Progress quality linkage application system based on BIM

Through the BIM-based progress quality linkage application system, the problem of progress planning and actual deviation in traditional projects is solved, the precise tracking of project progress and the rationality of resource allocation is achieved, and the coordinated efficiency of project management is improved.

CN120471322APending Publication Date: 2025-08-12中国建设基础设施有限公司 +4

Patent Information

Application Number
CN202510397969.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2025-08-12

AI Technical Summary

Technical Problem

In traditional engineering construction, the construction progress plan relies on experience estimates, resulting in the actual construction inconsistent with the plan, the progress deviation cannot be tracked in time, and the quality verification management information is not shared in time, resulting in large errors.

Method used

The BIM-based progress quality linkage application system is adopted, and the integration of BIM component modules, schedule node task modules and construction quality modules can realize dynamic progress tracking and quality acceptance of engineering structural components, and use three-dimensional visualization technology and GIS platform for information sharing and automatic tracking.

Benefits of technology

It realizes accurate tracking of project progress, reduces human error, improves the collaborative cooperation capabilities of project management, and ensures the accuracy of progress records and the rationality of resource allocation.

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Abstract

The invention relates to the technical field of dynamic progress tracking of engineering component level BIM, and discloses a BIM-based progress quality linkage application system, a BIM component module is connected with a progress plan node task module, and the BIM component module is connected with a construction quality module; the BIM platform is very high in information integration level, can integrate all progress information generated by a project, and can continuously update and increase the information according to the project progress; project management is carried out through the BIM technology, cooperation between project participation units and professions can be conveniently achieved, and problems generated in a project can be timely communicated and solved; the construction progress of the structure in a project is automatically tracked based on the dynamic progress management technology of the component-level BIM, the completion condition of the actual progress can be mastered more accurately, errors caused by human factors are avoided, progress tracking is more accurate, the burden of technicians is reduced no longer depending on manual recording, and the progress tracking efficiency is improved. And the basis for formulating progress correction measures and resource allocation schemes is more reasonable.
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Description

Technical Field

[0001] The present invention relates to the technical field of dynamic progress tracking of engineering component-level BIM, and specifically to a BIM-based progress-quality linkage application system. Background Art

[0002] In traditional construction projects, resource allocation plans are organized based on the experience of the construction organization plan preparer, combined with various quota calculation formulas. This leads to the calculation of construction time requirements for each sub-project, the creation of a Gantt chart, and the formation of a construction schedule. However, these empirically estimated values, sometimes slightly different from actual usage, can impact the overall construction process, causing delays and discrepancies between the project and the planned schedule. Furthermore, these discrepancies cannot be tracked and displayed in the Gantt chart. However, the application of quality inspection and reporting management technology is currently very mature. Leveraging BIM technology and integrating it with unit projects within quality inspection and reporting management allows for rapid sharing and tracking of information throughout the construction process. This first addresses the collaborative exchange of project information. Secondly, through multiple real-time process simulations, the entire unit project is divided into the most detailed sections based on construction technology and structure. This minimizes errors caused by empirical estimates, outdated data records, and actual operations, ensuring that actual progress is accurately reflected in the records. To this end, a BIM-based progress-quality linkage application system is proposed. Summary of the Invention

[0003] The purpose of the present invention is to provide a BIM-based progress-quality linkage application system to solve the problems raised in the above background technology.

[0004] To achieve the above-mentioned object, the present invention provides the following technical solution: a BIM-based progress-quality linkage application system, comprising a BIM component module, a progress planning node task module, and a construction quality module, wherein the BIM component module is connected to the progress planning node task module, and the BIM component module is connected to the construction quality module;

[0005] The BIM component module is used to represent all engineering structural components;

[0006] The progress plan node task module is used to record the construction progress of the component;

[0007] The construction quality module is used for acceptance of project quality.

[0008] Preferably, the BIM component module includes a BIM data model, a data processing and optimization unit, a GIS platform and a 3D service publishing unit;

[0009] The BIM data model is used to display the appearance, structure and internal layout of the building project through three-dimensional visualization technology;

[0010] The data processing and optimization unit is used for processing, analyzing and optimizing three-dimensional data;

[0011] The GIS platform is used to achieve the integration of building information and geographic space information;

[0012] The three-dimensional service publishing unit is used to share and access the three-dimensional data model in the form of a service.

[0013] Preferably, the above-mentioned BIM data model is connected to the data processing and optimization unit, the data processing and optimization unit is connected to the GIS platform, and the GIS platform is connected to the three-dimensional service publishing unit.

[0014] Preferably, the construction quality module includes an acceptance initiation unit, an acceptance material submission unit, an acceptance unit, a BIM component information update unit, and a schedule node task progress update unit;

[0015] The acceptance initiating unit is used to select the project that needs acceptance;

[0016] The acceptance material submission unit is used to submit basic data for acceptance of the project;

[0017] The acceptance unit is used to review the submitted acceptance application;

[0018] The BIM component information updating unit is used to update the end date of the current acceptance project, and the BIM component module bound to the acceptance project is also marked as completed;

[0019] The progress plan node task progress updating unit is used to record the end time of the BIM component module and update the completed progress of the task node.

[0020] Preferably, the above-mentioned acceptance initiation unit is connected to the acceptance material submission unit, the acceptance material submission unit is connected to the acceptance unit, the acceptance unit is connected to the BIM component information update unit, and the BIM component information update unit is connected to the schedule node task progress update unit.

[0021] Preferably, the BIM component information updating unit is connected to the BIM component module.

[0022] Preferably, the above-mentioned schedule node task progress updating unit is connected to the schedule node task module.

[0023] Preferably, the above-mentioned BIM component module is connected to the initiating acceptance unit.

[0024] Compared with the existing technology, the above technical scheme adopted in the present invention has the following technical effects: the BIM platform of the present invention has a very high information integration degree and a very powerful system. It can integrate all the progress information generated by the project and can continuously update and add information according to the progress of the project; BIM technology is used to carry out project management, which can easily realize the collaborative cooperation between project participating units and professions, and problems arising in the project can also be communicated and solved in time; the dynamic progress management technology based on component-level BIM is used to automatically track the progress of structural construction in the project, which can more accurately grasp the completion status of the actual progress, avoid errors caused by human factors, and make progress tracking more accurate. It no longer relies on manual records to reduce the burden on technical personnel, and the basis for formulating progress correction measures and resource allocation plans is more reasonable. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0026] Figure 1 A schematic diagram of the system of the present invention;

[0027] Figure 2 Schematic diagram of the BIM component module of the present invention. DETAILED DESCRIPTION

[0028] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0029] It should be noted that the structures, proportions, sizes, etc. illustrated in the drawings of this specification are only used to match the contents disclosed in the specification for people familiar with this technology to understand and read, and are not used to limit the conditions under which this application can be implemented. Therefore, they have no substantive technical significance. Any structural modification, change in proportional relationship or adjustment of size should still fall within the scope of the technical content disclosed in this application without affecting the efficacy and purpose that can be achieved by this application.

[0030] Example

[0031] See also Figure 1-2 , the present invention provides a technical solution: a BIM-based progress-quality linkage application system, comprising a BIM component module, a progress plan node task module and a construction quality module, the BIM component module is connected to the progress plan node task module, and the BIM component module is connected to the construction quality module;

[0032] BIM component module, used to represent all engineering structural components;

[0033] Schedule node task module, used to record the construction progress of components;

[0034] Construction quality module, used for acceptance of project quality;

[0035] First, prepare the basic data for quality management. Set up the quality unit division of the project in quality management, and structurally divide all the structures in the project into the smallest quality units. After the creation is completed, bind each minimum quality unit to its corresponding BIM component module. A single BIM component module can only be bound to a single minimum quality unit.

[0036] Secondly, schedule planning involves initiating the project, grading the schedule, and filling in the planned start and completion dates and the person responsible for tracking the progress within the GIS platform. Alternatively, a schedule can be compiled in Project software and imported into the GIS platform to generate a schedule list. Schedules can be linked to BIM data models manually within the model association function, or WBS codes can be configured within the BIM data model and linked with a single click.

[0037] After the preparation and association of the schedule plan is completed, the quality unit and the schedule plan are ready. The construction quality module is associated with the schedule plan node task module using the BIM component module as a medium.

[0038] The BIM component module includes BIM data model, data processing and optimization unit, GIS platform and 3D service publishing unit;

[0039] BIM data model, used to display the appearance, structure, and interior layout of a building project through 3D visualization technology;

[0040] Data processing and optimization unit, used for processing, analysis and optimization of three-dimensional data;

[0041] GIS platform, used to integrate building information with geographic spatial information;

[0042] Publish a 3D service unit for sharing and accessing 3D data models in the form of services.

[0043] The BIM data model is connected to the data processing and optimization unit, the data processing and optimization unit is connected to the GIS platform, and the GIS platform is connected to the three-dimensional service publishing unit.

[0044] The construction quality module includes the acceptance initiation unit, acceptance material submission unit, acceptance unit, BIM component information update unit and schedule node task progress update unit;

[0045] Initiate acceptance unit to select projects that need acceptance;

[0046] Submit acceptance material unit, which is used to submit basic data for acceptance of the project;

[0047] Acceptance unit, used to review the submitted acceptance application;

[0048] The BIM component information update unit is used to update the end date of the current acceptance project. At the same time, the BIM component module bound to the acceptance project is also marked as completed;

[0049] The progress plan node task progress update unit is used to record the end time of the BIM component module and update the completed progress of the task node.

[0050] The acceptance initiation unit is connected to the acceptance material submission unit, the acceptance material submission unit is connected to the acceptance unit, the acceptance unit is connected to the BIM component information update unit, the BIM component information update unit is connected to the schedule node task progress update unit, the BIM component information update unit is connected to the BIM component module, the schedule node task progress update unit is connected to the schedule node task module, and the BIM component module is connected to the acceptance initiation unit.

[0051] After completing the schedule and preparing the basic data for the quality unit, you can automatically track the task progress by initiating a quality acceptance. First, initiate the quality acceptance, select the quality unit to be accepted, enter the basic data, confirm that the current acceptance is the final inspection batch of the quality unit, and submit the acceptance application for review. Once the acceptance is passed, the acceptance date will become the end date of the current quality unit, and the components bound to the quality unit will also be marked as completed.

[0052] Since the components are also bound to the minimum task node in the schedule, multiple BIM components can be associated with the minimum task node, so it can be considered that multiple quality units are included under the minimum task node. After each construction unit passes the acceptance, the end time of the component will be recorded, and the completed progress of the task node will be updated at the same time. For example, if the node task is associated with 3 components and 1 is accepted, it will be displayed that the progress is 33% complete. When all components in the minimum task node are marked as completed, the task node automatically ends, and the end time is the end time of the last component, that is, the time when the quality unit bound to the last component passes the acceptance. After the minimum task node ends, the next task of the task node automatically starts unconditionally. The duration of the minimum task node is from the start time to the end time, and the start and end time of the upper-level task node is from the earliest start time to the latest end time of all nodes under the task node.

[0053] This calculation method is formed by combining the above conditions, thereby realizing automatic tracking of the progress of all construction task nodes in the schedule plan.

[0054] In summary, the BIM platform of the present invention has a very high information integration degree and a very powerful system. It can integrate all the progress information generated by the project and can continuously update and add information according to the progress of the project; BIM technology can be used to carry out project management, which can easily realize the collaborative cooperation between project participating units and professions, and problems arising in the project can also be communicated and solved in a timely manner; dynamic progress management technology based on component-level BIM is used to automatically track the progress of structural construction in the project, which can more accurately grasp the completion status of the actual progress, avoid errors caused by human factors, make progress tracking more accurate, no longer rely on manual records to reduce the burden on technical personnel, and make the basis for formulating progress correction measures and resource allocation plans more reasonable.

[0055] Those skilled in the art will appreciate that various combinations and / or combinations of features described in the various embodiments and / or claims of the present invention may be made, even if such combinations and / or combinations are not explicitly described in the present invention. In particular, various combinations and / or combinations of features described in the various embodiments and / or claims of the present invention may be made, without departing from the spirit and teachings of the present invention. All such combinations and / or combinations fall within the scope of the present invention.

Claims

1. A BIM-based progress-quality linkage application system, characterized by: It includes a BIM component module, a schedule node task module and a construction quality module, wherein the BIM component module is connected to the schedule node task module, and the BIM component module is connected to the construction quality module; The BIM component module is used to represent all engineering structural components; The progress plan node task module is used to record the construction progress of the component; The construction quality module is used for acceptance of project quality.

2. The BIM-based progress-quality linkage application system according to claim 1, characterized in that: The BIM component module includes a BIM data model, a data processing and optimization unit, a GIS platform, and a 3D service publishing unit; The BIM data model is used to display the appearance, structure and internal layout of the building project through three-dimensional visualization technology; The data processing and optimization unit is used for processing, analyzing and optimizing three-dimensional data; The GIS platform is used to achieve the integration of building information and geographic space information; The three-dimensional service publishing unit is used to share and access the three-dimensional data model in the form of a service.

3. The BIM-based progress-quality linkage application system according to claim 1, characterized in that: The BIM data model is connected to the data processing and optimization unit, the data processing and optimization unit is connected to the GIS platform, and the GIS platform is connected to the three-dimensional service publishing unit.

4. The BIM-based progress-quality linkage application system according to claim 1, characterized in that: The construction quality module includes an acceptance initiation unit, an acceptance material submission unit, an acceptance unit, a BIM component information update unit, and a schedule node task progress update unit; The acceptance initiating unit is used to select the project that needs acceptance; The acceptance material submission unit is used to submit basic data for acceptance of the project; The acceptance unit is used to review the submitted acceptance application; The BIM component information updating unit is used to update the end date of the current acceptance project, and the BIM component module bound to the acceptance project is also marked as completed; The progress plan node task progress updating unit is used to record the end time of the BIM component module and update the completed progress of the task node.

5. The BIM-based progress-quality linkage application system according to claim 1, characterized in that: The acceptance initiation unit is connected to the acceptance material submission unit, the acceptance material submission unit is connected to the acceptance unit, the acceptance unit is connected to the BIM component information update unit, and the BIM component information update unit is connected to the schedule node task progress update unit.

6. The BIM-based progress-quality linkage application system according to claim 1, characterized in that: The BIM component information updating unit is connected to the BIM component module.

7. The BIM-based progress-quality linkage application system according to claim 1, characterized in that: The schedule node task progress updating unit is connected to the schedule node task module.

8. The BIM-based progress-quality linkage application system according to claim 1, characterized in that: The BIM component module is connected to the acceptance initiation unit.

Citation Information

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