Fabricated building intelligent construction method and system based on BIM and readable storage medium
The green and low-carbon design of prefabricated construction projects is carried out through the BIM model and the construction management is carried out in combination with BIM+ technology. The problem of difficulty in improving the construction efficiency and quality of prefabricated construction projects in the existing technology is solved, and green and low-carbon design and refined construction management is realized.
Patent Information
- Application Number
- CN202510041309.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2025-05-16
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
It is difficult for the prior art to achieve green and low-carbon design and refined construction management in prefabricated construction projects, resulting in difficulty in improving construction efficiency and quality.
Green and low-carbon design is carried out through BIM models during the design stage of the construction project, and construction management is carried out using BIM+ technology (including BIM+3D scanning/printing technology and BIM+ drone technology) during the construction process.
The green and low-carbon design and refined construction management of construction projects have been realized, and the construction efficiency and quality have been improved.
Smart Images

Figure CN120012223A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of smart construction technology, and more specifically, to a BIM-based prefabricated building smart construction method, system and readable storage medium. Background Art
[0002] Prefabricated buildings are buildings assembled on site using prefabricated components. Due to their high degree of industrialization, they can effectively save resources and energy, reduce construction pollution, improve labor productivity and quality and safety levels, and meet green building requirements.
[0003] BIM, also known as Building Information Modeling, is the foundation of digital transformation in the architecture, engineering and construction industries. Therefore, in the application scenario of prefabricated buildings, a building model will be constructed before the construction of the building, and then the workers will carry out construction according to the building model. Before the construction of the building, it is necessary to build a construction frame with the help of steel bars. The steel bars can be connected with the help of threaded sleeve components. Therefore, in the design and construction stage, the BIM model is used to improve the collaborative design and construction of architecture, structure and various professional information, which has important application significance for the prefabricated building construction method based on the BIM model. Summary of the invention
[0004] The purpose of the present invention is to provide a BIM-based prefabricated building intelligent construction method, system and readable storage medium, so as to realize green and low-carbon design in the design stage of the construction project by means of the BIM model, and realize the refined management of the construction during the construction process of the construction project, thereby improving the construction efficiency and quality.
[0005] The first aspect of the present invention provides a method for intelligent construction of prefabricated buildings based on BIM, comprising the following steps:
[0006] Obtain BIM models and planning data for prefabricated building projects;
[0007] Using the BIM model in combination with the planning data of the prefabricated building project to perform data analysis to obtain design data, wherein the analysis process at least includes building earthquake resistance, energy consumption and comfort analysis;
[0008] Based on the design data, a BIM model is used for construction simulation, and during the actual construction process, BIM+ technology is used for construction management, wherein BIM+ technology at least includes BIM+3D scanning / printing technology and BIM+drone technology.
[0009] In this solution, the acquisition of BIM model and planning data of prefabricated building projects specifically includes:
[0010] Obtaining the prefabricated building project;
[0011] Responding to the corresponding BIM model in the database based on the prefabricated building project;
[0012] Planning parameters are extracted based on the prefabricated building project to obtain the planning data, wherein the planning data at least includes building earthquake resistance planning, energy consumption planning and comfort planning.
[0013] In this solution, the BIM model is used in combination with the planning data of the prefabricated building project to perform data analysis to obtain design data, specifically including:
[0014] Based on BIM, the design and analysis of the current prefabricated building project is carried out, including:
[0015] Based on the building seismic planning analysis, the building seismic grade is determined, the building seismic structure distribution and the building seismic material selection are obtained;
[0016] Based on the energy consumption planning analysis, energy consumption level, cost material selection and project staff ratio are obtained;
[0017] Based on the comfort planning analysis, the green level of the project and the simulated comfort of the building environment are obtained.
[0018] In this solution, construction simulation is performed using a BIM model based on the design data, specifically including:
[0019] Obtaining construction simulation parameters based on the design data;
[0020] The BIM model is combined with the construction simulation parameters to perform construction simulation on the current prefabricated building project, wherein the simulation process also includes synchronous simulation of other parameters.
[0021] In this solution, BIM+3D scanning / printing technology is used for construction management during the actual construction process, including:
[0022] In the actual construction process, the construction data is obtained and the BIM model is used to perform construction simulation updates;
[0023] In the BIM model construction simulation process, 3D scanning technology is used to scan the constructed project and verify it in combination with the construction data;
[0024] During the BIM model construction simulation process, 3D printing technology is used to print building materials for unbuilt projects.
[0025] In this solution, BIM+UAV technology is used for construction management during the actual construction process, including:
[0026] In the actual construction process, the construction data is obtained and the BIM model is used to perform construction simulation updates;
[0027] During the BIM model construction simulation process, drone technology is used to scan the constructed project and verify it in combination with the construction data.
[0028] The second aspect of the present invention further provides a BIM-based prefabricated building intelligent construction system, comprising a memory and a processor, wherein the memory comprises a BIM-based prefabricated building intelligent construction method program, and when the BIM-based prefabricated building intelligent construction method program is executed by the processor, the following steps are implemented:
[0029] Obtain BIM models and planning data for prefabricated building projects;
[0030] Using the BIM model in combination with the planning data of the prefabricated building project to perform data analysis to obtain design data, wherein the analysis process at least includes building earthquake resistance, energy consumption and comfort analysis;
[0031] Based on the design data, a BIM model is used for construction simulation, and during the actual construction process, BIM+ technology is used for construction management, wherein BIM+ technology at least includes BIM+3D scanning / printing technology and BIM+drone technology.
[0032] In this solution, the acquisition of BIM model and planning data of prefabricated building projects specifically includes:
[0033] Obtaining the prefabricated building project;
[0034] Responding to the corresponding BIM model in the database based on the prefabricated building project;
[0035] Planning parameters are extracted based on the prefabricated building project to obtain the planning data, wherein the planning data at least includes building earthquake resistance planning, energy consumption planning and comfort planning.
[0036] In this solution, the BIM model is used in combination with the planning data of the prefabricated building project to perform data analysis to obtain design data, specifically including:
[0037] Based on BIM, the design and analysis of the current prefabricated building project is carried out, including:
[0038] Based on the building seismic planning analysis, the building seismic grade is determined, the building seismic structure distribution and the building seismic material selection are obtained;
[0039] Based on the energy consumption planning analysis, energy consumption level, cost material selection and project staff ratio are obtained;
[0040] Based on the comfort planning analysis, the green level of the project and the simulated comfort of the building environment are obtained.
[0041] In this solution, construction simulation is performed using a BIM model based on the design data, specifically including:
[0042] Obtaining construction simulation parameters based on the design data;
[0043] The BIM model is combined with the construction simulation parameters to perform construction simulation on the current prefabricated building project, wherein the simulation process also includes synchronous simulation of other parameters.
[0044] In this solution, BIM+3D scanning / printing technology is used for construction management during the actual construction process, including:
[0045] In the actual construction process, the construction data is obtained and the BIM model is used to perform construction simulation updates;
[0046] In the BIM model construction simulation process, 3D scanning technology is used to scan the constructed project and verify it in combination with the construction data;
[0047] During the BIM model construction simulation process, 3D printing technology is used to print building materials for unbuilt projects.
[0048] In this solution, BIM+UAV technology is used for construction management during the actual construction process, including:
[0049] In the actual construction process, the construction data is obtained and the BIM model is used to perform construction simulation updates;
[0050] During the BIM model construction simulation process, drone technology is used to scan the constructed project and verify it in combination with the construction data.
[0051] The third aspect of the present invention provides a computer-readable storage medium, which includes a machine-based BIM-based prefabricated building intelligent construction method program. When the BIM-based prefabricated building intelligent construction method program is executed by a processor, the steps of the BIM-based prefabricated building intelligent construction method as described in any one of the above items are implemented.
[0052] The present invention discloses a BIM-based intelligent construction method, system and readable storage medium for prefabricated buildings, which realize green and low-carbon design in the design stage of a building project through the use of a BIM model, and realizes refined management of construction during the construction process of the building project, thereby improving construction efficiency and quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0053] Figure 1 A flowchart of a BIM-based intelligent construction method for assembled buildings is shown in the present invention;
[0054] Figure 2 A block diagram of a BIM-based prefabricated building intelligent construction system of the present invention is shown. DETAILED DESCRIPTION
[0055] In order to more clearly understand the above-mentioned purpose, features and advantages of the present invention, the present invention is further described in detail below in conjunction with the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.
[0056] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the protection scope of the present invention is not limited to the specific embodiments disclosed below.
[0057] Figure 1 A flow chart of a BIM-based intelligent construction method for prefabricated buildings in the present application is shown.
[0058] like Figure 1 As shown, the present application discloses a method for intelligent construction of prefabricated buildings based on BIM, comprising the following steps:
[0059] S102, obtaining a BIM model and planning data of a prefabricated building project;
[0060] S104, using the BIM model in combination with the planning data of the prefabricated building project to perform data analysis to obtain design data, wherein the analysis process at least includes building earthquake resistance, energy consumption and comfort analysis;
[0061] S106, performing construction simulation using a BIM model based on the design data, and performing construction management using BIM+ technology during the actual construction process, wherein the BIM+ technology includes at least BIM+3D scanning / printing technology and BIM+UAV technology.
[0062] It should be noted that, in this embodiment, BIM technology is used to achieve green design and intelligent construction of prefabricated buildings. In the design stage, the BIM model is used to analyze the building's earthquake resistance, energy consumption, comfort, etc. to achieve green design. In the construction process, the BIM model is used to perform collision detection, in-depth design, construction progress simulation, supervision and control, and the introduction of "BIM+" technology, such as 3D scanning / printing, drone monitoring, etc., to achieve refined management of construction. At the same time, the collaborative platform built through the BIM model can realize information exchange between various stages of the project and the construction parties, thereby improving construction efficiency and quality.
[0063] Specifically, first obtain the BIM model and the planning data of the prefabricated building project, wherein the BIM model can be used in combination with the planning data of the prefabricated building project to perform data analysis to obtain the corresponding design data in the design stage. Accordingly, the process of analyzing the planning data at least includes building earthquake resistance, energy consumption and comfort analysis. After the analysis in the design stage, construction simulation can be performed based on the design data obtained in the design stage. Specifically, the BIM model can be used for construction simulation, so that BIM+ technology can be used for construction management in the actual construction process. As described in the above embodiment, the BIM+ technology used in this embodiment at least includes BIM+3D scanning / printing technology and BIM+ drone technology. The specific application process can be found in the subsequent instructions.
[0064] According to an embodiment of the present invention, obtaining the BIM model and planning data of the prefabricated building project specifically includes:
[0065] Obtaining the prefabricated building project;
[0066] Responding to the corresponding BIM model in the database based on the prefabricated building project;
[0067] Planning parameters are extracted based on the prefabricated building project to obtain the planning data, wherein the planning data at least includes building earthquake resistance planning, energy consumption planning and comfort planning.
[0068] It should be noted that, in this embodiment, the obtained BIM model is matched specifically according to different construction projects. Therefore, the prefabricated building project is first obtained, so that the corresponding BIM model can be responded to in the database based on the prefabricated building project. At the same time, planning parameters can be extracted based on the prefabricated building project to obtain the planning data, wherein the prefabricated building project report will involve a variety of planning parameters. Accordingly, the extracted planning data at least includes building seismic planning, energy consumption planning and comfort planning.
[0069] According to an embodiment of the present invention, the use of the BIM model in combination with the planning data of the prefabricated building project to perform data analysis to obtain design data specifically includes:
[0070] Based on BIM, the design and analysis of the current prefabricated building project is carried out, including:
[0071] Based on the building seismic planning analysis, the building seismic grade is determined, the building seismic structure distribution and the building seismic material selection are obtained;
[0072] Based on the energy consumption planning analysis, energy consumption level, cost material selection and project staff ratio are obtained;
[0073] Based on the comfort planning analysis, the green level of the project and the simulated comfort of the building environment are obtained.
[0074] It should be noted that, in this embodiment, after obtaining the BIM model and the planning data corresponding to the prefabricated building project, the project design section corresponding to the current building project is entered. Therefore, data analysis can be performed using the BIM model to obtain design data. Specifically, the current prefabricated building project can be designed and analyzed based on BIM. In this embodiment, the design analysis content includes building seismic planning and design, energy consumption planning and design, and comfort planning and design. For example, when conducting building seismic planning and design, the building seismic level is determined, the building seismic structure distribution and the building seismic material selection are obtained based on the building seismic planning analysis; when conducting energy consumption planning and design, the energy consumption level, cost material selection and project number ratio are obtained based on the energy consumption planning analysis; and when conducting comfort planning and design, the project green level and building environment simulation comfort are obtained based on the comfort planning analysis.
[0075] According to an embodiment of the present invention, construction simulation is performed using a BIM model based on the design data, specifically including:
[0076] Obtaining construction simulation parameters based on the design data;
[0077] The BIM model is combined with the construction simulation parameters to perform construction simulation on the current prefabricated building project, wherein the simulation process also includes synchronous simulation of other parameters.
[0078] It should be noted that in this embodiment, the BIM model also needs to be used when conducting construction simulation, wherein the construction simulation parameters are first obtained based on the design data, and then the BIM model is used in combination with the construction simulation parameters to perform construction simulation on the current prefabricated building project, wherein the simulation process also includes synchronous simulation of other parameters.
[0079] According to an embodiment of the present invention, in the actual construction process, BIM+3D scanning / printing technology is used to perform construction management, specifically including:
[0080] In the actual construction process, the construction data is obtained and the BIM model is used to perform construction simulation updates;
[0081] In the BIM model construction simulation process, 3D scanning technology is used to scan the constructed project and verify it in combination with the construction data;
[0082] During the BIM model construction simulation process, 3D printing technology is used to print building materials for unbuilt projects.
[0083] It should be noted that, in this embodiment, the BIM+3D scanning / printing technology in construction management using BIM+ technology in the process of project construction is specifically explained. Specifically, in the BIM model construction simulation process, 3D scanning technology is used to scan the constructed project and verify it in combination with the construction data, and 3D printing technology is used to print building materials for the unbuilt project. Since in the construction process, it is necessary to collect data from the construction process in real time to update and verify the BIM model, 3D scanning technology can be used to improve the data. Accordingly, in the construction process, 3D printing technology can be used to output the printing of building materials for the unbuilt prefabricated project according to different construction processes.
[0084] According to an embodiment of the present invention, the BIM+UAV technology is used to perform construction management in the actual construction process, specifically including:
[0085] In the actual construction process, the construction data is obtained and the BIM model is used to perform construction simulation updates;
[0086] During the BIM model construction simulation process, drone technology is used to scan the constructed project and verify it in combination with the construction data.
[0087] It should be noted that, in this embodiment, similarly, during the construction process, the BIM model can be used to link data with drones. Specifically, during the BIM model construction simulation process, drone technology is used to scan the constructed project, which is then verified in combination with the construction data. During the scanning, the data obtained through real-time scanning by the drone is interacted with the BIM model for verification, thereby updating the BIM model.
[0088] Figure 2 A block diagram of a BIM-based prefabricated building intelligent construction system of the present invention is shown.
[0089] like Figure 2 As shown, the present invention discloses a BIM-based prefabricated building intelligent construction system, including a memory and a processor, wherein the memory includes a BIM-based prefabricated building intelligent construction method program, and when the BIM-based prefabricated building intelligent construction method program is executed by the processor, the following steps are implemented:
[0090] Obtain BIM models and planning data for prefabricated building projects;
[0091] Using the BIM model in combination with the planning data of the prefabricated building project to perform data analysis to obtain design data, wherein the analysis process at least includes building earthquake resistance, energy consumption and comfort analysis;
[0092] Based on the design data, the BIM model is used for construction simulation, and during the actual construction process, BIM+ technology is used for construction management, wherein the BIM+ technology at least includes BIM+3D scanning / printing technology and BIM+drone technology.
[0093] It should be noted that, in this embodiment, BIM technology is used to achieve green design and intelligent construction of prefabricated buildings. In the design stage, the BIM model is used to analyze the building's earthquake resistance, energy consumption, comfort, etc. to achieve green design. In the construction process, the BIM model is used to perform collision detection, in-depth design, construction progress simulation, supervision and control, and the introduction of "BIM+" technology, such as 3D scanning / printing, drone monitoring, etc., to achieve refined management of construction. At the same time, the collaborative platform built through the BIM model can realize information exchange between various stages of the project and the construction parties, thereby improving construction efficiency and quality.
[0094] Specifically, first obtain the BIM model and the planning data of the prefabricated building project, wherein the BIM model can be used in combination with the planning data of the prefabricated building project to perform data analysis to obtain the corresponding design data in the design stage. Accordingly, the process of analyzing the planning data at least includes building earthquake resistance, energy consumption and comfort analysis. After the analysis in the design stage, construction simulation can be performed based on the design data obtained in the design stage. Specifically, the BIM model can be used for construction simulation, so that BIM+ technology can be used for construction management in the actual construction process. As described in the above embodiment, the BIM+ technology used in this embodiment at least includes BIM+3D scanning / printing technology and BIM+ drone technology. The specific application process can be found in the subsequent instructions.
[0095] According to an embodiment of the present invention, obtaining the BIM model and planning data of the prefabricated building project specifically includes:
[0096] Obtaining the prefabricated building project;
[0097] Responding to the corresponding BIM model in the database based on the prefabricated building project;
[0098] Planning parameters are extracted based on the prefabricated building project to obtain the planning data, wherein the planning data at least includes building earthquake resistance planning, energy consumption planning and comfort planning.
[0099] It should be noted that, in this embodiment, the obtained BIM model is matched specifically according to different construction projects. Therefore, the prefabricated building project is first obtained, so that the corresponding BIM model can be responded to in the database based on the prefabricated building project. At the same time, planning parameters can be extracted based on the prefabricated building project to obtain the planning data, wherein the prefabricated building project report will involve a variety of planning parameters. Accordingly, the extracted planning data at least includes building seismic planning, energy consumption planning and comfort planning.
[0100] According to an embodiment of the present invention, the use of the BIM model in combination with the planning data of the prefabricated building project to perform data analysis to obtain design data specifically includes:
[0101] Based on BIM, the design and analysis of the current prefabricated building project is carried out, including:
[0102] Based on the building seismic planning analysis, the building seismic grade is determined, the building seismic structure distribution and the building seismic material selection are obtained;
[0103] Based on the energy consumption planning analysis, energy consumption level, cost material selection and project staff ratio are obtained;
[0104] Based on the comfort planning analysis, the green level of the project and the simulated comfort of the building environment are obtained.
[0105] It should be noted that, in this embodiment, after obtaining the BIM model and the planning data corresponding to the prefabricated building project, the project design section corresponding to the current building project is entered. Therefore, data analysis can be performed using the BIM model to obtain design data. Specifically, the current prefabricated building project can be designed and analyzed based on BIM. In this embodiment, the design analysis content includes building seismic planning and design, energy consumption planning and design, and comfort planning and design. For example, when conducting building seismic planning and design, the building seismic level is determined, the building seismic structure distribution and the building seismic material selection are obtained based on the building seismic planning analysis; when conducting energy consumption planning and design, the energy consumption level, cost material selection and project number ratio are obtained based on the energy consumption planning analysis; and when conducting comfort planning and design, the project green level and building environment simulation comfort are obtained based on the comfort planning analysis.
[0106] According to an embodiment of the present invention, construction simulation is performed using a BIM model based on the design data, specifically including:
[0107] Obtaining construction simulation parameters based on the design data;
[0108] The BIM model is combined with the construction simulation parameters to perform construction simulation on the current prefabricated building project, wherein the simulation process also includes synchronous simulation of other parameters.
[0109] It should be noted that in this embodiment, the BIM model also needs to be used when conducting construction simulation, wherein the construction simulation parameters are first obtained based on the design data, and then the BIM model is used in combination with the construction simulation parameters to perform construction simulation on the current prefabricated building project, wherein the simulation process also includes synchronous simulation of other parameters.
[0110] According to an embodiment of the present invention, in the actual construction process, BIM+3D scanning / printing technology is used to perform construction management, specifically including:
[0111] In the actual construction process, the construction data is obtained and the BIM model is used to perform construction simulation updates;
[0112] In the BIM model construction simulation process, 3D scanning technology is used to scan the constructed project and verify it in combination with the construction data;
[0113] During the BIM model construction simulation process, 3D printing technology is used to print building materials for unbuilt projects.
[0114] It should be noted that, in this embodiment, the BIM+3D scanning / printing technology in construction management using BIM+ technology in the process of project construction is specifically explained. Specifically, in the BIM model construction simulation process, 3D scanning technology is used to scan the constructed project and verify it in combination with the construction data, and 3D printing technology is used to print building materials for the unbuilt project. Since in the construction process, it is necessary to collect data from the construction process in real time to update and verify the BIM model, 3D scanning technology can be used to improve the data. Accordingly, in the construction process, 3D printing technology can be used to output the printing of building materials for the unbuilt prefabricated project according to different construction processes.
[0115] According to an embodiment of the present invention, the BIM+UAV technology is used to perform construction management in the actual construction process, specifically including:
[0116] In the actual construction process, the construction data is obtained and the BIM model is used to perform construction simulation updates;
[0117] During the BIM model construction simulation process, drone technology is used to scan the constructed project and verify it in combination with the construction data.
[0118] It should be noted that, in this embodiment, similarly, during the construction process, the BIM model can be used to link data with drones. Specifically, during the BIM model construction simulation process, drone technology is used to scan the constructed project, which is then verified in combination with the construction data. During the scanning, the data obtained through real-time scanning by the drone is interacted with the BIM model for verification, thereby updating the BIM model.
[0119] The third aspect of the present invention provides a computer-readable storage medium, which includes a BIM-based prefabricated building intelligent construction method program. When the BIM-based prefabricated building intelligent construction method program is executed by a processor, the steps of the BIM-based prefabricated building intelligent construction method as described in any one of the above items are implemented.
[0120] The present invention discloses a BIM-based intelligent construction method, system and readable storage medium for prefabricated buildings, which realize green and low-carbon design in the design stage of a building project through the use of a BIM model, and realizes refined management of construction during the construction process of the building project, thereby improving construction efficiency and quality.
[0121] In the several embodiments provided in the present application, it should be understood that the disclosed devices and methods can be implemented in other ways. The device embodiments described above are only schematic. For example, the division of the units is only a logical function division. There may be other division methods in actual implementation, such as: multiple units or components can be combined, or can be integrated into another system, or some features can be ignored or not executed. In addition, the coupling, direct coupling, or communication connection between the components shown or discussed can be through some interfaces, and the indirect coupling or communication connection of the devices or units can be electrical, mechanical or other forms.
[0122] The units described above as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units; they may be located in one place or distributed on multiple network units; some or all of the units may be selected according to actual needs to achieve the purpose of the present embodiment.
[0123] In addition, all functional units in the embodiments of the present invention may be integrated into one processing unit, or each unit may be separately used as a unit, or two or more units may be integrated into one unit; the above-mentioned integrated units may be implemented in the form of hardware or in the form of hardware plus software functional units.
[0124] A person of ordinary skill in the art can understand that: all or part of the steps of implementing the above method embodiments can be completed by hardware related to program instructions, and the aforementioned program can be stored in a computer-readable storage medium. When the program is executed, it executes the steps of the above method embodiments; and the aforementioned storage medium includes: mobile storage devices, read-only memories (ROM, Read-Only Memory), random access memories (RAM, Random Access Memory), magnetic disks or optical disks, and other media that can store program codes.
[0125] Alternatively, if the above-mentioned integrated unit of the present invention is implemented in the form of a software function module and sold or used as an independent product, it can also be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the embodiment of the present invention can be essentially or partly reflected in the form of a software product that contributes to the prior art. The computer software product is stored in a storage medium and includes several instructions for a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the methods described in each embodiment of the present invention. The aforementioned storage medium includes: various media that can store program codes, such as mobile storage devices, ROM, RAM, magnetic disks or optical disks.
Claims
1. A BIM-based intelligent construction method for prefabricated buildings, characterized in that: The following steps are involved: Obtain BIM models and planning data for prefabricated building projects; Using the BIM model in combination with the planning data of the prefabricated building project to perform data analysis to obtain design data, wherein the analysis process at least includes building earthquake resistance, energy consumption and comfort analysis; Based on the design data, a BIM model is used for construction simulation, and during the actual construction process, BIM+ technology is used for construction management, wherein BIM+ technology at least includes BIM+3D scanning / printing technology and BIM+drone technology.
2. According to the BIM-based intelligent construction method for prefabricated buildings according to claim 1, it is characterized in that: The obtaining of the BIM model and planning data of the prefabricated building project specifically includes: Obtaining the prefabricated building project; Responding to the corresponding BIM model in the database based on the prefabricated building project; Planning parameters are extracted based on the prefabricated building project to obtain the planning data, wherein the planning data at least includes building earthquake resistance planning, energy consumption planning and comfort planning.
3. The BIM-based intelligent construction method for prefabricated buildings according to claim 2 is characterized in that: The method of using the BIM model in combination with the planning data of the prefabricated building project to perform data analysis to obtain design data specifically includes: Based on BIM, the design and analysis of the current prefabricated building project is carried out, including: Based on the building seismic planning analysis, the building seismic grade is determined, the building seismic structure distribution and the building seismic material selection are obtained; Based on the energy consumption planning analysis, energy consumption level, cost material selection and project staff ratio are obtained; Based on the comfort planning analysis, the green level of the project and the simulated comfort of the building environment are obtained.
4. The BIM-based intelligent construction method for prefabricated buildings according to claim 3 is characterized in that: Based on the design data, construction simulation is performed using the BIM model, specifically including: Obtaining construction simulation parameters based on the design data; The BIM model is combined with the construction simulation parameters to perform construction simulation on the current prefabricated building project, wherein the simulation process also includes synchronous simulation of other parameters.
5. The BIM-based intelligent construction method for prefabricated buildings according to claim 4 is characterized in that: In the actual construction process, BIM+3D scanning / printing technology is used for construction management, including: In the actual construction process, the construction data is obtained and the BIM model is used to perform construction simulation updates; In the BIM model construction simulation process, 3D scanning technology is used to scan the constructed project and verify it in combination with the construction data; During the BIM model construction simulation process, 3D printing technology is used to print building materials for unbuilt projects.
6. The BIM-based intelligent construction method for prefabricated buildings according to claim 4 is characterized in that: In the actual construction process, BIM+UAV technology is used for construction management, including: In the actual construction process, the construction data is obtained and the BIM model is used to perform construction simulation updates; During the BIM model construction simulation process, drone technology is used to scan the constructed project and verify it in combination with the construction data.
7. A BIM-based prefabricated building intelligent construction system, characterized in that: The invention comprises a memory and a processor, wherein the memory comprises a BIM-based prefabricated building intelligent construction method program, and the BIM-based prefabricated building intelligent construction method program is executed by the processor to implement the following steps: Obtain BIM models and planning data for prefabricated building projects; Using the BIM model in combination with the planning data of the prefabricated building project to perform data analysis to obtain design data, wherein the analysis process at least includes building earthquake resistance, energy consumption and comfort analysis; Based on the design data, a BIM model is used for construction simulation, and during the actual construction process, BIM+ technology is used for construction management, wherein BIM+ technology at least includes BIM+3D scanning / printing technology and BIM+drone technology.
8. The BIM-based prefabricated building intelligent construction system according to claim 7 is characterized in that: The obtaining of the BIM model and planning data of the prefabricated building project specifically includes: Obtaining the prefabricated building project; Responding to the corresponding BIM model in the database based on the prefabricated building project; Planning parameters are extracted based on the prefabricated building project to obtain the planning data, wherein the planning data at least includes building earthquake resistance planning, energy consumption planning and comfort planning.
9. The BIM-based prefabricated building intelligent construction system according to claim 8 is characterized in that: The method of using the BIM model in combination with the planning data of the prefabricated building project to perform data analysis to obtain design data specifically includes: Based on BIM, the design and analysis of the current prefabricated building project is carried out, including: Based on the building seismic planning analysis, the building seismic grade is determined, the building seismic structure distribution and the building seismic material selection are obtained; Based on the energy consumption planning analysis, energy consumption level, cost material selection and project staff ratio are obtained; Based on the comfort planning analysis, the green level of the project and the simulated comfort of the building environment are obtained.
10. A computer-readable storage medium, characterized in that: The computer-readable storage medium includes a BIM-based prefabricated building intelligent construction method program. When the BIM-based prefabricated building intelligent construction method program is executed by a processor, the steps of the BIM-based prefabricated building intelligent construction method as described in any one of claims 1 to 6 are implemented.
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