An underground pipeline management system based on municipal engineering
By establishing the client's case information related project tree and the line point map positioning punch-in module, the problem of insufficient interactivity and real-time update in the underground pipeline management system is solved, the management efficiency and transparency of the construction process are improved, and the project construction period is shortened.
Patent Information
- Application Number
- CN202310107353.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-13
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2043-02-13
AI Technical Summary
During the construction process, the existing underground pipeline management system has poor interaction with the ports and poor real-time updates. It is impossible to grasp the project promotion process as soon as possible. The complex construction process leads to low management efficiency and cannot meet the actual application needs of the platform.
Establish a client-based case information association project tree, support multi-client query and interaction, combine the line point map positioning punch-in module and LBS position positioning message functions to realize systematic management and intuitive display of construction status.
It has improved the task processing efficiency of underground pipeline project management, simplified the line lay-off management and acceptance process, reduced the process approval burden of construction units, shortened the project construction period, and realized transparent and real-time communication of the construction process.
Smart Images

Figure CN116066755B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of underground pipeline management, and the IPC classification number is: F17D5 / 00. In particular, it relates to an underground pipeline management system based on municipal engineering. Technical Background
[0002] In the current urban construction, in order to further strengthen the spatial data management of urban underground pipelines, actively maintain pipeline construction information, enhance the visualization of project management during the construction of urban underground pipelines, and systematically plan the construction strategy of urban underground pipeline platforms, it is urgent to research and upgrade the urban underground pipeline management and dynamic maintenance framework, and deeply promote the digital management mode during the construction process of pipeline projects. However, during the construction of the underground pipeline management system framework, there are usually problems such as weak interactivity between the management system and each port, poor real-time update of the management system during the process of promoting the pipeline project process, the construction unit cannot grasp the process of project promotion in a timely manner, and cannot make adaptive modifications and corrections to the problems existing in a single project. In addition, due to the relatively complex processes in the line laying management and acceptance of underground pipelines, the overall execution efficiency of the management system is low, and it cannot better meet the actual application requirements of the platform.
[0003] Patent CN201610357663 provides a 3D underground pipeline integrated management method based on cloud computing. By installing sensors during the construction and installation of underground pipelines, the working status of underground pipelines can be monitored in real time, and timely processing can be carried out when abnormal information appears. The underground pipeline management described in this patent mainly focuses on the later maintenance work after the completion of pipeline construction, and does not design the process monitoring during the early construction process. At the same time, underground pipelines have the problems of long lines and closed installation. If a large number of sensors are installed, it will cause problems such as high cost and difficulty in maintenance.
[0004] Patent CN201520553995 provides an underground pipeline data sharing system. This patent realizes the sharing of underground pipeline data by establishing a data sharing device and a data conversion device, converting the collected underground pipeline data into a unified format, and then sending it to the integrated pipeline information management system. However, the essence of the data sharing device is still a kind of sensor, and obtaining pipeline data through sensors is a common way to obtain data. At the same time, this patent does not involve information exchange and interactive processing in the construction layout of underground pipelines.
[0005] Therefore, in view of the problems existing in the current underground pipeline management system, it is urgent to introduce an underground pipeline management system based on municipal engineering. Summary of the Invention
[0006] In view of the above problems, the present invention provides an underground pipeline management system based on municipal engineering. The underground pipeline management system establishes a case information associated project tree based on the client side to systematically manage the construction status of underground pipelines. At the same time, it supports querying and interaction of multiple clients to process information during the construction process, construction status, and construction handover. Finally, a visualization template is established to customize the display of the underground pipeline map through multiple types of terminals to achieve intuitive management and control of underground pipelines.
[0007] Preferably, the underground pipeline management system specifically includes a map positioning and clock-in module based on setting-out points and a function of real-time pushing LBS (services centered around geographical location data) location positioning messages.
[0008] Further preferably, in the map positioning and clock-in module based on setting-out points, operators can enter the management interface for setting out pipelines in public spaces to add information on the on-site surveying process in real time. The surveying process includes clock-in when operators enter and leave the site and uploading of on-site photos.
[0009] Preferably, the map positioning and clock-in module based on setting-out points automatically generates the movement trajectory of operators by obtaining real-time position information data of operators, and thus generates a municipal operation trajectory map.
[0010] Specifically, the municipal operation trajectory map can be updated in real time according to the movement of operators during the construction process, and finally a global operation trajectory map is generated for display and supervision.
[0011] Preferably, the case information associated project tree specifically includes management of setting out pipelines in public spaces, inspection of set-out pipelines in public spaces, and inspection of building supporting pipelines.
[0012] Preferably, the specific management process of the management of setting out pipelines in public spaces is as follows:
[0013] S1. First, determine whether the setting-out management task is a planning setting-out application task or a setting-out review application task;
[0014] S2. When the setting-out management task is a planning setting-out application task, the system pushes the setting-out task to the designated surveying unit through the client side;
[0015] S3. When the setting-out management task is a setting-out review application task, the system automatically performs the setting-out review operation and pushes a reminder of the review progress through the client side;
[0016] S4. After the planning setting-out application task or the setting-out review application task is completed, the system pushes a setting-out completion prompt through the client side and automatically generates a setting-out handover form based on a standard format.
[0017] Specifically, the public space includes but is not limited to road space and green space.
[0018] Preferably, the setting-out handover form is pushed to a designated unit through the system for offline signature process. The offline signature process can customize the appointment sending time. The designated units include the Municipal Planning and Natural Resources Bureau and other construction units. After the offline signature process is completed, the management task of pipeline setting-out in public space is completed.
[0019] Preferably, the specific management process of the pipeline line inspection management in public space is as follows:
[0020] A1. First, after the management task of pipeline setting-out in public space is completed, the system automatically jumps to the interface for applying for line inspection;
[0021] A2. Judge whether the line inspection standard is the commitment-based line inspection;
[0022] A3. When it is judged that the line inspection standard is not the commitment-based line inspection, the planning line inspection method is used for line inspection;
[0023] A4. When it is judged that the line inspection standard is the commitment-based line inspection, conduct a formal review of the line inspection materials to judge whether they meet the acceptance standards;
[0024] A5. When the formal review meets the acceptance standards, the system jumps to the proportional sampling interface and automatically generates a sampling inspection record form, and the pipeline line inspection management in public space is completed.
[0025] Specifically, the line inspection materials include the pipeline engineering setting-out handover form, the construction project construction commitment letter, and the pipeline engineering tracking measurement result report. In the proportional sampling interface, for the pipeline projects inspected under the commitment-based system, the planning and resource administrative department conducts sampling inspection according to a proportion of not less than 5% of the case file quantity.
[0026] Preferably, the case information is associated with the project tree, and a custom service for the construction unit is also established. A case error correction application function is set in the custom service for the construction unit.
[0027] Preferably, the case error correction application function can locate and distribute the error correction cases, and send the error correction case information to multiple clients through the system management background for case process handling.
[0028] Preferably, the underground pipeline management system can be built using any one of the client public account, the client APP, and the web page framework.
[0029] Further preferably, the underground pipeline management system further includes an application service evaluation function, which is used to synchronously receive service evaluation notifications, evaluate service attitudes and service quality, and complete the upgrade and optimization of the system.
[0030] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0031] (1) The present invention first establishes an associated project tree based on the client. The associated project tree mainly aims at the whole-process approval monitoring and information flow problems involved in the pipeline drawing supply, pipeline planning and pipeline approval management processes of underground pipeline projects. It is used to improve the task processing efficiency of the underground pipeline system, simplify the overall processes of setting out management and acceptance management, logicalize the complex underground pipeline project management procedures, and manage underground pipeline projects by using the client-based associated project tree, so as to reduce the process approval burden of the construction unit and shorten the overall project duration.
[0032] (2) On the basis of (1), the present invention adds a setting out point map positioning clock-in module and a function of real-time pushing LBS location positioning messages to the underground pipeline management system. Since the existing municipal engineering underground pipeline management system cannot deeply understand the action tracks and project progress of the operators during the construction process, although the location information of the operators can be obtained, the drawing paths of the operators cannot be intuitively observed based on the location information, resulting in a low transparency of the project construction. In order to better overcome this problem, the present invention establishes a municipal operation track map based on the action track, so as to realize the real-time tracking of the pick-up and transfer operation situation, help the construction unit quickly observe the azimuth of the construction drawing path, and make timely feedback and communication.
[0033] (3) On the basis of (2), in the associated project tree of the present invention, a function of reserving the setting out time is established. The function of reserving the setting out time can communicate between the construction unit and the surveying and mapping unit to make an appointment for the setting out time, improve the efficiency and management quality of the engineering project management, and at the same time, relevant planning approval materials can be viewed at any time during the setting out management process for use in setting out.
[0034] (4) On the basis of (1)-(3), the client-based associated project tree of the present invention can realize the information push and interactive communication operation with multiple clients during the process of project process advancement, so as to send the project process information to the corresponding construction unit in real time. The construction unit can also conduct the handover of the project process through this system, thus overcoming the problems of low correlation between each process, scattered approval departments and slow progress of the process in the original underground pipeline management process, and further shortening the project cycle of the construction unit.
[0035] (5)On the basis of (4), the present invention establishes a client customization service function and a case error correction application for the construction unit. After the case error correction application, the error correction case positioning and distribution function can be executed, and the task distribution management operation is carried out through the client system background. Thereby improving the flexibility of the construction unit in managing individual projects, and timely updating and processing the problems found in real time or the abnormal operations encountered during the management process of the underground pipeline project, so as to promote the normal progress of the project. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] Figure 1 It is a flow chart of the case information association tree in the underground pipeline management system based on municipal engineering. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0037] Embodiment:
[0038] An underground pipeline management system based on municipal engineering described in this embodiment is as Figure 1 shown. In the underground pipeline management system, a case information association project tree based on the client is established to systematically manage the construction status of the underground pipeline; at the same time, it supports the query and interaction of multiple clients to process the information during the construction process, construction status and construction handover; finally, a visualization template is established to customize the display of the underground pipeline map through multiple types of terminals to achieve the intuitive control of the underground pipeline management.
[0039] The case information association project tree includes the management of public space pipeline setting-out, the management of public space pipeline line inspection, and the management of building supporting pipeline line inspection. The case information management process is as follows:
[0040] S1. First, judge whether the setting-out management task is a planning setting-out application task;
[0041] S2. When the setting-out management task is a planning setting-out application task, the system pushes the setting-out task to the designated surveying and mapping unit through the client;
[0042] S3. After the planning setting-out application task is completed, the system pushes a setting-out completion prompt through the client, and at the same time automatically generates a setting-out handover form based on the standard format.
[0043] The specific process of the setting-out handover is as follows:
[0044] S11. The setting-out handover initiation operation. In the setting-out handover initiation operation, after the project leader of the surveying and mapping unit completes the setting-out task assignment, estimates the setting-out completion time according to the actual completion situation, and selects a specific project through the project list, thereby entering the setting-out result handover interface. In the setting-out result handover interface, select the setting-out handover time and submit it to start the on-site setting-out handover.
[0045] S12. In the on-site setting-out handover, the designated units in the setting-out handover form include the Municipal Department, the Pipeline Center, the Road Traffic Department, and the Landscape and Greening Department. The designated units receive the setting-out handover form sent by the system synchronously with the construction unit. By entering the handwritten signature and selecting the signature submission option, the setting-out handover confirmation is completed.
[0046] S13. After the setting-out application is completed, the operation of completing the setting-out application can be carried out. For the operation of completing the setting-out application, after the project leader of the surveying and mapping unit uploads the on-site evaluation photos and selects the submission option, the operation of completing the setting-out is completed. The operation of completing the setting-out is sent synchronously to the relevant management departments, and the relevant management departments include the Municipal Department, the Pipeline Center, the Road Traffic Department, and the Landscape and Greening Department. The relevant management departments can view the process information by selecting the setting-out handover form.
[0047] The specific management process of the public space pipeline line inspection management is as follows:
[0048] A1. First, after the public space pipeline setting-out management task is completed, the system automatically jumps to the application interface for line inspection;
[0049] A2. Judge whether the line inspection standard is the commitment-based line inspection;
[0050] A3. When it is judged that the line inspection standard is not the commitment-based line inspection, the planning line inspection method is used for line inspection;
[0051] A4. When it is judged that the line inspection standard is the commitment-based line inspection, a formal review of the line inspection materials is carried out to judge whether they meet the acceptance standards;
[0052] A5. When the formal review meets the acceptance standards, the system jumps to the proportional sampling interface and automatically generates a sampling inspection record form, and the public space pipeline line inspection management is completed.
[0053] The specific operation process of the building supporting pipeline line inspection management is as follows;
[0054] B1. First, it is determined that the building supporting pipeline line inspection management is the commitment-based line inspection;
[0055] B2. On the basis of B1, a formal verification of the line inspection materials is carried out to judge whether they meet the verification standards;
[0056] B3. If the formal verification meets the verification standards, the review work task is started;
[0057] B4. After the review work is completed, an attachment of the review result notice is automatically generated and pushed to the construction unit through the client, and at this time the building supporting pipeline line inspection management is completed.
[0058] Specifically, the line inspection materials include a line inspection application form, a commitment letter for informing line inspection of construction projects, the results of construction project line setting out, an appointment application for line setting out compliance time, and the selection of a line setting out unit; after the form verification is qualified, a message needs to be sent to the pipeline center for review and filing, and the construction unit is notified to collect the certificate of compliance. The time limit for the review work task is 3 days, and a review result notice is generated within 3 days.
Claims
1. An underground pipeline management system based on municipal engineering, characterized in that, The described underground pipeline management system has established a case information association project tree based on the client side to systematically manage the construction status of underground pipelines. At the same time, it supports querying and interaction of multiple clients to handle information processing during the construction process, construction status, and construction handover. Finally, a visualization template is established to customize the display of the underground pipeline map through multiple types of terminals to achieve intuitive control of underground pipeline management. The case information association project tree specifically includes public space pipeline layout management, public space pipeline line inspection management, and building supporting pipeline line inspection management. The specific management process of the public space pipeline layout management is as follows: S1. First, determine whether the layout management task is a planning layout application task or a layout review application task. S2. When the layout management task is a planning layout application task, the system pushes the layout task to the designated surveying and mapping unit through the client. S3. When the layout management task is a layout review application task, the system automatically performs a layout review operation and pushes a reminder of the review progress through the client. S4. After the planning layout application task or the layout review application task is completed, the system pushes a layout completion prompt through the client and automatically generates a layout handover form based on the standard format. The specific management process of the public space pipeline line inspection management is as follows: A1. First, after the public space pipeline layout management task is completed, the system automatically jumps to the line inspection application interface. A2. Determine whether the line inspection standard is a commitment-based line inspection. A3. When it is determined that the line inspection standard is not a commitment-based line inspection, use the planning line inspection method for line inspection. A4. When it is determined that the line inspection standard is a commitment-based line inspection, conduct a formal review of the line inspection materials to determine whether they meet the acceptance standards. A5. When the formal review meets the acceptance standards, the system jumps to the proportional sampling interface and automatically generates a sampling inspection record form, and the public space pipeline line inspection management is completed.
2. The underground pipeline management system based on municipal engineering according to claim 1, wherein, The described underground pipeline management system specifically includes a layout point map positioning clock-in module and a real-time push LBS location positioning message module.
3. An underground pipeline management system based on municipal engineering according to claim 2, characterized in that, The layout point map positioning clock-in module obtains the real-time position information data of the operator and automatically generates the movement trajectory of the operator based on the real-time position information data to generate a municipal operation trajectory map.
4. A municipal engineering-based underground pipeline management system according to claim 1, characterized in that, The layout handover form is pushed to the designated unit through the system for handling the offline signature process. The offline signature process can customize the appointment sending time. The designated unit includes the Municipal Planning and Natural Resources Bureau and the construction unit. After the offline signature process is completed, the public space pipeline layout management task is completed.
5. An underground pipeline management system based on municipal engineering according to claim 4, characterized in that, The case information association project tree has also established a construction unit custom service, and a case error correction application function is set in the construction unit custom service.
6. The underground pipeline management system based on municipal engineering according to claim 5, characterized in that, The case error correction application function can perform the positioning and distribution of error correction cases, and send the error correction case information to multiple clients through the system management background for case process handling.
7. The underground pipeline management system based on municipal engineering according to claim 1, wherein The described underground pipeline management system can be built using any one of the client public account, client APP, and web framework.
Citation Information
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