A BIM-based intelligent management system for fabricated building components
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- TAIZHOU ZHUCHUANG CONSTRUCTION TECHNOLOGY CO LTD
- Filing Date
- 2024-03-01
- Publication Date
- 2026-08-04
AI Technical Summary
[0003]目前基于BIM的装配式建筑构件智能管理系统往往建筑信息模型是以建筑工程项目的各项相关信息数据作为模型的基础,进行建筑模型的建立,通过数字信息仿真模拟建筑物所具有的真实信息,其应用范围较广,而且在使用的时候存在数据差,不能实时针对构件信息进行实时查看和更新,而且现有的BIM系统在针对构件使用的时候往往存在对构件的制造和质量进行实时监控使用,降低建筑行业实现装配式建筑的管理和优化效率,对此有必要提出一种基于BIM的装配式建筑构件智能管理系统
本发明所述的一种基于BIM的装配式建筑构件智能管理系统,通过设置构件信息管理模块、构件库管理模块、构建设计和协作模块、构建制造和供应链管理模块、构件安装和维护模块和数据分析和优化模块相互配合,可以有效针对构件信息进行实时监控和维护,增加构件的制作和质量,基于BIM的装配式建筑构件智能管理系统可以帮助建筑行业实现装配式建筑的高效管理和优化,提高建筑项目的质量、安全性和可持续性。
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Figure CN122509733A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of BIM building engineering applications, specifically to a BIM-based intelligent management system for prefabricated building components. Background Technology
[0002] Building Information Modeling (BIM), also known as Building Information Simulation, is an information model of a building or building project composed of sufficient information to support new product development and management, and can be directly interpreted by computer applications. It represents the lifecycle management of the built environment supported by digital technology. It is a new tool for architecture, engineering, and civil engineering, and BIM also provides an intelligent component management system for prefabricated buildings.
[0003] Currently, BIM-based intelligent management systems for prefabricated building components often use the building information model as the basis for building project information data to build the building model. This involves simulating the real information of the building through digital information. While its application is wide-ranging, it suffers from data discrepancies and cannot provide real-time viewing and updates of component information. Furthermore, existing BIM systems often lack real-time monitoring of component manufacturing and quality, reducing the efficiency of management and optimization in the construction industry for prefabricated buildings. Therefore, it is necessary to propose a BIM-based intelligent management system for prefabricated building components. Summary of the Invention
[0004] To address the problems in existing technologies, this invention provides a BIM-based intelligent management system for prefabricated building components.
[0005] The technical solution adopted by this invention to solve its technical problem is: a BIM-based intelligent management system for prefabricated building components, including a central control module. The central control module internally includes a component information management module, a component library management module, a construction design and collaboration module, a construction manufacturing and supply chain management module, a component installation and maintenance module, and a data analysis and optimization module. The component information management module, component library management module, construction design and collaboration module, construction manufacturing and supply chain management module, component installation and maintenance module, and data analysis and optimization module are interconnected and controlled through a network.
[0006] The component information management module can create and manage information about prefabricated building components through internal components, including the component's geometry, material, size, performance, etc., and through the BIM model, it can view detailed information about the components in real time and edit and update the information.
[0007] The component library management module can establish a component library to store and manage information and models of various prefabricated building components. Users can select suitable components from the component library and combine and optimize them.
[0008] The component design and collaboration module can use BIM tools to design and collaborate on components. Designers can create and edit components in the BIM model, perform collision detection and conflict resolution, and ensure the accuracy and consistency of components.
[0009] The component manufacturing and supply chain management module can track and manage the component manufacturing process and collaborate with suppliers. The system can also record information such as component manufacturing progress and quality inspection results to ensure that components are delivered on time and meet quality standards.
[0010] The component installation and maintenance module can coordinate and manage the transportation, installation, and maintenance of components. The system can generate construction plans, installation instructions, and maintenance manuals, and provide real-time construction progress and quality monitoring.
[0011] The data analysis and optimization module allows the system to analyze and optimize component data, providing decision support. It can analyze component performance and cost, optimize component design and selection, and improve building efficiency and sustainability.
[0012] A method for using a BIM-based intelligent management system for prefabricated building components includes the following steps: Step 1: When operating the intelligent management system for BIM-based prefabricated building components, first start the specification module through the system, then start each module through the main control module to use them accordingly. At the same time, the component information management module creates and manages prefabricated building components within the system itself, down to details such as the component's geometry, material, size, and performance. Through the component BIM model, detailed information about the component can be viewed in real time, and information can be edited and updated, thus effectively maintaining and using the component information. Simultaneously, the component library management module establishes a component library to store and manage information and models of various prefabricated building components. Users can select suitable components from the component library for the model they need, and combine and optimize them to achieve optimal use. The second step involves using BIM tools through the component design and collaboration modules for component design and collaboration. Designers working with the system can create and edit components in the BIM model, perform clash detection and conflict resolution to avoid errors in the construction data, and ensure the accuracy and consistency of the components. Furthermore, the component manufacturing and supply chain management modules allow for tracking and management of the component manufacturing process during use, enabling real-time use and collaboration with suppliers. The system can also record information such as component manufacturing progress and quality inspection results to ensure timely delivery of components that meet quality standards and increase overall efficiency. The third step: Moreover, the component installation and maintenance module can coordinate and manage the transportation, installation and maintenance process of components, increase the overall efficiency of component installation and maintenance, increase the efficiency of use, and generate construction plans, installation instructions and maintenance manuals through the system, providing real-time construction progress and quality monitoring. Step 4: Finally, the system in the data analysis and optimization module can analyze and optimize component data, provide decision support during data manipulation, simultaneously analyze the overall performance and cost of components, optimize component design and selection, improve building efficiency and sustainability, and thus provide overall data support for the BIM-based intelligent management system for prefabricated building components, increasing usage efficiency.
[0013] The beneficial effects of this invention are: The present invention discloses a BIM-based intelligent management system for prefabricated building components. By setting up a component information management module, a component library management module, a construction design and collaboration module, a construction manufacturing and supply chain management module, a component installation and maintenance module, and a data analysis and optimization module, the system can effectively monitor and maintain component information in real time, improve component production and quality, and help the construction industry achieve efficient management and optimization of prefabricated buildings, thereby improving the quality, safety and sustainability of construction projects. Attached Figure Description
[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0015] Figure 1 This invention provides a schematic diagram of the overall process structure of an intelligent management system for prefabricated building components based on BIM. Detailed Implementation
[0016] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.
[0017] like Figure 1-Figure 1As shown, the present invention discloses a BIM-based intelligent management system for prefabricated building components, comprising a central control module. The central control module internally includes a component information management module, a component library management module, a construction design and collaboration module, a construction manufacturing and supply chain management module, a component installation and maintenance module, and a data analysis and optimization module. These modules interact via a network for installation and control. The component information management module can create and manage information about prefabricated building components, including their geometry, materials, dimensions, and performance. Furthermore, through the BIM model, detailed information about the components can be viewed in real time, and information can be edited and updated.
[0018] The component library management module can establish a component library to store and manage information and models of various prefabricated building components. Users can select suitable components from the component library and combine and optimize them. The component design and collaboration module can use BIM tools to design and collaborate on components. Designers can create and edit components in the BIM model, perform collision detection and conflict resolution, and ensure the accuracy and consistency of components.
[0019] The component manufacturing and supply chain management module can track and manage the component manufacturing process and collaborate with suppliers. The system can record information such as component manufacturing progress and quality inspection results to ensure timely delivery and compliance with quality standards. The component installation and maintenance module can coordinate and manage the transportation, installation, and maintenance processes of components. The system can generate construction plans, installation guidelines, and maintenance manuals, and provide real-time construction progress and quality monitoring. The data analysis and optimization module can analyze and optimize component data, providing decision support. It can analyze component performance and cost, optimize component design and selection, and improve building efficiency and sustainability.
[0020] A method for using a BIM-based intelligent management system for prefabricated building components includes the following steps: Step 1: When operating the intelligent management system for BIM-based prefabricated building components, first start the specification module through the system, then start each module through the main control module to use them accordingly. At the same time, the component information management module creates and manages prefabricated building components within the system itself, down to details such as the component's geometry, material, size, and performance. Through the component BIM model, detailed information about the component can be viewed in real time, and information can be edited and updated, thus effectively maintaining and using the component information. Simultaneously, the component library management module establishes a component library to store and manage information and models of various prefabricated building components. Users can select suitable components from the component library for the model they need, and combine and optimize them to achieve optimal use. The second step involves using BIM tools through the component design and collaboration modules for component design and collaboration. Designers working with the system can create and edit components in the BIM model, perform clash detection and conflict resolution to avoid errors in the construction data, and ensure the accuracy and consistency of the components. Furthermore, the component manufacturing and supply chain management modules allow for tracking and management of the component manufacturing process during use, enabling real-time use and collaboration with suppliers. The system can also record information such as component manufacturing progress and quality inspection results to ensure timely delivery of components that meet quality standards and increase overall efficiency. The third step: Moreover, the component installation and maintenance module can coordinate and manage the transportation, installation and maintenance process of components, increase the overall efficiency of component installation and maintenance, increase the efficiency of use, and generate construction plans, installation instructions and maintenance manuals through the system, providing real-time construction progress and quality monitoring. Step 4: Finally, the system in the data analysis and optimization module can analyze and optimize component data, provide decision support during data manipulation, simultaneously analyze the overall performance and cost of components, optimize component design and selection, improve building efficiency and sustainability, and thus provide overall data support for the BIM-based intelligent management system for prefabricated building components, increasing usage efficiency.
[0021] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by the present invention. The scope of protection of the present invention is defined by the appended claims and their equivalents.
Claims
1. A BIM-based intelligent management system for prefabricated building components, characterized in that, It includes a central control module, which internally includes a component information management module, a component library management module, a construction design and collaboration module, a construction manufacturing and supply chain management module, a component installation and maintenance module, and a data analysis and optimization module. The component information management module, component library management module, construction design and collaboration module, construction manufacturing and supply chain management module, component installation and maintenance module, and data analysis and optimization module are interconnected and controlled via a network.
2. The intelligent management system for prefabricated building components based on BIM according to claim 1, characterized in that: The component information management module can create and manage information about prefabricated building components through internal components, including the component's geometry, material, size, performance, etc., and through the BIM model, it can view detailed information about the components in real time and edit and update the information.
3. The intelligent management system for prefabricated building components based on BIM according to claim 1, characterized in that: The component library management module can establish a component library to store and manage information and models of various prefabricated building components. Users can select suitable components from the component library and combine and optimize them.
4. The intelligent management system for prefabricated building components based on BIM according to claim 1, characterized in that: The component design and collaboration module can use BIM tools to design and collaborate on components. Designers can create and edit components in the BIM model, perform collision detection and conflict resolution, and ensure the accuracy and consistency of components.
5. The intelligent management system for prefabricated building components based on BIM according to claim 1, characterized in that: The component manufacturing and supply chain management module can track and manage the component manufacturing process and collaborate with suppliers. The system can also record information such as component manufacturing progress and quality inspection results to ensure that components are delivered on time and meet quality standards.
6. The intelligent management system for prefabricated building components based on BIM according to claim 1, characterized in that: The component installation and maintenance module can coordinate and manage the transportation, installation, and maintenance of components. The system can generate construction plans, installation instructions, and maintenance manuals, and provide real-time construction progress and quality monitoring.
7. The intelligent management system for prefabricated building components based on BIM according to claim 1, characterized in that: The data analysis and optimization module allows the system to analyze and optimize component data, providing decision support. It can analyze component performance and cost, optimize component design and selection, and improve building efficiency and sustainability.
8. A method of using a BIM-based intelligent management system for prefabricated building components as described in any one of claims 1-7, characterized in that: Includes the following steps: Step 1: When operating the intelligent management system for BIM-based prefabricated building components, first start the specification module through the system, then start each module through the main control module to use them accordingly. At the same time, the component information management module creates and manages prefabricated building components within the system itself, down to details such as the component's geometry, material, size, and performance. Through the component BIM model, detailed information about the component can be viewed in real time, and information can be edited and updated, thus effectively maintaining and using the component information. Simultaneously, the component library management module establishes a component library to store and manage information and models of various prefabricated building components. Users can select suitable components from the component library for the model they need, and combine and optimize them to achieve optimal use. The second step involves using BIM tools through the component design and collaboration modules for component design and collaboration. Designers working with the system can create and edit components in the BIM model, perform clash detection and conflict resolution to avoid errors in the construction data, and ensure the accuracy and consistency of the components. Furthermore, the component manufacturing and supply chain management modules allow for tracking and management of the component manufacturing process during use, enabling real-time use and collaboration with suppliers. The system can also record information such as component manufacturing progress and quality inspection results to ensure timely delivery of components that meet quality standards and increase overall efficiency. The third step: Moreover, the component installation and maintenance module can coordinate and manage the transportation, installation and maintenance process of components, increase the overall efficiency of component installation and maintenance, increase the efficiency of use, and generate construction plans, installation instructions and maintenance manuals through the system, providing real-time construction progress and quality monitoring. Step 4: Finally, the system in the data analysis and optimization module can analyze and optimize component data, provide decision support during data manipulation, simultaneously analyze the overall performance and cost of components, optimize component design and selection, improve building efficiency and sustainability, and thus provide overall data support for the BIM-based intelligent management system for prefabricated building components, increasing usage efficiency.