project of the water supply pipe project, the project site, the project name of the water supply pipe project, the project type, the sketch or the instruction number, etc.
[0124] The on-site information 3205 includes information related to on-site conditions. The information related to the on-site conditions includes at least one of information such as available working hours, available workers, types and quantities of working machinery used, whether parallel operations are possible, whether working machinery can be used in parallel, transportation time of sand, soil, or water pipes, and whether trial production is available.
[0125] The ground information 3206 includes information related to the ground of the place where the water pipe is buried. Specifically, the ground information 3206 includes ground perimeter-related information and road condition-related information.
[0126] The ground perimeter-related information includes information related to the environment near the place where the water pipe project is carried out. For example, the information related to the environment near the place where the water pipe project is carried out includes information on whether there are facilities frequently used by surrounding residents in the place facing the construction site or its surrounding places. The facilities include houses, shops, parking lots, etc. In addition, the information related to the environment near the place where the water pipe project is carried out includes information on whether the construction site is in the urban area or the suburbs.
[0127] The road condition-related information includes traffic information at the place where the water pipe project is carried out and information on the width and number of lanes of the road if the place where the water pipe project is carried out is a road.
[0128] The process information 3207 is information related to the project schedule of the pipeline to be the object.
[0129] The management item is an item for managing the actual performance in the water pipe project. The management item includes, for example, the items published in the submitted documents.
[0130] For example, as described below, the construction plan information generation unit 51 associates the information 320 related to the construction plan with the management item and the management location.
[0131] Figure 5 It is a diagram for explaining a method of setting the starting point P1 and the ending point P2 of the design pipeline TP of the water pipe PL that is the object of the water pipe project. Figure 6 It is a diagram for explaining a method of setting the management location of the pipeline in the water pipe project.
[0132] As Figure 5 shown, the construction plan information generation unit 51 sets the starting point P1 and the ending point P2 of the design pipeline TP of the water pipe PL that is the object of the water pipe project according to the operation of the user in the construction plan terminal 5.
[0133] Then, as Figure 6As shown, the construction planning information generation unit 51 sets management positions A0, …, A9+10.0 for the designed pipeline TP.
[0134] The management positions include basic measurement points set at regular intervals M starting from the starting point P1 (=A0) and additional measurement points set at singular points.
[0135] For example, “A” plus a number is assigned as an identification number to the management position that is the basic measurement point. Management positions A0, A1, ···, A9, etc. correspond to the basic measurement points. The regular interval M is, for example, 50 m. Therefore, the basic measurement points do not necessarily coincide with the joints of the water pipes.
[0136] For the additional measurement points set at the singular points, for example, bypass piping sections such as crossing sections are assigned. The crossing section is a part that is bypassed and arranged below the underground obstacle such as the underground pipe 92 existing underground. In addition to this, in the bypass piping section, there are also an overcrossing section that is bypassed and arranged above the underground obstacle and a twisting section that is bypassed by bending the pipeline in the horizontal direction, etc. The additional measurement points set at the singular points include the parts where the cross-section of the earthwork changes. In addition, even if the end point is a position other than the basic measurement point, the measurement of the measured value at the end point can be obtained.
[0137] The additional measurement points are identified by the planar distance from the basic measurement points. Therefore, for the management position that is the additional measurement point, for example, “A”, “the number of the basic measurement point serving as the reference”, and “the planar distance from the basic measurement point” are assigned as the identification number. In Figure 6 , the management position A5+20.0 is the additional measurement point of the crossing section. In Figure 6 , the management position A9+10.0 is the additional measurement point of the end point. The additional measurement points can be set manually or automatically, different from the basic measurement points.
[0138] In addition, each management position is associated with the earthwork sections B1 to B4. Here, the earthwork section refers to the section with the same earthwork information. That is, the same earthwork information is applied to the same earthwork section.
[0139] As described above, the construction plan information generation unit 51 associates the information 320 related to the construction plan of the pipeline of the water supply pipe that is the object of the water supply pipe project with the management items and the management locations, and generates the construction plan information 327. In addition, the management items and the management locations may also be associated with the identification information for identifying the case of the water supply pipe project or the project name of the water supply pipe project. That is, the construction plan information 327 may also include the identification information for identifying the case of the water supply pipe project or the project name of the water supply pipe project. The construction plan information generation unit 51 stores the created construction plan information 327 in the storage unit 32.
[0140] The information sending unit 54 sends the construction plan information 327 generated by the construction plan information generation unit 51 to the performance acquisition terminal 7. In addition, the information sending unit 54 may also send the construction management information 328 generated by the construction management information generation unit 55 described later to the performance acquisition terminal 7.
[0141] The construction management information generation unit 55 associates the performance information 722 acquired by the performance acquisition terminal 7 with the construction plan information 327, and generates the construction management information 328. The construction management information generation unit 55 stores the generated construction management information 328 in the storage unit 32.
[0142] The submission file creation unit 56 creates a file associated with the performance information 722 for each of the management locations in a prescribed format based on the construction management information 328 generated by the construction management information generation unit 55. The submission file creation unit 56 stores the created submission file data 329 in the storage unit 32.
[0143] As described above, the water supply pipe project management system 1 is a system for managing the water supply pipe project. The water supply pipe project management system 1 includes: a management server 3; and a performance acquisition terminal 7 that can communicate with the management server 3 and acquire data related to the project performance corresponding to the management items for which performance is managed in the water supply pipe project as the performance information 722.
[0144] The management server 3 includes: a construction plan information generation unit 51 that associates the information 320 related to the construction plan of the design pipeline TP of the water supply pipe PL that is the object of the water supply pipe project with the management items, and generates the construction plan information 327; and a construction management information generation unit 55 that associates the performance information 722 acquired by the performance acquisition terminal 7 with the construction plan information 327, and generates the construction management information 328.
[0145] According to the above structure, the management server 3 generates the construction plan information 327 that associates the information 320 related to the construction plan with the management items.
[0146] In addition, the actual result acquisition terminal 7 acquires data related to the project actual results corresponding to the management items as actual result information 722. The actual result information 722 may also include identification information for identifying the case of the water pipe project or the project name of the water pipe project. In contrast, the management server 3 associates the actual result information 722 with the construction plan information 327 to generate construction management information 328. The management server 3 may also establish an association between the actual result information 722 and the construction plan information 327 via the identification information for identifying the case of the water pipe project or the project name of the water pipe project. In addition, the construction management information 328 may also include the identification information for identifying the case of the water pipe project or the project name of the water pipe project.
[0147] Thereby, the construction plan information 327 and the actual result information 722 can be associated via the management items. Therefore, data processing of the construction plan data and the project actual result data can be efficiently performed, and the project actual results can be managed more efficiently.
[0148] In addition, thereby, by using the management server 3 and the actual result acquisition terminal 7, arithmetic processing can be efficiently performed.
[0149] In addition, the construction management information generation unit 55 of the management server 3 associates the construction plan information 327 and the actual result information 722 acquired by the actual result acquisition terminal 7 with the management location, which is the management object in the pipeline, to generate construction management information 328.
[0150] Thereby, the huge data of the construction plan information 327 and the actual result information 722 can be efficiently sorted out, and the comparison between the construction plan information 327 and the actual result information 722 can be easily performed at each pipeline location.
[0151] In addition, the management server 3 also has a submission file creation unit 56, and the submission file creation unit 56 creates a file associated with the actual result information 722 for each of the management locations in a prescribed format based on the construction management information 328.
[0152] Thereby, based on the construction management information 328, the operation burden when creating files for each management location can be reduced.
[0153] (Process flow of the water pipe project management method)
[0154] Figure 7 It is a flowchart showing the process flow of the water pipe project management method (pipeline project management method) of the water pipe project management system 1 for controlling and managing the water pipe project.
[0155] As Figure 7As shown, first, the management server 3 associates the information 320 related to the construction plan of the pipeline of the water supply pipe that is the object of the water supply pipe project with the management items, and generates construction plan information 327 (construction plan information generation process) (step S11). The management server 3 may also execute step S11 according to the request of the construction plan terminal 5.
[0156] Next, the management server 3 sends the construction plan information 327 to the actual performance acquisition terminal 7 (construction plan information sending process) (step S12).
[0157] Accordingly, the actual performance acquisition terminal 7 acquires data related to the project actual performance corresponding to the management items in the water supply pipe project as actual performance information 722 (actual performance information acquisition process) (step S21).
[0158] Next, the management server 3 receives the actual performance information 722 from the actual performance acquisition terminal 7 (actual performance information receiving process) (step S13). The actual performance information 722 is sent from the actual performance acquisition terminal 7 to the management server 3 in correspondence with the corresponding management items.
[0159] Next, the management server 3 associates the actual performance information 722 received from the actual performance acquisition terminal 7 with the construction plan information 327, and generates construction management information 328 (construction management information generation process) (step S14).
[0160] Furthermore, the management server 3 creates a file in a specified format for each of the management locations based on the construction management information 328 (file creation process) (step S15).
[0161] According to the above water supply pipe project management method, it is possible to efficiently process the data of the construction plan and the data of the project actual performance, and to manage the actual performance of the project more efficiently. In addition, it is possible to efficiently organize the huge data of the construction plan information 327 and the actual performance information 722, and to compare the construction plan information 327 and the actual performance information 722 at each management location. In addition, based on the construction management information 328, the operation burden when creating files for each management location can be reduced.
[0162] (Water Supply Pipe Project Management Program)
[0163] The water supply pipe project management program (pipeline project management program) only needs to be a program that causes the management server 3 that is a part of the water supply pipe project management system 1 to execute Figure 7 the steps S11 to S15 shown. By having the management server 3 execute this program, the water supply pipe project management system 1 and the water supply pipe project management method in the present embodiment can be realized.
[0164] The program for controlling the water pipe construction business support system according to this embodiment is a program for controlling a water pipe construction management system 1 that has a performance acquisition terminal 7 and a management server 3 and manages water pipe construction projects.
[0165] The water pipe construction management program causes the management server 3 to execute the following processes: a construction plan information generation process that associates information 320 related to the construction plan of a pipeline that is the object of the pipeline project with management items and generates construction plan information 327; a construction plan information transmission process that transmits the construction plan information 327 to the performance acquisition terminal 7; a performance information reception process that receives performance information 722 from the performance acquisition terminal 7 that has acquired performance information 722 including data related to the project performance corresponding to the management items in the pipeline project; and a construction management information generation process that associates the performance information 722 received from the performance acquisition terminal 7 with the construction plan information 327 and generates construction management information 328.
[0166] In addition, in the water pipe construction management program, the construction management information generation process further includes a process of causing the management server 3 to associate the construction plan information 327 and the performance information 722 with the management location that is the management object in the pipeline and generate construction management information 328.
[0167] In addition, the water pipe construction management program causes the management server 3 to further execute a submission document creation process that creates a submission document in a prescribed format for each of the management locations based on the construction management information 328.
[0168] According to the above water pipe construction management program, it is possible to efficiently process data on construction plan data and project performance data, and to manage project performance more efficiently. In addition, it is possible to efficiently organize the huge amounts of data of the construction plan information 327 and the performance information 722, and it is easy to compare the construction plan information 327 and the performance information 722 at each management location. In addition, based on the construction management information 328, it is possible to reduce the workload when creating files for each management location.
[0169] [Embodiment 2]
[0170] Figure 8 It is a functional block diagram showing the schematic structure of a water pipe construction management system 11 according to Embodiment 2 of the present invention.
[0171] The water supply pipe project management system 11 of Embodiment 2 is a system for performing completed form management. The difference between the water supply pipe project management system 11 and the water supply pipe project management system 1 of Embodiment 1 lies in managing the management items required in the completed form management. In addition, in the water supply pipe project management system 11, the data related to the project performance corresponding to the management items, that is, the performance information, includes, for example, the measured values of the design values of the pipeline. The performance acquisition terminal 7 acquires the measured value information 723 as the performance information.
[0172] In addition, in the description of Embodiment 2, the parts common to the water supply pipe project management system 1 of Embodiment 1 will not be described in detail repeatedly.
[0173] (Performance acquisition terminal)
[0174] As Figure 8 shown, the storage unit 72 of the performance acquisition terminal 7 stores the measured value information 723 that constitutes a part of the performance information. The measured value information 723 is, for example, information related to the measured values measured on-site and is input into the performance acquisition terminal 7 using the touch panel unit 74. The performance acquisition terminal 7 sends the measured value information 723 to the management server 3.
[0175] (Management server)
[0176] As Figure 8 shown, the storage unit 32 of the management server 3 stores the construction plan information 627, the construction management information 628, and the submission document data 629.
[0177] In addition, the control unit 33 of the management server 3 has a construction plan information generation unit 151, an information sending unit 154, a construction management information generation unit 155, and a submission document creation unit 156.
[0178] The construction plan information generation unit 151 associates the information 320 related to the construction plan of the pipeline of the water supply pipe that is the object of the water supply pipe project with the management items and management locations required in the completed form management, and generates the construction plan information 627.
[0179] In the case of completed form management, the management items include various dimensions in the water supply pipe project. In the completed form management, the management items can be set according to each project type. As the project types in the water supply pipe project, for example, pipe excavation work, pipe laying work, roadbed work, and paving work can be cited. The project type is set manually or automatically for each management location. As Figure 3 and Figure 4As shown, in the piping earthwork project, the management items include, for example, the excavation trench width and excavation depth of the site where the water pipe is buried. Additionally, in the backfilling projects such as the subgrade project and the paving project, it includes the type and thickness of the paving or subgrade. Furthermore, the management locations for the completion form management are the same as those described in Embodiment 1. That is, the management locations for the completion form management include: basic measurement points set at regular intervals; and additional measurement points set at singular points such as the detour piping section at the bypass section, the part where the cross-section of the earthwork changes, and the end point P2.
[0180] In the construction plan information 627 generated by the construction plan information generation unit 151, the identification information for determining the case of the water pipe project or the project name of the water pipe project is associated. Additionally, the construction plan information 627 includes design values related to the earthwork of the water pipe project.
[0181] Hereinafter, Figure 9 an example of the construction plan information 627 will be described. Figure 9 is a diagram showing an example of the construction plan information 627 and a prototype of the completion form management table. The construction plan information 627 includes Figure 9 the prototype of the completion form management table shown.
[0182] Figure 9 The completion form management table shown is in the style of the piping earthwork project. In the list TBL1 included in the completion form management table, it includes the excavation trench width W 1 and the excavation depth H 1 , as the management items. Additionally, in the list TBL1, the excavation trench width W 1 and the excavation depth H 1 associated with the management locations A0, A1, A2... are recorded. Additionally, at the head of the list TBL1, the standard value -30 mm for the lower limit of the excavation trench width W 1 , the standard value +100 mm for the upper limit of the excavation depth H 1 and the standard value -50 mm for the lower limit are recorded. The date, measured value, and difference corresponding to the management locations A0, A1, A2... are blank in the state where the measured value has not been determined.
[0183] The information sending unit 154 sends the construction plan information 627 including the completion form management table to the actual result acquisition terminal 7. Additionally, the information sending unit 154 can also synchronize the construction management information 628 generated by the construction management information generation unit 155 described later with the actual result acquisition terminal 7.
[0184] The construction management information generation unit 155 associates the measured values included in the measured value information 723 obtained by the actual result acquisition terminal 7 with the construction plan information 627 to generate the construction management information 628.
[0185] Hereinafter, an example of the construction management information 628 will be described using Figure 10 to illustrate an example of the construction management information 628. Figure 10 It is a diagram showing a completed form management table as an example of a submitted document. As Figure 10 shown, the construction management information 628 includes a completed form management table, and this completed form management table has a list TBL2 in which at least a part of the actual values are recorded.
[0186] The construction management information generation unit 155 calculates the difference between the design values included in the construction plan information 627 and the measured values obtained at the actual value acquisition terminal 7. In addition, the construction management information generation unit 155 associates the design value, the measured value, and the difference with the management location, and generates a completed form management table as an example of the construction management information 628.
[0187] Based on the construction management information 628 generated by the construction management information generation unit 155, the submitted document creation unit 156 creates a completed form management table that associates the design value and the measured value in a prescribed format for each of the management locations.
[0188] As described above, in the water pipe construction management system 11, the construction plan information 627 includes design values related to the earthwork of the water pipe construction. In addition, the data related to the construction actual results includes measured values corresponding to the design values. In addition, the construction management information generation unit 155 calculates the difference between the design value and the measured value included in the actual result information obtained at the actual value acquisition terminal 7, associates the design value, the measured value, and the difference with the management location, and generates the construction management information 628.
[0189] Thereby, it is possible to associate the design values, the measured values, and the difference between the design value and the measured value related to the earthwork in the water pipe construction with the management location and manage them as the construction management information 628.
[0190] Therefore, it is possible to efficiently perform what is called completed form management of the design value, the measured value, and their difference.
[0191] [Embodiment 3]
[0192] Figure 11 It is a functional block diagram showing the schematic configuration of the water pipe construction management system 12 according to Embodiment 3 of the present invention.
[0193] The water pipe construction management system 12 of Embodiment 3 is a system for photo management. The difference between the water pipe construction management system 12 and the water pipe construction management system 11 of Embodiment 2 is that photos are managed as management items. In addition, in photo management, the management items are, for example, photos required to be taken at or near the site where the water pipe is buried.
[0194] In addition, in the water pipe construction management system 12, the performance information, which is data related to the construction performance corresponding to the management items, includes photo data taken at the site. The performance acquisition terminal 7 acquires the photo data 724 as performance information.
[0195] In addition, in the description of Embodiment 3, parts common to the water pipe construction management system 11 of Embodiment 2 will not be described in detail again.
[0196] (Performance acquisition terminal)
[0197] As Figure 11 shown, the storage unit 72 of the performance acquisition terminal 7 also stores the photo data 724, the electronic blackboard 725, and the operation information management list 726 that are part of the performance information, which is different from the storage unit 72 of the performance acquisition terminal 7 in Embodiment 2.
[0198] The performance acquisition terminal 7 has a photographing unit 75 for taking photos. The performance acquisition terminal 7 performs photographing by the photographing unit 75, for example, according to the operation of the user accepted by the touch panel unit 74. The control unit 73 of the performance acquisition terminal 7 generates the photo data 724 with the electronic blackboard 725 added. The control unit 73 of the performance acquisition terminal 7 stores the generated photo data 724 in the storage unit 72. The method of adding the electronic blackboard 725 to the photo data 724 will be described in detail later. The performance acquisition terminal 7 sends the generated photo data 724 to the management server 3.
[0199] (Management server)
[0200] As Figure 11 shown, the control unit 33 of the management server 3 has a construction plan information generation unit 251, an electronic blackboard creation unit 252, an information sending unit 254, a construction management information generation unit 255, a submission document creation unit 256, and an operation information management list generation unit 257.
[0201] The construction plan information generation unit 251 associates the information 320 related to the construction plan of the pipeline of the water pipe that is the object of the water pipe construction with the management items and management locations required in photo management, and generates the construction plan information 927.
[0202] In photo management, the water utility determines the shooting items to be used as management items, as well as the shooting parts and shooting contents of the shooting items. In addition, according to the shooting items, specified additional materials are required. For example, the following shooting parts, shooting contents, and shooting items are determined.
[0203] Photos of the site before and after the start and completion of work, as well as completion form photos, are required at all measurement points and change points. Completion form photos are required at the buried positions of special-shaped pipes and the like outside the measurement points. Condition photos and quality management photos are required at intervals of 150 m. That is, the shooting items may also include the work contents of the management positions associated with the shooting items. In addition, there may be cases where there are multiple work contents for one management position. Photos of isolation valves and the like are required at the installation positions of valve bolts. Photos of retaining wall parts and the like are required at the installation positions of temporary works. Photos of water supply pipe replacement projects are required at road repair positions and the like. That is, the shooting items may also include the equipment at the management positions associated with the shooting items. In addition, photos of temporary equipment are required at the installation positions of temporary equipment such as on-site offices or parking lots. In addition, photos of inspections of pipe materials such as water supply pipes are required. In addition, photos of on-site patrol conditions and the like are required to confirm safety management.
[0204] Figure 12 It is a diagram for explaining a method of setting management positions of pipelines in photo management. As Figure 12 shown, the construction planning information generation unit 251 sets the management positions A0, …, A9+10.0, C1 to C9 as shooting parts for the designed pipeline TP with a set start point and end point.
[0205] The management positions A0, …, A9+10.0 indicated by white circle symbols and black circle symbols include the above-mentioned basic measurement points and additional measurement points. The black circle symbols A3, A6, A9 indicate the measurement points every 150 m from the start point. In addition, the white circle symbols A0, A1, A2, A4, A5, A5+20.0, A7, A8, A9+10.0 indicate the measurement points other than the measurement points every 150 m. That is, for the black circle symbols A3, A6, A9, condition photos, completion form photos, and quality management photos are required to be taken before and after the start. In addition, for the white circle symbols A0, A1, A2, …, completion form photos are required to be taken before and after the start.
[0206] The triangular symbols C3 and C7 indicate the installation parts of special-shaped pipes. Therefore, for the triangular symbols C3 and C7, completion form photos are required to be taken.
[0207] The white quadrilateral symbols C1, C4, C8 indicate the installation parts of isolation valves. Therefore, for the white quadrilateral symbols C1, C4, C8, photos of valve bolts are required to be taken.
[0208] The star symbols C2 and C5 indicate the locations of soil embankment. Therefore, at the star symbols C2 and C5, it is required to take photos of the temporary works.
[0209] The black quadrilateral symbols C6 and C9 indicate the locations where the water supply pipe replacement works are carried out. Therefore, at the black quadrilateral symbols C6 and C9, it is required to take photos of the water supply pipe replacement works.
[0210] As described above, the construction plan information generation unit 251 associates the information 320 related to the construction plan of the pipeline of the water supply pipe that is the object of the water supply pipe project with the shooting items and the management locations, and generates the construction plan information 927. In addition, the shooting items include the work content or equipment in the management locations.
[0211] The electronic blackboard creation unit 252 creates an electronic blackboard 952 to be appended to the photo data 724 based on the construction plan information 927. It is also set whether an electronic blackboard 952 needs to be appended for each photo required at each management location. The electronic blackboard creation unit 252 creates the electronic blackboard 952 according to whether an electronic blackboard 952 needs to be appended.
[0212] Figure 13 It is a diagram showing an example of an electronic blackboard. As Figure 13 shown, the electronic blackboard E1 includes a project name E11, a project type E12, a shooting date E13, a management location E14, a design dimension E15, an actual measurement dimension E16, an instruction number E17, and a sketch E18.
[0213] The electronic blackboard creation unit 252 sets the shooting date E13 based on the process information included in the construction plan information 927. In addition, when it is necessary to set dimensions, the electronic blackboard creation unit 252 sets the design dimension E15 based on the design information included in the construction plan information 927. The actual measurement dimension E16 can be set after the actual measurement value information 723 including the actual measurement value is obtained by the performance acquisition terminal 7. In addition, the electronic blackboard creation unit 252 sets the project name E11, the project type E12, and the instruction number E17 based on the information 320 related to the construction plan included in the construction plan information 927.
[0214] The electronic blackboard creation unit 252 stores the electronic blackboard 952 created as described above in the storage unit 32.
[0215] The information sending unit 254 sends the construction plan information 927 generated by the construction plan information generation unit 251 and the electronic blackboard image of the electronic blackboard 952 created by the electronic blackboard creation unit 252 to the actual result acquisition terminal 7. In addition, the information sending unit 254 may synchronize the construction management information 928 created by the construction management information generation unit 255 described later between the actual result acquisition terminal 7. In addition, the information sending unit 254 synchronizes the job information management list 953 created by the job information management list generation unit 257 described later with the job information management list 726 stored in the storage unit 72 of the actual result acquisition terminal 7.
[0216] The construction management information generation unit 255 associates the photo data 724 acquired by the actual result acquisition terminal 7 with the construction plan information 927 to generate the construction management information 928. More specifically, the construction management information generation unit 255 acquires the actual result information including the photo data 724 from the actual result acquisition terminal 7, associates the photo data 724 with the appended electronic blackboard 725 with the management location, and generates the construction management information 928.
[0217] Thus, it is possible to easily create an electronic blackboard image appended to the photo data 724 by the management server. Therefore, it is possible to easily create image data with an electronic blackboard image appended to the photo data 724. Therefore, it is possible to efficiently manage the image data corresponding to the electronic blackboard 952.
[0218] The submission document creation unit 256 creates an engineering photo register associated with the photo as a management item for each management location in a prescribed format based on the construction management information 928 generated by the construction management information generation unit 255. The submission document creation unit 256 stores the created construction photo register as submission document data 929 in the storage unit 32.
[0219] The job information management list generation unit 257 creates a job information management list 953 which is data of a list of the actual result information 722 acquired during a prescribed construction period based on the construction management information 928. The prescribed construction period includes a construction period from a unit of one day to a large project with a unit of month or year. In addition, the job information management list generation unit 257 creates a job information management list 953 for each management location. The job information management list generation unit 257 determines whether a photo as actual result information has been taken at the management location based on the construction management information 928. The job information management list generation unit 257 sets a completion flag indicating that the photo has been taken when a photo as actual result information has been taken at the management location.
[0220] Figure 14 It is a diagram showing an example of the job information management list 953. In Figure 14In the example shown, three electronic blackboards E21, E22, and E23 are created at the second management position. For the electronic blackboard E21, since the photo has been acquired, the job information management list generation unit 257 sets the completion flag E211 for the electronic blackboard E21.
[0221] Thus, it is possible to confirm the actual performance information acquired during the specified engineering period using the list. Therefore, it is possible to prompt the on-site operation supervisor to acquire the actual performance information that should be acquired.
[0222] (Append Electronic Blackboard to Photo Data)
[0223] Use Figures 14 to 16 to explain the method of appending an electronic blackboard to photo data. Figure 15 FIG. is an example of a monitoring image of the actual performance acquisition terminal 7 at the time of photo shooting. Figure 16 FIG. is a monitoring image showing the appended electronic blackboard E3.
[0224] The actual performance acquisition terminal 7 stores the job information management list 726 received from the management server 3 in the storage unit 72.
[0225] As Figure 14 shown, the actual performance acquisition terminal 7 displays the content of the job information management list 726 on the touch panel unit 74. The actual performance acquisition terminal 7 accepts the selection of an electronic blackboard from the user. The electronic blackboard E21 displays the electronic blackboards E21 to E23 in thumbnail form on the touch panel unit 74. Here, since the photo has been acquired for the electronic blackboard E21, the remaining electronic blackboards E22 and E23 of the actual performance acquisition terminal 7 are displayed in a selectable state on the touch panel unit 74.
[0226] In the following example, it is assumed that the user selects the electronic blackboard E23. The actual performance acquisition terminal 7 performs shooting by the shooting unit 75. The monitoring image F1 shown is obtained by the camera constituting the shooting unit 75. As Figure 15 shown, the control unit 73 of the actual performance acquisition terminal 7 overlaps the electronic blackboard image E231 of the electronic blackboard E23 with the monitoring image F1 and displays it on the touch panel unit 74. The position where the electronic blackboard image E231 is overlapped on the monitoring image F1 can be set to the upper left of the monitoring image F1 in the initial setting, for example, or the position can be changed according to the user's operation. When the user performs the shutter operation, the shooting is completed. Figure 16 When the shooting is completed, the control unit 73 of the actual performance acquisition terminal 7 stores the photo data 724 with the electronic blackboard image overlapped on the captured image in the storage unit 72. That is, the control unit 73 of the actual performance acquisition terminal 7 stores the photo data 724 with the appended electronic blackboard E23 in the storage unit 72.
[0227] When the shooting is completed, the control unit 73 of the actual performance acquisition terminal 7 stores the photo data 724 with the electronic blackboard image overlapped on the captured image in the storage unit 72. That is, the control unit 73 of the actual performance acquisition terminal 7 stores the photo data 724 with the appended electronic blackboard E23 in the storage unit 72.
[0228] As described above, in the water pipe engineering management system 12, the management item is a photo. The actual result acquisition terminal 7 acquires the photographed photo data 724 as actual result information. The construction management information generation unit 255 associates the photo data 724 photographed by the actual result acquisition terminal 7 with the management location and generates the construction management information 928.
[0229] Thereby, photo management as actual result management based on photos can be performed in association with the management location. Therefore, the photo management can be performed efficiently.
[0230] [Embodiment 4]
[0231] Figure 17 It is a functional block diagram showing a schematic structure of the water pipe engineering management system 13 according to Embodiment 4 of the present invention.
[0232] The difference between the water pipe engineering management system 13 according to Embodiment 4 and the water pipe engineering management system 11 according to Embodiment 2 is that the construction plan information 627 and the construction management information 628 are associated with the work scope.
[0233] In addition, in the description of Embodiment 4, parts common to the water pipe engineering management system 11 according to Embodiment 2 will not be described in detail repeatedly.
[0234] (Management server)
[0235] (Storage unit of the management server)
[0236] The information 320 related to the construction plan stored in the storage unit 32 of the management server 3 further includes the business entity information 3208. The business entity information 3208 includes information related to the identification ID of the water supply business entity. The information related to the identification ID of the water supply business entity includes, for example, a code uniquely assigned to each of the water supply business entities and the name of the water supply business entity, etc. The business entity information 3208 is associated with the project case information 3204. For example, the case of the water pipe project in the project case information 3204 is associated with the identification ID of the water supply business entity that contracted the water pipe project.
[0237] (Control unit of the management server)
[0238] The construction plan information generation unit 151 associates the information 320 related to the construction plan of the pipeline of the water supply pipe that is the object of the water supply pipe project with the management items and management positions required in the finished form management for each specified section of the designed pipeline, and generates the construction plan information 627. Specifically, the construction plan information generation unit 151 reads the information 320 related to the construction plan from the storage unit 32 for each specified section of the designed pipeline included in the design information 3201, and generates the construction plan information 627. Thus, the construction plan information 627 is generated for each of the specified sections.
[0239] The specified section is, for example, a section included in one drawing data in the designed pipeline. Hereinafter, the drawing data related to the specified section in the designed pipeline is referred to as section drawing data. The designed pipeline includes at least one section drawing data. In addition, the specified section may be a preselected specified section in the designed pipeline, and may also be a section other than the section included in the one drawing data.
[0240] The section drawing data is associated with the water supply pipe project shown in the project case information 3204. That is, the section drawing data is associated with the business entity information 3208, and the business entity information 3208 is associated with the project case information 3204.
[0241] The section drawing data includes project section data related to at least one project section. The project section data is the data of each project section in the section drawing data. The project section is a unit for managing the water supply pipe project. Among a plurality of project sections, for example, the water supply pipe contractors implementing the water supply pipe project may be different, the project schedules may overlap, and as will be described later, different performance acquisition terminals for acquiring project performance information may also be assigned.
[0242] The project section data includes work scope data related to at least one work scope. The work scope data is the data of each work scope in the project section data. The work scope is the smallest unit for managing the water supply pipe project. The work scope may be determined based on the project schedule or may be determined according to the work content. For example, the work scope may be the work scope of one day when creating the construction plan information, or may be the work scope determined when creating the design information or the construction plan information.
[0243] Figure 18 is a diagram schematically showing the section drawing data. In Figure 18 an example is shown in which three section drawing data DD11, DD12, and DD13 are included as the section drawing data in the design information 3201. In Figure 18An example of the sectional drawing data DD11 is shown. The sectional drawing data DD11 includes sectional data related to two process sections K1 and K2. The process section K1 includes three working ranges K11, K12, and K13. The process section K2 includes two working ranges K21 and K22. In addition, in Figure 18 AA0 to AA5 represent management positions, P1 represents the starting point of the designed pipeline TP, and P2 represents the ending point of the designed pipeline TP.
[0244] The construction plan information generation unit 151 generates the construction plan information for each working range using the design information and the attribute data. Specifically, the construction plan information generation unit 151 generates the construction plan information 627 using the information related to the designed pipeline included in the design information 3201 and various information (3201 - 3208) included in the information 320 related to the construction plan. The construction plan information 627 is generated in association with the working range. The construction plan information 627 associated with the working range is also associated with the process section including the working range. In addition, the construction plan information 627 associated with the working range is also associated with the sectional drawing data including the data related to the working range and the process section. In addition, the construction plan information 627 associated with the working range is also associated with the project schedule included in the process information 3207. That is, the construction plan information 627 is associated with the operation schedule information, which is information related to the schedule of the operation in the working range associated with the construction plan information 627.
[0245] Figure 19 is a diagram schematically showing the construction plan information 627 generated by the construction plan information generation unit 151. The construction plan information 627 is generated by the construction plan information generation unit 151 for each sectional drawing data DD11, DD12, and DD13. As Figure 19 shown, for example, the construction plan information generated based on the sectional drawing data DD11 includes the construction plan information generated based on the process sections K1 and K2. The construction plan information generated based on the process section K1 includes the construction plan information generated based on the working ranges K11, K12, and K13. The construction plan information generated based on the process section K2 includes the construction plan information generated based on the working ranges K21 and K22.
[0246] The construction plan information 627 generated by the construction plan information generation unit 151 is stored in the storage unit 32. At this time, the construction plan information 627 can be stored in the storage unit 32 for each sectional drawing data, or for each process section, or for each working range. In addition, in Figure 19An example is shown in which the construction planning information is stored in the storage unit 32 according to the drawing data for each section.
[0247] The information transmission unit 154 outputs the construction planning information 627 generated by the construction planning information generation unit 151 and stored in the storage unit 32 to the actual result acquisition terminal 7 described later. Specifically, the information transmission unit 154 reads out the construction planning information 627 associated with the work scope from the storage unit 32, and outputs the read construction planning information 627 to the actual result acquisition terminal 7 via the communication unit 31. In Figure 19 the example shown, on the work day N, the information transmission unit 154 reads out the construction planning information associated with the work scopes KK11, KK12, and KK13 after the project schedule N from the storage unit 32, and transmits the read construction planning information 627 to the actual result acquisition terminal 7. In addition, the information transmission unit 154 may also transmit only the construction planning information associated with the work scope KK11 of the project schedule N on the day of the work day N to the actual result acquisition terminal 7.
[0248] The construction management information generation unit 155 acquires, via the communication unit 31, the actual result information acquired by the actual result acquisition terminal 7 and associated with the work scope. The construction management information generation unit 155 associates the actual result information acquired from the actual result acquisition terminal 7 with the construction planning information 627, and generates construction management information 628. The construction management information generation unit 55 stores the generated construction management information 628 in the storage unit 32. The storage unit 32 stores the construction planning information 627 and the construction management information 628 respectively in association with the work scope.
[0249] The submission document creation unit 156 can create submission document data 629 using at least one of the construction planning information 627 and the construction management information 628 associated with the project section. In this case, the submission document creation unit 156 may also create the submission document data 629 using the construction planning information 627 or the construction management information 628 associated with the work scope. In addition, the submission document creation unit 156 may create a daily report based on the actual result information in the project schedule N as a submission document according to the construction management information 628. The submission document creation unit 156 may also create a submission document for any period, work section, or project section according to a request from the construction planning terminal 5.
[0250] In addition, as Figure 17 shown, the control unit 33 also has a construction planning information correction unit 157. The construction planning information correction unit 157 corrects the construction planning information 627 based on the actual result information output from the actual result acquisition terminal 7. The details of the construction planning information correction unit 157 will be described later.
[0251] (Actual Result Acquisition Terminal)
[0252] Based on the construction plan information obtained from the management server 3 as described above, the actual result acquisition terminal 7 acquires the actual result information 722 of the water pipe project. Specifically, the actual result acquisition terminal 7 acquires the actual result information 722 corresponding to the construction plan information 721 associated with the operation scope according to the input of the on-site person in charge or the output from detection devices such as sensors. In addition to the measured value information 723, the actual result information 722 is also associated with information related to the operation date of the operation scope. The actual result acquisition terminal 7 may also be constituted by the construction plan terminal 5.
[0253] The actual result acquisition terminal 7 acquires the construction plan information 721 associated with the operation scope from the management server 3. On the other hand, after acquiring the actual result information 722 corresponding to the construction plan information 721 and associated with the operation scope and operation date, the actual result acquisition terminal 7 outputs the actual result information 722 to the management server 3.
[0254] (Revision processing of construction plan information)
[0255] The construction plan information revision unit 157 revises the construction plan information 627 based on the construction management information 628 stored in the storage unit 32. In other words, the construction plan information revision unit 157 revises the construction plan information 627 based on the actual result information sent from the actual result acquisition terminal 7. For example, when the actual result information in the construction management information 628 indicates a situation earlier or later than the schedule planned in the construction plan information 627, the construction plan information revision unit 157 uses the construction management information 628 to revise the construction plan information 627. In this case, the construction plan information revision unit 157 revises the construction plan information 627 using the construction management information 628 stored in the storage unit 32 and associated with the operation scope.
[0256] Use Figure 19 And Figure 20 A specific example of the revision processing of the construction plan information 627 will be described. Figure 20 It is a diagram schematically showing the revision processing of the construction plan information 627 performed by the construction plan information revision unit 157.
[0257] Hereinafter, the case where the actual result information in the construction management information 628 indicates a situation earlier than the schedule planned in the construction plan information 627 will be described.
[0258] In Figure 19 In the construction plan information 721 associated with the operation scope shown, the construction plan information 721 associated with the operation scope K11 schedules the operation in the project schedule N, and the construction plan information 721 associated with the operation scope K12 schedules the operation in the project schedule N+1. In Figure 20 In the example shown, on the operation date N, the actual result acquisition terminal 7 acquires the information related to Figure 19The actual performance information 722 corresponding to the construction planning information 721 associated with the operation scope K11 and K12 in the construction planning information 721 related to the shown operation scope. In other words, the operation date N is associated with the actual performance information 722 corresponding to the construction planning information 721 associated with the operation scope K11 and K12. Therefore, in the operation scope K12, it means that the operation has been completed on the operation date N which is earlier than the scheduled project schedule N + 1. The actual performance acquisition terminal 7 outputs the actual performance information 722 associated with the operation scope K11 and K12 to the management server 3.
[0259] In the management server 3, based on the actual performance information 722 sent from the actual performance acquisition terminal 7, the construction planning information correction unit 157 corrects the construction planning information 627. Specifically, as described above, in the pre - determined operation scope K12, the operation has been completed on the operation date N which is earlier than the project schedule N + 1. Therefore, the construction planning information correction unit 157 updates the project schedule of the construction planning information 721 associated with the operation scope K12 to N based on the actual performance information 722 associated with the operation scope K12. Furthermore, the construction planning information correction unit 157 advances the project schedule of the construction planning information 627 associated with the operation scope K13 of the project schedule N + 2 to N + 1. In addition, the construction planning information correction unit 157 may also set a flag indicating that the operation has been completed in the construction planning information 721 associated with the operation scope K12 without changing the project schedule of the construction planning information 721 associated with the operation scope K12 where the operation was completed earlier than scheduled.
[0260] In addition, the following describes the case where the actual performance information in the construction management information 628 indicates a delay compared to the schedule planned in the construction planning information 627.
[0261] In this case, the construction planning information correction unit 157 may also postpone the project schedule of the uncompleted operation scope.
[0262] For example, when the actual performance information 722 sent from the actual performance acquisition terminal 7 indicates that the operation in the operation scope K11 is not completed, the construction planning information correction unit 157 corrects the project schedule of the construction planning information 627 associated with the operation scope K13 to N + 1. That is, the construction planning information correction unit 157 corrects the project schedule in the operation scope K11 to the "next day" of the originally scheduled N. Accordingly, the construction planning information correction unit 157 also sets the project schedules of the construction planning information 627 associated with the operation scopes K12 and K13 after the project schedule N + 1 to be postponed by one day respectively. That is, it is also possible to postpone the project schedules of the uncompleted operation scopes in sequence.
[0263] In addition, for example, when an obstacle such as a large rock appears in the work scope K11 and the handling of the obstacle is not completed on the same day and the handling requires several days, the construction plan information correction unit 157 may also postpone the construction schedule of the work scope K11 to another date later than N. That is, the order of the uncompleted work scope may also be replaced to postpone the construction schedule. Thus, when it affects the construction schedules of the subsequent work scopes K12 and K13, the construction plan information correction unit 157 corrects the construction schedules of the work scopes K12 and K13.
[0264] In this way, the construction plan information correction unit 157 advances or postpones the construction schedule of the construction plan information 627 by using the construction management information 628 which is the actual performance information associated with the work scope. That is, the construction plan information correction unit 157 uses the construction management information 628 to correct the construction plan information 627.
[0265] As described above, in the water pipe project, by correcting the construction plan information 627 by using the construction management information 628 which is the actual performance information associated with the work scope, it is possible to easily correct the construction plan information 627. That is, it is possible to easily change the plan of the water pipe project according to the work scope.
[0266] [Other Embodiments]
[0267] The embodiments of the present invention have been described above, but the above embodiments are merely examples for implementing the present invention. Therefore, it is not limited to the above embodiments, and the above embodiments can be appropriately modified within the scope not departing from the gist thereof for implementation.
[0268] In each of the above embodiments, the water pipe project management system 1 is a system for managing the water pipe project. In addition, the management server 3 manages the water pipe project. However, the structure of each of the above embodiments can be used for managing pipeline projects such as sewer or agricultural water in addition to tap water (water supply). That is, the structure of each of the above embodiments can be implemented as a pipeline project management system, a pipeline project management method for controlling the pipeline project management system, and a pipeline project management program. In this case, the management server is a server for managing the pipeline project.
[0269] In each of the above embodiments, the completed form management table does not include a sketch. However, a sketch may also be included in the completed form management table.
[0270] Although not particularly described in the respective embodiments, the storage unit of the management server, the plan creation terminal, or the performance acquisition terminal can be implemented by a storage device such as a volatile or non-volatile RAM (Read Only Memory) or ROM (Random Access Memory). The storage unit can be implemented by an internal or external storage device or a removable medium, for example. Specifically, the storage unit is a cache memory and a main storage device. Additionally, specifically, the storage unit is an auxiliary storage device such as an SSD (Solid State Drive) or an HDD (hard disk).
[0271] Although not particularly described in the respective embodiments, the control unit of the management server, the plan creation terminal, or the performance acquisition terminal executes a program through an arithmetic device such as a CPU (Central Processing Unit) or an MPU (Micro Processing Unit) to implement various functions. However, part or all of the various functions implemented by the control unit can also be implemented by hardware such as a dedicated processor or an arithmetic circuit. Additionally, the program can be stored not temporarily but physically and can be stored in a computer-readable storage medium. The storage medium can also be included in the storage unit of the management server, the plan creation terminal, or the performance acquisition terminal. Additionally, the program can be provided to the management server, the plan creation terminal, or the performance acquisition terminal via a wired or wireless transmission medium.
[0272] Although not particularly described in the respective embodiments, the management server can also be implemented by one or a plurality of computer devices.
[0273] In the respective embodiments, the water pipe construction management systems 1, 11, 12, and 13 include a construction plan terminal 5 used by the plan supervisor U1 and a performance acquisition terminal 7 used by the on-site supervisor U2. However, the water pipe construction management system can also further include a water utility terminal used by the water utility. The water utility terminal can access the management server and can refer to various data such as construction plan information, construction management information, or submitted document data.
[0274] In each of the above-described embodiments, the construction management information generation units 55, 155, and 255 associate the construction plan information 327, 627, 927 and the actual performance information with the management positions in the pipeline that are the management targets, and generate construction management information 328, 628, 928. However, the construction management information generation unit may not associate the construction plan information and the actual performance information with the management positions in the pipeline that are the management targets. For example, the construction management information generation unit may associate the construction plan information and the actual performance information with map information.
[0275] In each of the above-described embodiments, the management server 3 has a submission file creation unit 56, 156, 256. However, the file creation unit may be omitted.
[0276] In each of the above-described embodiments, the actual performance acquisition terminal 7 has a touch panel unit 74. However, the actual performance acquisition terminal may also have a display device and an input device different from the touch panel unit.
[0277] In Embodiment 3, the actual performance acquisition terminal 7 adds the electronic blackboard 725 to the photo data 724. However, the management server 3 may also add the electronic blackboard 725 to the photo data 724. More specifically, it is described as follows. The actual performance acquisition terminal 7 acquires image data that does not overlap the electronic blackboard image as photo data. The actual performance acquisition terminal 7 sends the image data and the electronic blackboard corresponding to the image data to the management server 3. The management server 3 adds the electronic blackboard to the photo data.
[0278] In Embodiment 3, the electronic blackboard creation unit 252 creates the electronic blackboard 952 to be added to the photo data 724 based on the construction plan information 927. However, the electronic blackboard creation unit may be omitted.
[0279] In Embodiment 3, the operation information management list generation unit 257 creates an operation information management list 953 that is data of a list of the actual performance information 722 acquired during a specified construction period based on the construction management information 928. However, the operation information management list generation unit may be omitted.
[0280] In Embodiment 4, the management position AA0 and the management position AA3 are located at both ends of the construction section K1. In addition, the management positions are located at both ends of each operation section. However, the management positions may not be located at at least one of the two ends of the construction section. In addition, the management positions may be located in the middle of the operation section. The operation section may include a plurality of management positions.
[0281] In the fourth embodiment, the construction planning information and the construction management information are respectively associated with the work scope. However, the construction planning information may also be associated with parameters other than the work scope. The construction management information may also be associated with parameters other than the work scope.
[0282] In the fourth embodiment, the management server 3 has a construction planning information correction unit 157. However, the management servers of other embodiments may also have a construction planning information correction unit. Devices other than the management server may also have a construction planning information correction unit.
[0283] In the fourth embodiment, the construction planning information 627 is generated by the management server 3 for each of the specified sections. However, the management servers of other embodiments may also generate construction planning information for each of the specified sections.
[0284] Industrial Applicability
[0285] The present invention can be used in a pipeline engineering management system for managing pipeline engineering, etc.
[0286] Explanation of Reference Numerals
[0287] 1, 11, 12, 13 Water pipe engineering management system (pipeline engineering management system) 3 Management server
[0288] 31 Communication unit
[0289] 32 Storage unit
[0290] 3201 Design information
[0291] 3202 Earthwork information
[0292] 3203 Obstacle information
[0293] 3204 Project case information
[0294] 3205 Site information
[0295] 3206 Ground information
[0296] 3207 Process information
[0297] 3208 Business entity information
[0298] 327, 627, 927 Construction planning information
[0299] 328, 628, 928 Construction management information
[0300] 329, 629, 929 Submitted document data
[0301] 952 Electronic blackboard
[0302] 953 Job Information Management List
[0303] 33 Control Unit
[0304] 51, 151, 251 Construction Planning Information Generation Unit
[0305] 54, 154, 254 Information Sending Unit
[0306] 55, 155, 255 Construction Management Information Generation Unit
[0307] 56, 156, 256 Submission Document Creation Unit
[0308] 157 Construction Planning Information Correction Unit
[0309] 252 Electronic Blackboard Creation Unit
[0310] 257 Job Information Management List Generation Unit
[0311] 5 Construction Planning Terminal
[0312] 7 Performance Acquisition Terminal
[0313] 71 Communication Unit
[0314] 72 Storage Unit
[0315] 721 Construction Planning Information
[0316] 722 Performance Information
[0317] 723 Measured Value Information
[0318] 724 Photo Data
[0319] 725 Electronic Blackboard
[0320] 726 Job Information Management List
[0321] 73 Control Unit
[0322] 74 Touch Panel Unit
[0323] 75 Shooting Unit
[0324] DD11, DD12, DD13 Section Map Data
[0325] K1, K2 Project Sections
[0326] K11, K12, K13, K21, K22 Operation Scopes
[0327] AA0, AA1, AA2, AA3, AA4, AA5 Management Locations
[0328] P1 Starting Point
[0329] P2 End Point
[0330] TP design pipeline
Claims
1. A pipeline project management system for managing pipeline projects, wherein, it has: a management server; and a performance acquisition terminal capable of communicating with the management server and acquiring data related to the project performance corresponding to the management items for which performance is managed in the pipeline project as performance information; the management server has: a construction plan information generation unit that associates information related to the construction plan of the pipeline that is the object of the pipeline project with the management items and generates construction plan information; and a construction management information generation unit that associates the performance information acquired by the performance acquisition terminal with the construction plan information and generates construction management information.
2. The pipeline project management system according to claim 1, wherein, the construction management information generation unit associates the construction plan information and the performance information with the management positions in the pipeline that are the management objects and generates the construction management information.
3. The pipeline project management system according to claim 2, wherein, the management server further has a work information management list generation unit, and the work information management list generation unit creates list data of the performance information acquired during a specified project period based on the construction management information.
4. The pipeline project management system according to claim 2, wherein, the management server further has a file creation unit, and the file creation unit creates files associated with the performance information for each of the management positions in a specified format based on the construction management information.
5. The pipeline project management system according to claim 2, wherein, the construction plan information includes design values related to the earthwork of the pipeline project, the data related to the project performance is the measured values corresponding to the design values, the construction management information generation unit calculates the difference between the design values and the measured values included in the performance information acquired by the performance acquisition terminal, and associates the design values, the measured values, and the difference with the management positions to generate the construction management information.
6. The pipeline project management system according to claim 2, wherein, the management item is a photo, the performance acquisition terminal acquires the photographed photo data as performance information, the construction management information generation unit associates the photo data photographed by the performance acquisition terminal with the management positions and generates the construction management information.
7. The pipeline project management system according to claim 6, wherein, the management server further has an electronic blackboard creation unit, and the electronic blackboard creation unit creates an electronic blackboard to be appended to the photo data based on the construction plan information, the construction management information generation unit associates the photo data appended with the electronic blackboard with the management positions and generates the construction management information.
8. The pipeline project management system according to any one of claims 1 to 6, wherein, the construction plan information, the performance information, and the construction management information are respectively associated with the operation scope in the pipeline project.
9. The pipeline project management system according to claim 8, wherein, The construction plan information is associated with the operation schedule information, which is information related to the schedule of the operations within the operation scope. The actual result acquisition terminal acquires the construction plan information from the management server. On the other hand, after acquiring the actual result information corresponding to the construction plan information and associated with the operation scope and the operation schedule information, the actual result information is output to the management server. The management server corrects the construction plan information based on the actual result information output from the actual result acquisition terminal.
10. A management server for managing pipeline engineering, wherein, it has: a construction plan information generation unit that associates information related to the construction plan of the pipeline that is the object of the pipeline engineering with the management items for which actual results are managed in the pipeline engineering, and generates construction plan information; a communication unit capable of communicating with an actual result acquisition terminal, which acquires data related to the engineering actual results corresponding to the management items as actual result information; and a construction management information generation unit that receives the actual result information from the actual result acquisition terminal, associates the received actual result information with the construction plan information, and generates construction management information.
11. The management server according to claim 10, wherein, the construction management information generation unit associates the construction plan information and the actual result information with the management positions in the pipeline that are the management objects, and generates the construction management information.
12. The management server according to claim 10 or 11, wherein, the management server further has a file creation unit that creates a file associated with the actual result information in a prescribed format for each of the management positions based on the construction management information.
13. A pipeline engineering management method for controlling a pipeline engineering management system that has an actual result acquisition terminal and a management server and manages pipeline engineering, wherein, the pipeline engineering management method includes: a construction plan information generation process in which the management server associates information related to the construction plan of the pipeline that is the object of the pipeline engineering with management items, and generates construction plan information; a construction plan information sending process in which the management server sends the construction plan information to the actual result acquisition terminal; an actual result information acquisition process in which the actual result acquisition terminal acquires data related to the engineering actual results corresponding to the management items in the pipeline engineering as actual result information; an actual result information receiving process in which the management server receives the actual result information from the actual result acquisition terminal; and a construction management information generation process in which the management server associates the actual result information received from the actual result acquisition terminal with the construction plan information, and generates construction management information.
14. The pipeline engineering management method according to claim 13, wherein, in the construction management information generation process, the management server associates the construction plan information and the actual result information with the management positions in the pipeline that are the management objects, and generates the construction management information.
15. The pipeline project management method according to claim 13 or 14, wherein, the pipeline project management method further includes: a document creation process, in which the management server creates a document associated with the actual performance information for each of the management locations in a prescribed format based on the construction management information.
16. A pipeline project management program for controlling a pipeline project management system that includes an actual performance acquisition terminal and a management server and manages a pipeline project, wherein, the pipeline project management program causes the management server to execute the following processes: a construction plan information generation process of associating information related to the construction plan of the pipeline that is the object of the pipeline project with management items and generating construction plan information; a construction plan information transmission process of transmitting the construction plan information to the actual performance acquisition terminal; an actual performance information reception process of receiving the actual performance information from the actual performance acquisition terminal that has acquired actual performance information including data related to the project actual performance corresponding to the management items in the pipeline project; and a construction management information generation process of associating the actual performance information received from the actual performance acquisition terminal with the construction plan information and generating construction management information.
17. The pipeline project management program according to claim 16, wherein, in the construction management information generation process, it includes a process of causing the management server to associate the construction plan information and the actual performance information with the management locations in the pipeline that are management objects and generate the construction management information.
18. The pipeline project management program according to claim 16 or 17, wherein, it causes the management server to further execute: a submission document creation process of creating a document associated with the actual performance information for each of the management locations in a prescribed format based on the construction management information.
Citation Information
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