Method, system and equipment for digitally presenting state of jacket working package of maritime work platform
By scientifically dividing and digitally managing the offshore platform jacket project, the problems of inconsistent drawing versions and material delays during construction were solved, and efficient construction management and precise resource allocation were achieved.
Patent Information
- Application Number
- CN202510922565.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-04
- Publication Date
- 2025-10-17
Smart Images

Figure CN120806493A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of digitization, and particularly relates to a method, system and device for digital presentation of a working package state of an offshore platform jacket. BACKGROUND
[0002] The offshore platform jacket is one of the key structures of a marine oil platform, and undertakes the important task of supporting platform equipment and transmitting load. The jacket is usually constructed by using a steel truss structure, and its construction process is complex and involves the collaborative work of multiple professionals. Due to the long construction period, large amount of work and numerous involved processes of the jacket, how to efficiently manage the construction tasks, material supply and progress becomes a key problem in the project management process.
[0003] In the traditional jacket project management and construction mode, the construction unit usually directly receives the drawings and construction material list of the project. However, this approach has many shortcomings. First, the construction unit needs to spend a lot of time and effort to verify whether the version of the drawings is the latest one to ensure that the accurate drawings are used in the construction process. In this process, errors or inconsistencies in the version may directly affect the construction quality and increase the construction period. Second, the construction unit also needs to fully sort out the specific conditions of the materials and apply for the materials from the project group according to the construction tasks. After completing the cumbersome material application and collection procedures, the construction work can officially begin. This manual material application and collection process not only wastes time but also easily leads to delays and errors due to poor communication or inaccurate information. SUMMARY
[0004] The present application provides a method, system and device for digital presentation of a working package state of an offshore platform jacket, aiming to solve the technical problem that the existing technology usually directly issues drawings and construction material lists to the construction unit, and manually checks the version and accuracy of the drawings, which leads to the use of incorrect drawings or delayed material collection, and further leads to construction errors or construction delays.
[0005] In a first aspect, the application discloses a method for digital presentation of a jacket platform work package state, which comprises: dividing a jacket platform land construction project based on preset construction process parameters to obtain a plurality of jacket installation work packages, wherein the jacket installation work package contains a work package construction workload; compiling the plurality of jacket installation work packages to obtain a work package issuing plan of the jacket platform land construction project, wherein each jacket installation work package corresponds to a work package ID, and the plurality of jacket installation work packages are interactively linked with a project four-level plan based on the work package ID; performing material matching according to the plurality of jacket installation work packages to generate a material matching report; when the material matching report indicates that the materials are complete, issuing the plurality of jacket installation work packages to a construction team according to the project four-level plan, and performing digital processing based on the work package issuing plan to generate a work package state board.
[0006] In a second aspect, the application discloses a system for digital presentation of a jacket platform work package state, which is used in the method for digital presentation of the jacket platform work package state, and comprises: a project division module configured to divide a jacket platform land construction project based on preset construction process parameters to obtain a plurality of jacket installation work packages, wherein the jacket installation work package contains a work package construction workload; a work package compilation module configured to compile the plurality of jacket installation work packages to obtain a work package issuing plan of the jacket platform land construction project, wherein each jacket installation work package corresponds to a work package ID, and the plurality of jacket installation work packages are interactively linked with a project four-level plan based on the work package ID; a material matching module configured to perform material matching according to the plurality of jacket installation work packages to generate a material matching report; and a digital processing module configured to, when the material matching report indicates that the materials are complete, issue the plurality of jacket installation work packages to a construction team according to the project four-level plan, and perform digital processing based on the work package issuing plan to generate a work package state board.
[0007] In a third aspect, the application discloses a computer device, which comprises a memory and a processor, the memory stores a computer program, and the processor executes the computer program to realize the steps of the method for digital presentation of the jacket platform work package state.
[0008] The one or more technical solutions provided in the application have at least the following beneficial effects: By scientifically dividing the jacket land construction project based on the preset construction process parameters, a large project can be divided into multiple small and independent jacket installation work packages, each of which contains specific construction workload, so that construction resources can be accurately allocated and work efficiency can be improved. Through this division method, it is ensured that each construction team can clearly understand its own work tasks and required resources, avoiding task overlap or resource waste, thereby effectively controlling the project schedule. The linkage between jacket installation work package compilation and project four-level plan ensures that the execution time of each work package and the overall progress of the project are highly matched, so that the construction team can accurately perform tasks according to the project plan. Since the work package and the four-level plan are linked to each other, the arrangement of the work package can be adjusted in real time according to the changes in the project progress. This flexibility makes project management more efficient and enables timely response to any plan adjustment or change, avoiding delays. The material matching process combines the project bill of materials and inventory conditions to ensure accurate docking of material requirements and actual inventory, avoiding obstacles encountered by construction teams when performing tasks due to incomplete materials. Only when the materials are complete, the work package can be issued to the construction team, which effectively avoids the situation of stopping work to wait for materials. Based on the digital processing of the work package delivery plan, a work package status board is generated, so that project managers can track the status of each work package in real time. Through the work package status board, the construction team and the project manager can clearly understand the completion progress, material arrival status and other key information of each work package, greatly improving the communication efficiency. Through the real-time updated digital board, the project management team can make more scientific decisions to optimize resource scheduling and construction arrangement, thereby improving the transparency and decision-making efficiency of project management.
[0009] The above description is only a summary of the technical solutions of the present application. In order to more clearly understand the technical means of the present application, the following specific embodiments of the present application can be implemented according to the content of the specification, and in order to make the above and other purposes, features and advantages of the present application more obvious and easy to understand, the following specific embodiments of the present application are described in detail. BRIEF DESCRIPTION OF DRAWINGS
[0010] Figure 1 The method provided by the embodiment of the present application for digital presentation of the jacket work package status of the offshore platform is shown in the flowchart.
[0011] Figure 2 The system structure diagram of the digital presentation of the jacket work package status of the offshore platform provided by the embodiment of the present application is shown.
[0012] Figure 3 The structure diagram of an exemplary computer device provided by the embodiment of the present application is shown.
[0013] Legend: item dividing module 10, work package compiling module 20, drawing matching module 30, digitization processing module 40, bus 300, receiver 301, processor 302, transmitter 303, memory 304, bus interface 305. DETAILED DESCRIPTION
[0014] The embodiment of the present application provides a method, system and device for digital presentation of a work package state of an offshore platform jacket, and solves the technical problems that in the prior art, drawings and construction material lists are usually directly issued to construction units, and the version and accuracy of the drawings need to be manually checked, which leads to the use of incorrect drawings or delayed material procurement, and further leads to construction errors or construction delay.
[0015] After introducing the basic principle of the present application, various non-limiting embodiments of the present application will be specifically introduced in combination with the drawings of the specification. It should be understood that the specific embodiments described herein are only used to explain the present application, and are not used to limit the present application.
[0016] In one embodiment, as shown in the accompanying drawings, the embodiment of the present application provides a method for digital presentation of a work package state of an offshore platform jacket, which comprises: Figure 1 Based on the preset construction process parameters, the jacket land construction project is divided to obtain a plurality of jacket installation work packages, wherein the jacket installation work package contains work package construction work quantity. According to the jacket assembly construction steps, the entire construction process is determined, which involves detailed planning of each stage of jacket construction, for example, design of jacket, material preparation, construction process of each stage, etc., and the obtained preset construction process parameters include the sequence of each construction process, required professional technology, used equipment and arrangement of construction personnel, which provides basis for subsequent work package division.
[0017] According to the preset construction process parameters, the jacket land construction project is divided into a plurality of jacket installation work packages, each jacket installation work package corresponds to a specific construction task, which is usually composed of clear task objectives, construction processes and material requirements. The basis for division includes construction steps, process sequence, work content, required working hours, etc. of the project, and the number and scale of the jacket installation work packages are determined according to the actual construction task to ensure that each work package can be independently executed.
[0018] The jacket installation work package contains work package construction work quantity, which is determined by the work package quantity list, which details the work content, estimated working hours and material requirements required to complete each work package, and accurate calculation of work quantity helps subsequent construction progress management and resource allocation of construction teams.
[0019] The jacket installation work package contains work package construction work quantity, which is determined by the work package quantity list, which details the work content, estimated working hours and material requirements required to complete each work package, and accurate calculation of work quantity helps subsequent construction progress management and resource allocation of construction teams.
[0020] The multiple jacket installation work packages are prepared, and a work package issuance plan for the jacket land construction project is obtained, wherein each jacket installation work package corresponds to a work package ID, and the multiple jacket installation work packages are interlinked with the project four-level plan based on the work package ID.
[0021] The multiple jacket installation work packages are prepared using Excel, and the preparation content includes work scope, work drawings, work scheme, material list, material requisition, work plan, and process tracking table. By preparing the work package, it can ensure that the construction team obtains clear and complete construction guidance.
[0022] After the preparation is completed, a work package issuance plan is generated, which is a detailed schedule listing when each work package is assigned to the construction team for execution. The work package issuance plan is prepared based on the project four-level plan, which includes: the first-level plan is the overall project goal and the approximate time frame; the second-level plan is the detailed planning of each construction phase; the third-level plan is the arrangement of specific construction tasks; and the fourth-level plan is the most detailed construction task arrangement, covering specific work package allocation and execution time.
[0023] A unique work package ID is matched for each jacket installation work package, which is used to track, manage and schedule the work package throughout the project. This work package ID can ensure that different work packages can be clearly identified during planning and execution, and it helps to associate them with the four-level plan of the project.
[0024] The multiple jacket installation work packages are interlinked with the project four-level plan based on the work package ID, which means that the time arrangement and construction sequence of each jacket installation work package need to be closely combined with the overall project plan. For example, the issuance time of some jacket installation work packages will be automatically adjusted based on the progress of the project four-level plan. If the project four-level plan changes, the jacket installation work package issuance plan also needs to be adjusted. Through calculation formulas such as Xlookup, the issuance time of the jacket installation work package can be automatically updated with the time of the four-level plan, ensuring real-time tracking and adjustment of project progress.
[0025] According to the multiple jacket installation work packages, material matching is performed, and a material matching report is generated.
[0026] The material matching refers to comparing the material list required in the jacket installation work package with the actual inventory to ensure that the materials required for each work package are complete and accurate. The core of this step is to avoid the interruption or delay of construction due to incomplete materials. When each jacket installation work package is prepared, a detailed list of all required materials and equipment is listed, which is based on the work scope and construction requirements of the jacket installation work package, and accurately lists the model, quantity, specification, etc. of each material. In the material matching process, the Matman system is used for automatic material matching, which compares the material requirement list in the work package with the existing inventory data, and if there is no inventory or insufficient inventory of a certain material, it will be marked as missing material. After completing the matching, a material matching report is generated, which details the material status of each work package, showing which materials are complete and which materials are missing. The report can also provide early warning information for missing materials so that the project team can take timely action.
[0027] When the material matching report indicates that the materials are complete, the multiple jacket installation work packages are issued to the construction team according to the project four-level plan, and the work package issue plan is processed digitally to generate a work package status board.
[0028] When the material matching report indicates that the materials of the jacket installation work package are complete, the project manager confirms that the jacket installation work package can be issued to the construction team, at which point the materials are ready and can ensure that the construction team does not have to wait for materials or drawings and can successfully carry out the construction task. The issue time of the jacket installation work package is closely related to the project four-level plan, which contains detailed construction tasks and time arrangements to ensure that the issue of the jacket installation work package meets the overall progress requirements of the project, so after confirming that the materials are complete, the jacket installation work package is issued according to the project four-level plan schedule to ensure that the construction team starts work on time.
[0029] The information of each jacket installation work package, such as the release, construction progress, required materials, construction personnel, etc. is digitized and input into the project management system. These data will be updated in real time in the project management system, so that relevant personnel can understand the status of the work package at any time. A work package status board can be created using a digital management platform such as Power BI. This work package status board can display the status of all jacket installation work packages in a visual form, making it easy for managers and construction teams to view in real time. The work package status board will display the current status of each jacket installation work package, including "not started", "in progress", "completed", etc. It will also display important information such as the time schedule, material preparation, and construction team allocation of the work package. As the work package is executed, the status board will be updated in real time. When a construction team completes a jacket installation work package, the status board will immediately reflect the "completed" status. In addition, if there is any delay or material shortage, it can also be discovered and handled in time through the status board.
[0030] By establishing a work package status board, project managers can keep track of project progress in real time, quickly identify problems in construction, and take appropriate measures. Instead of relying on tedious manual statistics to understand project progress, all data is readily available. Since all relevant data is integrated into a digital platform, construction teams, project managers, and material management teams can access key information through the status board, reducing communication costs and misunderstandings. In this way, the project team can ensure that materials are fully prepared and efficiently complete construction tasks on schedule. The status of the work package can be tracked comprehensively through digital means to ensure smooth progress of the project.
[0031] Further, the material matching according to the plurality of jacket installation work packages generates a material matching report, including: According to the plurality of jacket installation work packages, material matching is performed using the Matma system. When the BOM material matching of each jacket installation work package is complete, a material complete signal is generated. The material complete signal is added to the material matching report.
[0032] Matma system is an automated system for material management and material matching. Its core function is to compare the material requirement list of the work package with the existing inventory materials to ensure that the materials required by each work package are complete. Matman system verifies whether all materials listed in the BOM (Bill of Materials) of each jacket installation work package are ready according to the BOM (Bill of Materials) of each jacket installation work package. The BOM material list of each jacket installation work package includes detailed information such as specifications, quantities, and models of required materials.
[0033] Specifically, the Matman system automatically compares the BOM material list of each jacket installation work package with the inventory, checks whether the inventory of each material meets the requirements of the work package, for example, a certain work package requires 100 meters of steel pipe, the Matman system queries whether there is enough steel pipe in the current inventory, and whether the inventory meets the specifications, if all the materials in the work package are ready and meet the construction requirements, the Matman system generates a material complete signal indicating that all materials are ready and can be issued for construction. If a certain material is missing or the inventory is insufficient, it is marked as material incomplete and the missing material information is provided for subsequent processing.
[0034] When the Matman system completes the material matching, the material complete signal is added to the material matching report, which details the matching of each work package material, indicating which materials are complete, which materials are missing or unable to meet the requirements. The report includes detailed material lists for each work package, material arrival status, inventory status, and whether it meets construction requirements. The material matching report is usually updated in real time, and after each material matching, the report updates the corresponding material status, for example, if a new batch of materials arrives, the matching is re-executed and the report is updated to show the latest status of material complete or missing. The report not only serves as a basis for work package issuance decisions, but also helps project teams track material preparation status for each work package.
[0035] The automation of this process ensures efficient and accurate material matching, reducing the risk of human error. The Matman system can quickly determine whether the materials are complete, ensuring that construction preparation is not affected by material shortages.
[0036] Further, it also includes: When the BOM material matching of any jacket installation work package is not complete, a material incomplete signal is generated; the BOM material requirement time and BOM material arrival time of the any jacket installation work package are obtained; the work package plan issuance time is generated based on the BOM material requirement time and BOM material arrival time; the material incomplete signal and the work package plan issuance time are added to the material matching report.
[0037] During the material matching process, if the Matman system detects that certain materials required in the BOM of any jacket installation work package cannot meet the requirements, such as insufficient inventory, material specifications do not match or materials have not arrived, an automatic material incomplete signal is generated, indicating that certain materials in the work package have not been prepared in time, so the work package cannot start construction as planned.
[0038] Each jacket installation work package will have a BOM material requirement time, which is the time when the construction team actually starts to use a certain material. The BOM material requirement time is set according to the construction progress and task sequence of the project, to ensure that the material arrives in time to meet the construction needs. For example, a certain jacket installation work package requires steel pipes, welding materials, etc., and these materials are specified in the work package plan to ensure that each material is provided in a timely manner during the construction process.
[0039] The BOM material arrival time refers to the time when the material actually arrives at the construction site from the supplier or storage location. This time is crucial to ensure that the construction is not affected by material delays. When matching materials, the Matman system records the expected arrival time of each material, which is used for comparison and confirmation of whether the construction needs can be met. If the material arrival time is later than the requirement time, it will be considered incomplete.
[0040] The work package plan release time refers to the time when the project management team decides to officially release the work package to the construction team. This time needs to consider multiple factors, especially the preparation of materials. If some materials arrive late, the release time of the work package will be delayed accordingly. By comparing the BOM material requirement time and the BOM material arrival time, the most reasonable work package plan release time is determined. If the material cannot arrive before the requirement time, the release time of the work package will be delayed to ensure that the construction team starts work with complete materials.
[0041] When the materials of a certain work package are not complete, the material matching report is updated and the material incomplete signal is added. This signal shows that the work package cannot be constructed according to the original plan and needs to further process the missing materials. At the same time, the work package plan release time is added. If the release time of the work package is adjusted due to material delay, the new release time will be displayed in the report to allow the construction team to make adjustments according to the latest plan.
[0042] The updated material matching report helps the project management team to clearly understand which work packages can be released on time and which work packages need to be delayed due to incomplete materials. In this way, project managers can adjust the construction plan in a timely manner to avoid construction interruptions.
[0043] Further, before the jacket land construction project is divided based on the preset construction process parameters, the following steps are included: Based on the jacket structure form, determine the jacket assembly construction steps; based on the jacket assembly construction steps, combine the preset construction process and project professional collaboration constraints to generate the preset construction process parameters.
[0044] The jacket is composed of multiple steel trusses, support structures, platforms, etc. The construction method of each part is different. The determination of the jacket structure form involves the analysis of the design drawings of the jacket, the size and weight of each component, and other factors to ensure that each component can be successfully combined during construction. According to the jacket structure form, the jacket assembly construction steps are determined. Each step includes different operations such as steel welding, truss assembly, platform installation, etc. The sequence of each step must ensure compliance with engineering technical requirements and optimize the use of resources and construction time.
[0045] The preset construction procedure includes specific task arrangements for each work stage, such as steel welding, heavy lifting, etc. Project professional collaboration constraints refer to the requirements for collaboration between various professionals in the project, such as electrical engineers, structural engineers, and mechanical engineers who need to coordinate their tasks during construction to avoid duplication of construction or interference. According to the jacket assembly construction steps, the preset construction procedure, and the project professional collaboration constraints, preset construction process parameters are generated. These parameters include information such as the time arrangement of each construction task, resource allocation, material use, etc., providing a basis for the division and issuance of work packages, ensuring that the entire construction process proceeds smoothly according to the established process.
[0046] Further, it includes: Through the Xlookup calculation formula, the work package issuance plan time is automatically updated according to the project four-level plan time.
[0047] Xlookup is a search and reference function in Excel that can find relevant information from a data table based on given conditions. In project management, the Xlookup function is used to achieve automatic synchronization between the work package issuance plan and the project four-level plan. Through the Xlookup formula, the work package issuance plan time can be automatically updated according to the project four-level plan time. For example, if the progress of a task in the project four-level plan changes, the Xlookup formula will automatically adjust the issuance time of the relevant work package. By setting the Xlookup function, the work package issuance time can be highly consistent with the project four-level plan, avoiding construction delays caused by manual update errors. This automated management greatly improves the accuracy of work plans and reduces scheduling chaos caused by human operation errors.
[0048] Further, it includes: According to the project four-level plan time, the multiple jacket installation work packages are prepared. The preparation content includes work scope, work drawings, work scheme, material list, material requisition, work plan, and process tracking table.
[0049] The project four-level plan is a detailed time schedule for the entire project, covering the specific execution time of each task. According to the project four-level plan, the jacket installation work package is prepared to ensure that each work package matches the time schedule of the project. When preparing the jacket installation work package, the work scope, drawings, construction scheme, etc. of each jacket installation work package are accurately arranged according to the time node in the project four-level plan to ensure that the construction team can receive complete task instructions on time.
[0050] Each work package needs to clearly define the scope and content of the task to ensure that the construction team knows the specific work content they are responsible for. Each work package needs to attach the corresponding drawings and construction scheme to ensure that the construction team can perform construction according to the correct design requirements. Each work package also needs to list all the required materials and provide a material requisition form to facilitate the construction team to timely obtain the required materials. Each work package also includes a detailed work plan and process tracking table to ensure that the project progress can be monitored and adjusted in real time.
[0051] Further, the graph matching according to the plurality of jacket installation work packages generates a graph matching report, which includes: According to the work scope, a material list is generated; according to the material list, automatic graph matching is performed to generate the graph matching report.
[0052] The work scope refers to the specific tasks and activities covered by each work package, for example, in the jacket installation work package, the work scope may include welding, assembly, installation, etc. The determination of the work scope helps to clearly define the task content and required resources of each work package. According to the work scope of each work package, a material list is generated, which lists all the materials, tools and equipment required to complete the task, for example, the welding work package requires welding rods, welding machines, steel pipes, etc. and the assembly work package requires bolts, steel plates, etc. Each material item includes the quantity, specification, model, etc. of the material to ensure that the construction team can accurately obtain the required materials.
[0053] The Matman system compares the material list in the work package with the data of the materials in the inventory to check whether each item of material is complete. If there is a shortage of inventory, the missing materials are marked and a replenishment plan is provided. After automatic graph matching is completed, a graph matching report is generated, which details the matching of materials in each work package.
[0054] Further, it also includes: After the graph matching is completed, the material arrival latest time of each material in each jacket installation work package is compared with the project four-level plan time; the materials whose material arrival latest time do not meet the project four-level plan time are added to the key tracking material list.
[0055] Each material in each work package has a material arrival deadline, which refers to the latest time for the material to arrive at the construction site. The material arrival deadline is usually determined based on factors such as the project procurement plan and supplier delivery time. The project four-level plan is a detailed project schedule that includes the construction time for each work package and the specific time nodes for each task. After the material matching is completed, the material arrival deadline of each material in each work package is compared with the corresponding project four-level plan time to ensure that the arrival time of each material can meet the construction requirements and will not cause construction delays. If the material arrival deadline of a certain material is later than the construction time of the project four-level plan, it indicates that the material cannot meet the construction requirements and may cause delays in the construction schedule.
[0056] If the arrival deadline of a material in a work package is later than the project four-level plan time, the material is automatically identified and marked as a key tracking material. These materials may delay the construction plan and therefore must be given special attention. The key tracking material list is a list specifically used to track critical materials and tasks. Each material that does not meet the project four-level plan time is automatically added to this list, which includes the material name, specification, quantity, material arrival time, and project four-level plan time, as well as the remedial measures that need to be taken, such as accelerating procurement, adjusting the construction plan, etc.
[0057] The project management team can regularly check this key tracking material list to ensure the procurement and supply progress of all delayed materials. Through continuous tracking of these materials, timely remedial measures can be taken to avoid construction interruptions or project delays due to material delays. A warning mechanism can also be set up to notify relevant personnel in a timely manner about materials that are about to arrive but still cannot meet the requirements of the project four-level plan, ensuring that they take action to avoid delays in the project schedule.
[0058] In summary, the method for digitally presenting the status of the offshore platform jacket work package provided by the embodiments of the present application has the following technical effects: By scientifically dividing the jacket land construction project based on the preset construction process parameters, a huge project can be divided into multiple small and independent jacket installation work packages, each of which contains specific construction workload, so that construction resources can be accurately allocated and work efficiency can be improved. Through this division method, it is ensured that each construction team can clearly understand its own work tasks and required resources, avoiding task overlap or resource waste, thereby effectively controlling the project duration. The linkage between the jacket installation work package compilation and the project four-level plan ensures that the execution time of each work package and the overall progress of the project are highly matched, so that the construction team can accurately perform tasks according to the project plan. Since the work package and the four-level plan are linked to each other, the arrangement of the work package can be adjusted in real time according to the changes in the project progress. This flexibility makes project management more efficient and can respond to any plan adjustment or change in time to avoid delays. The material matching process combines the project bill of materials and the inventory situation to ensure the precise docking of material requirements and actual inventory, avoiding obstacles encountered by construction teams when performing tasks due to incomplete materials. Only when the materials are complete, the work package can be issued to the construction team, which effectively avoids the situation of stopping work to wait for materials. Based on the digital processing of the work package delivery plan, a work package status board is generated, so that project managers can track the status of each work package in real time. Through the work package status board, the construction team and the project manager can clearly understand the completion progress, material arrival situation and other key information of each work package, greatly improving the communication efficiency. Through the real-time updated digital board, the project management team can make more scientific decisions to optimize resource scheduling and construction arrangement, thereby improving the transparency and decision-making efficiency of project management.
[0059] In the second embodiment, based on the same inventive concept as the method for digitally presenting the status of the jacket work package of the offshore platform in the foregoing embodiments, as shown in Figure 2 The embodiment of the present application provides a system for digitally presenting the status of a jacket work package of an offshore platform, which comprises: The project division module 10 is configured to divide the jacket land construction project based on preset construction process parameters to obtain a plurality of jacket installation work packages, wherein each jacket installation work package contains a work package construction workload; the work package compilation module 20 is configured to compile the plurality of jacket installation work packages to obtain a work package issuing plan of the jacket land construction project, wherein each jacket installation work package corresponds to a work package ID, and the plurality of jacket installation work packages are linked with the project four-level plan based on the work package ID; the drawing matching module 30 is configured to match drawings according to the plurality of jacket installation work packages to generate a drawing matching report; and the digital processing module 40 is configured to, when the drawing matching report indicates that materials are complete, issue the plurality of jacket installation work packages to construction teams according to the project four-level plan and perform digital processing based on the work package issuing plan to generate a work package status board.
[0060] Further, the drawing matching module 30 is configured to perform the following operation steps: According to the plurality of jacket installation work packages, the Matma system is used for drawing matching, and when the BOM material matching of each jacket installation work package is complete, a material complete signal is generated; and the material complete signal is added to the drawing matching report.
[0061] Further, the drawing matching module 30 is configured to perform the following operation steps: When the BOM material matching of any jacket installation work package is not complete, a material incomplete signal is generated; the BOM material demand time and the BOM material arrival time of the any jacket installation work package are obtained; the work package plan issuing time is generated based on the BOM material demand time and the BOM material arrival time; and the material incomplete signal and the work package plan issuing time are added to the drawing matching report.
[0062] Further, the project division module 10 is configured to perform the following operation steps: The jacket assembly construction steps are determined based on the jacket structure form; and the preset construction process parameters are generated based on the jacket assembly construction steps and in combination with preset construction procedures and project professional coordination constraints.
[0063] Further, the work package issuing plan time is automatically updated with the project four-level plan time by using an Xlookup calculation formula.
[0064] Further, the work package compilation module 20 is configured to perform the following operation steps: The plurality of jacket installation work packages are compiled according to the project four-level plan time, and the compilation content includes work scope, work drawings, work scheme, bill of materials, material requisition, work plan, and process tracking table.
[0065] Furthermore, the image matching module 30 is configured to perform the following steps: A bill of materials is generated according to the work scope; and automatic drawing-material matching is performed according to the bill of materials to generate the drawing-material matching report.
[0066] Furthermore, the image matching module 30 is configured to perform the following steps: After the drawing and material matching is completed, the latest arrival time of each material in each jacket installation work package will be compared with the project's fourth-level planned time; materials whose latest arrival time does not meet the project's fourth-level planned time will be added to the key tracking material list.
[0067] Through the detailed description of the method for digitally presenting the status of a jacket work package on an offshore platform in the foregoing description, those skilled in the art can clearly understand the system for digitally presenting the status of a jacket work package on an offshore platform in this embodiment. Since the system corresponds to the method disclosed in the embodiment, the description is relatively simple, and relevant details can be referred to the description of the method.
[0068] Example 3, as Figure 3 The figure shows a schematic diagram of the structure of an exemplary computer device of the present application. Figure 3 In the figure, the bus architecture is represented by bus 300, which can include any number of interconnected buses and bridges. Bus 300 connects various circuits including one or more processors represented by processor 302 and memory represented by memory 304. Bus 300 can also connect various other circuits such as peripheral devices, voltage regulators, and power management circuits, which are all well known in the art and therefore will not be described further herein. Bus interface 305 provides an interface between bus 300 and receiver 301 and transmitter 303. Receiver 301 and transmitter 303 can be the same component, namely a transceiver, which provides a unit for communicating with various other devices over a transmission medium. Processor 302 is responsible for managing bus 300 and general processing, while memory 304 can be used to store data used by processor 302 when performing operations.
[0069] The technical features of the above embodiments can be combined arbitrarily. To make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0070] The foregoing description of the disclosed embodiments enables a person skilled in the art to make or use the application. Modifications of these embodiments will occur to persons of skill in the art, and that the generic principles defined herein can be applied to other embodiments without departing from the spirit or scope of the application. Therefore, the present application is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A digital presentation method for the status of an offshore platform jacket work package, characterized in that: The method comprises: Dividing the jacket onshore construction project based on preset construction process parameters to obtain multiple jacket installation work packages, wherein the jacket installation work package includes work package construction workload; compiling the plurality of jacket installation work packages and obtaining a work package distribution plan for the jacket onshore construction project, wherein each jacket installation work package corresponds to a work package ID, and the plurality of jacket installation work packages are linked to the project's four-level plan based on the work package ID; Perform drawing-material matching according to the plurality of jacket installation work packages, and generate a drawing-material matching report; When the drawing-material matching report indicates that all materials are complete, the plurality of jacket installation work packages are issued to the construction teams according to the project's four-level plan, and digital processing is performed based on the work package issuance plan to generate a work package status dashboard.
2. The method for digitally presenting the status of a jacket work package of an offshore platform according to claim 1, characterized in that: The performing drawing-material matching according to the plurality of jacket installation work packages and generating a drawing-material matching report includes: According to the multiple jacket installation work packages, use the Matma system to perform drawing and material matching, and generate a material complete signal when the BOM materials of each jacket installation work package are matched completely; The material complete signal is added to the pattern matching report.
3. The method for digitally presenting the status of a jacket work package of an offshore platform according to claim 2, characterized in that: Also includes: When the BOM material matching of any jacket installation work package is incomplete, a material incomplete signal is generated; Obtain the BOM material demand time and BOM material arrival time of any jacket installation work package; Generate a work package schedule based on the BOM material demand time and BOM material arrival time; The material incomplete signal and the planned release time of the work package are added to the drawing-material matching report.
4. The method for digitally presenting the status of a jacket work package of an offshore platform according to claim 1, wherein: Before dividing the jacket onshore construction project based on the preset construction process parameters, the following steps are included: Determine the jacket assembly construction steps based on the jacket structure; Based on the jacket assembly construction steps, combined with preset construction procedures and project professional collaboration constraints, the preset construction process parameters are generated.
5. The method for digitally presenting the status of a jacket work package of an offshore platform according to claim 1, characterized in that: include: Through the Xlookup calculation formula, the planned time for work package distribution is automatically updated according to the fourth-level project plan time.
6. The method for digitally presenting the status of a jacket work package of an offshore platform according to claim 5, characterized in that: include: According to the fourth-level planned time of the project, prepare the multiple jacket installation work packages, including the scope of work, work drawings, work plan, bill of materials, material requisition form, work plan and process tracking sheet.
7. The method for digitally presenting the status of a jacket work package of an offshore platform according to claim 6, characterized in that: The performing drawing-material matching according to the plurality of jacket installation work packages and generating a drawing-material matching report includes: Generate a bill of materials based on the stated scope of work; Automatic drawing-material matching is performed according to the material list to generate the drawing-material matching report.
8. The method for digitally presenting the status of a jacket work package of an offshore platform according to claim 1, wherein: Also includes: After the drawing and material matching is completed, the latest material arrival time of each material in each jacket installation work package is compared with the project level 4 planning time; The materials whose latest arrival time does not meet the fourth-level planned time of the project are added to the key tracking material list.
9. Offshore platform jacket work package status digital presentation system, characterized by: A system for implementing the method for digitally presenting the status of an offshore platform jacket work package according to any one of claims 1 to 8, comprising: A project division module is used to divide the jacket onshore construction project based on preset construction process parameters to obtain multiple jacket installation work packages, wherein the jacket installation work package includes the work package construction workload; a work package compilation module, configured to compile the plurality of jacket installation work packages and obtain a work package distribution plan for the jacket onshore construction project, wherein each jacket installation work package corresponds to a work package ID, and the plurality of jacket installation work packages are linked to the project's four-level plan based on the work package ID; A drawing matching module is used to perform drawing matching according to the plurality of jacket installation work packages and generate a drawing matching report; The digital processing module is configured to issue the plurality of jacket installation work packages to the construction teams according to the project's Level 4 plan when the drawing-material matching report indicates that all materials are complete, and to perform digital processing based on the work package issuance plan to generate a work package status dashboard.
10. A computer device comprising a memory and a processor, wherein the memory stores a computer program, wherein: The processor executes the computer program to implement the steps of the method for digitally presenting the status of a jacket work package of an offshore platform according to any one of claims 1 to 8.