Water plant pool wall construction simulation method, device and equipment and storage medium
By building a BIM model and adjusting the pipeline path, the problem of cumbersome acquisition of water plant pool wall construction drawings is solved, and efficient and reliable construction drawing generation is achieved.
Patent Information
- Application Number
- CN202510404578.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2025-08-12
AI Technical Summary
The process of obtaining construction drawings for existing water plant pool walls is cumbersome, resulting in low efficiency in obtaining construction drawings and susceptible to manual intervention.
By obtaining the structure, construction, process, deodorizing pipelines and scaffolding information of the water plant construction project, building a BIM model, conducting collision inspections, adjusting pipeline paths, and generating construction drawings.
It reduces the time to obtain construction drawings, improves the efficiency and reliability of acquisition of construction drawings, and avoids the impact of manual intervention.
Smart Images

Figure CN120470741A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of engineering construction, and in particular to a water plant pool wall construction simulation method, device, equipment and storage medium. Background Art
[0002] In recent years, China's urbanization has continued to accelerate, leading to significant improvements in urban living standards and a significant increase in water consumption for residential, industrial, and agricultural purposes. To meet this demand, more water plants are needed. The water plant sump wall is a key component of a water plant. Using construction drawings of the water plant sump wall allows the construction team to clearly understand its structural details, simulate real-world construction scenarios, and effectively anticipate potential problems and challenges during construction.
[0003] However, the existing process for obtaining construction drawings of water plant pool walls is cumbersome and not conducive to improving the efficiency of obtaining construction drawings. This is because the existing technology mainly uses manual acquisition to obtain construction drawings of water plant pool walls. Manual acquisition consumes a lot of human resources and time resources, increases the time required to obtain construction drawings of water plant pool walls, and is easily affected by manual intervention. Therefore, it is not conducive to improving the efficiency of obtaining construction drawings. Summary of the Invention
[0004] The present invention provides a water plant pool wall construction simulation method, device, computer equipment and storage medium to solve the technical problem that the existing water plant pool wall construction drawing acquisition process is cumbersome and is not conducive to improving the efficiency of obtaining construction drawings.
[0005] In a first aspect, a water plant pool wall construction simulation method is provided, comprising:
[0006] Obtain structural information, construction information, process information, deodorization pipeline information, and scaffolding information in water plant construction projects;
[0007] Processing the structural information to obtain a structural model, processing the building information to obtain a building model, processing the process information to obtain a process model, processing the deodorization pipeline information to obtain a deodorization pipeline model, processing the scaffolding information to obtain a scaffolding model;
[0008] Merge the structural model, building model, process model, deodorization pipeline model, and scaffolding model to obtain the BIM model corresponding to the water plant construction project;
[0009] Perform collision checks on the structural model, building model, process model, deodorization pipeline model, and scaffolding model in the BIM model to obtain collision points in the BIM model;
[0010] Obtain collision information corresponding to the collision point, obtain the pipeline that collides with the wall in the BIM model from the collision information, adjust the position or path of the pipeline to obtain a pipeline that bypasses the wall, replace the pipeline that collides with the wall with the pipeline that bypasses the wall, and select the BIM model using the pipeline that bypasses the wall as the modified BIM model;
[0011] In the modified BIM model, the plan view, cross-section view or elevation view of the water plant pool wall is obtained, the plan view, cross-section view or elevation view of the water plant pool wall is selected as the target view of the water plant pool wall, construction information is added to the target view, and the target view with the added construction information is selected as the construction view of the water plant pool wall.
[0012] Furthermore, the processing of the structural information to obtain the structural model, the processing of the building information to obtain the building model, the processing of the process information to obtain the process model, the processing of the deodorization pipeline information to obtain the deodorization pipeline model, and the processing of the scaffolding information to obtain the scaffolding model include:
[0013] Obtain a modeling tool on the building information modeling platform, and input structural information, building information, process information, deodorization pipeline information, and scaffolding information into the modeling tool;
[0014] The structural information is processed by the modeling tool to obtain the structural model, the building information is processed by the modeling tool to obtain the building model, the process information is processed by the modeling tool to obtain the process model, the deodorization pipeline information is processed by the modeling tool to obtain the deodorization pipeline model, and the scaffolding information is processed by the modeling tool to obtain the scaffolding model.
[0015] Furthermore, the structural model, building model, process model, deodorization pipeline model, and scaffolding model are merged to obtain a BIM model corresponding to the water plant construction project, including:
[0016] Obtain a first model file corresponding to the structural model, obtain a second model file corresponding to the building model, obtain a third model file corresponding to the process model, obtain a fourth model file corresponding to the deodorization pipeline model, and obtain a fifth model file corresponding to the scaffolding model;
[0017] The first model file, the second model file, the third model file, the fourth model file and the fifth model file are merged to obtain a target file, the target file is imported into a building information modeling platform, and the target file is processed through the building information modeling platform to obtain a BIM model corresponding to the water plant construction project.
[0018] Furthermore, the collision check is performed on the structural model, building model, process model, deodorization pipeline model, and scaffolding model in the BIM model to obtain the collision points in the BIM model, including:
[0019] Access the collision check tool on the building information modeling platform and input the BIM model into the collision check tool;
[0020] The collision check tool is used to perform collision checks on the structural model, building model, process model, deodorization pipeline model, and scaffolding model in the BIM model to obtain multiple collision check results. The multiple collision check results are integrated to obtain the overall result, and the collision position in the overall result is selected as the collision point in the BIM model.
[0021] Furthermore, obtaining collision information corresponding to the collision point, obtaining the pipeline that collides with the wall in the BIM model from the collision information, adjusting the position or path of the pipeline to obtain the pipeline that bypasses the wall, replacing the pipeline that collides with the wall with the pipeline that bypasses the wall, and selecting the BIM model using the pipeline that bypasses the wall as the modified BIM model, includes:
[0022] Obtain collision information corresponding to the collision point, and obtain, from the collision information, the pipeline that collides with the wall in the BIM model;
[0023] A path planning algorithm is used to adjust the position or path of the pipeline to obtain a pipeline that bypasses the wall. The pipeline that bypasses the wall replaces the pipeline that collides with the wall, and a BIM model using the pipeline that bypasses the wall is selected as the modified BIM model. The path planning algorithm includes one of a graph search algorithm and a heuristic search algorithm, or a combination thereof.
[0024] Furthermore, in the modified BIM model, obtaining a plan view, a cross-sectional view, or an elevation view of the water plant pool wall, selecting the plan view, the cross-sectional view, or the elevation view of the water plant pool wall as a target view of the water plant pool wall, adding construction information to the target view, and selecting the target view with the added construction information as a construction view of the water plant pool wall, includes:
[0025] Obtain a preset drawing scale, and in the modified BIM model, obtain a plan view, a cross-section view, or an elevation view of the waterworks pool wall that conforms to the drawing scale, and select the plan view, the cross-section view, or the elevation view of the waterworks pool wall as a target view of the waterworks pool wall;
[0026] Obtain the length, thickness, height, material information, and coordinate position of the water plant pool wall in the modified BIM model, splice the length, thickness, height, material information, and coordinate position of the water plant pool wall to obtain construction information, add the construction information to the target drawing, and select the target drawing with the construction information added as the construction drawing of the water plant pool wall.
[0027] Furthermore, in the modified BIM model, a plan view, a cross-sectional view, or a elevation view of the water plant pool wall is obtained, the plan view, the cross-sectional view, or the elevation view of the water plant pool wall is selected as a target view of the water plant pool wall, construction information is added to the target view, and the target view with the added construction information is selected as a construction view of the water plant pool wall. The water plant pool wall construction simulation method includes:
[0028] The bill of quantities is exported from the modified BIM model, a first display window and a second display window are created, the bill of quantities is displayed through the first window, and the construction drawing is displayed through the second window.
[0029] In a second aspect, a water plant pool wall construction simulation device is provided, comprising:
[0030] The first acquisition module is used to obtain structural information, building information, process information, deodorization pipeline information, and scaffolding information in the water plant construction project;
[0031] a processing module for processing structural information to obtain a structural model, processing building information to obtain a building model, processing process information to obtain a process model, processing deodorization pipeline information to obtain a deodorization pipeline model, and processing scaffolding information to obtain a scaffolding model;
[0032] The merging module is used to merge the structural model, building model, process model, deodorization pipeline model, and scaffolding model to obtain the BIM model corresponding to the water plant construction project;
[0033] The inspection module is used to perform collision checks on the structural model, building model, process model, deodorization pipeline model, and scaffolding model in the BIM model to obtain collision points in the BIM model;
[0034] The second acquisition module is configured to obtain collision information corresponding to the collision point, obtain the pipeline that collides with the wall in the BIM model from the collision information, adjust the position or path of the pipeline to obtain the pipeline that bypasses the wall, replace the pipeline that collides with the wall with the pipeline that bypasses the wall, and select the BIM model using the pipeline that bypasses the wall as the modified BIM model;
[0035] The third acquisition module is used to obtain the plan view, cross-section view or elevation view of the water plant pool wall in the modified BIM model, select the plan view, cross-section view or elevation view of the water plant pool wall as the target view of the water plant pool wall, add construction information to the target view, and select the target view with the added construction information as the construction view of the water plant pool wall.
[0036] In a third aspect, a computer device is provided, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, the steps of the above-mentioned water plant pool wall construction simulation method are implemented.
[0037] In a fourth aspect, a computer-readable storage medium is provided, which stores a computer program. When the computer program is executed by a processor, the steps of the above-mentioned water plant pool wall construction simulation method are implemented.
[0038] The present application provides a water plant pool wall construction simulation method, device, computer equipment and storage medium, which obtain structural information, building information, process information, deodorization pipeline information and scaffolding information in the water plant construction project; process the structural information to obtain a structural model, process the building information to obtain a building model, process the process information to obtain a process model, process the deodorization pipeline information to obtain a deodorization pipeline model, and process the scaffolding information to obtain a scaffolding model; merge the structural model, building model, process model, deodorization pipeline model and scaffolding model to obtain a BIM model corresponding to the water plant construction project; perform collision check on the structural model, building model, process model, deodorization pipeline model and scaffolding model in the BIM model to obtain collision points in the BIM model; obtain collision information corresponding to the collision points, obtain the pipeline that collides with the wall in the BIM model from the collision information, adjust the position or path of the pipeline, obtain the pipeline that bypasses the wall, and replace the pipeline that bypasses the wall Remove the pipeline that collides with the wall, and select the BIM model of the pipeline that bypasses the wall as the modified BIM model; in the modified BIM model, obtain the plan view, cross-section view or elevation view of the water plant pool wall, select the plan view, cross-section view or elevation view of the water plant pool wall as the target view of the water plant pool wall, add construction information on the target view, and select the target view with the added construction information as the construction drawing of the water plant pool wall. The beneficial effects are in two aspects. On the one hand, in the modified BIM model, obtain the plan view, cross-section view or elevation view of the water plant pool wall, select the plan view, cross-section view or elevation view of the water plant pool wall as the target view of the water plant pool wall, add construction information on the target view, and select the target view with the added construction information as the construction drawing of the water plant pool wall. Since manual acquisition is not required, the acquisition time of the construction drawing of the water plant pool wall is reduced, which is conducive to improving the acquisition efficiency of the construction drawing of the water plant pool wall; on the other hand, since it will not be affected by manual intervention, it is conducive to improving the reliability of the obtained construction drawing of the water plant pool wall. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments of the present invention. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.
[0040] Figure 1 Schematic diagram of the application environment of the water plant pool wall construction simulation method in one embodiment of the present invention;
[0041] Figure 2 A schematic flow chart of a water plant pool wall construction simulation method provided by one embodiment of the present invention;
[0042] Figure 3 yes Figure 2 Schematic diagram of the process of step S23;
[0043] Figure 4 yes Figure 2 Flow diagram of step S25;
[0044] Figure 5 yes Figure 2 Flow diagram of step S26;
[0045] Figure 6 This is a structural diagram of a water plant pool wall construction simulation device according to one embodiment of the present invention;
[0046] Figure 7 It is a structural diagram of a computer device in one embodiment of the present invention. DETAILED DESCRIPTION
[0047] 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 them. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0048] See also Figure 1 , Figure 1 This is a schematic diagram of the application environment of the water plant pool wall construction simulation method according to one embodiment of the present invention. The water plant pool wall construction simulation method provided by the embodiment of the present invention can be applied in the following situations: Figure 1 In an application environment, a client communicates with a server through a network.
[0049] The server obtains structural information, building information, process information, deodorization pipeline information, and scaffolding information in the water plant construction project through the client;
[0050] Processing the structural information to obtain a structural model, processing the building information to obtain a building model, processing the process information to obtain a process model, processing the deodorization pipeline information to obtain a deodorization pipeline model, processing the scaffolding information to obtain a scaffolding model;
[0051] Merge the structural model, building model, process model, deodorization pipeline model, and scaffolding model to obtain the BIM model corresponding to the water plant construction project;
[0052] Perform collision checks on the structural model, building model, process model, deodorization pipeline model, and scaffolding model in the BIM model to obtain collision points in the BIM model;
[0053] Obtain collision information corresponding to the collision point, obtain the pipeline that collides with the wall in the BIM model from the collision information, adjust the position or path of the pipeline to obtain a pipeline that bypasses the wall, replace the pipeline that collides with the wall with the pipeline that bypasses the wall, and select the BIM model using the pipeline that bypasses the wall as the modified BIM model;
[0054] In the modified BIM model, the plan view, cross-section view or elevation view of the water plant pool wall is obtained, the plan view, cross-section view or elevation view of the water plant pool wall is selected as the target view of the water plant pool wall, construction information is added to the target view, and the target view with the added construction information is selected as the construction view of the water plant pool wall.
[0055] In the scheme implemented by the above-mentioned water plant pool wall construction simulation method, device, equipment and medium, the beneficial effects are in two aspects. On the one hand, in the modified BIM model, the plan view, cross-section view or elevation view of the water plant pool wall is obtained, and the plan view, cross-section view or elevation view of the water plant pool wall is selected as the target view of the water plant pool wall, and construction information is added to the target view, and the target view with the added construction information is selected as the construction drawing of the water plant pool wall. Since manual acquisition is not required, the acquisition time of the construction drawing of the water plant pool wall is reduced, which is conducive to improving the acquisition efficiency of the construction drawing of the water plant pool wall; on the other hand, since it will not be affected by human intervention, it is conducive to improving the reliability of the obtained construction drawing of the water plant pool wall.
[0056] The device running the client is referred to as a client device.
[0057] The device running the server is referred to as the server device.
[0058] Among them, client devices include but are not limited to smartphones, personal computers, Internet of Vehicles terminals, tablets and portable wearable devices.
[0059] The server device can be implemented as an independent server or a server cluster composed of multiple servers. The present invention is described in detail below through specific embodiments. Figure 2 , Figure 2 A schematic flow chart of a water plant pool wall construction simulation method provided in one embodiment of the present invention includes the following steps:
[0060] S21, obtaining structural information, building information, process information, deodorization pipeline information, and scaffolding information in the water plant construction project;
[0061] Among them, water plant construction projects refer to a series of infrastructure construction projects planned and implemented to meet the diversified needs of urban or specific area residents for domestic water, industrial production water, agricultural irrigation, etc.
[0062] Structural information is detailed data about a building's physical support framework. It describes the building's internal skeleton, including the location, dimensions, material type, and interconnection of load-bearing components such as beams, columns, floor slabs, and walls. This information ensures a clear understanding of the building's mechanical properties and stability, and serves as the foundation for assessing building safety.
[0063] Architectural information focuses on a building's appearance, functionality, and interior layout. It encompasses architectural design style, room functional divisions, decorative material selection, door and window configurations, and lighting and ventilation design. With accurate architectural information, designers can realize their design concepts within the model, ensuring the final building is both aesthetically pleasing and practical, meeting the diverse needs of users.
[0064] Among them, process information is a detailed description of construction methods and processes. This information includes the various stages of the building construction process, required materials, construction equipment, construction sequence, quality control standards, and safety measures. Process information is crucial for guiding construction teams to complete construction tasks efficiently and accurately. During model construction, process information helps construction personnel understand design intent, ensures smooth construction, reduces resource waste and safety hazards, and improves the overall quality and efficiency of construction projects.
[0065] Deodorization pipeline information refers to detailed data about the piping systems used to treat and control odor emissions within or around a building. This information includes the type, route, and diameter of the pipeline. By accurately entering this information, we can simulate the odor transmission path within and outside the building, providing a scientific basis for developing effective deodorization strategies.
[0066] Scaffolding information is a collection of data about the scaffolding structure, layout, and properties. This data includes the scaffolding type, steel pipe diameter, wall thickness, fastener type, maximum load capacity, overturning coefficient, and fire rating.
[0067] S22, processing the structural information to obtain a structural model, processing the building information to obtain a building model, processing the process information to obtain a process model, processing the deodorization pipeline information to obtain a deodorization pipeline model, and processing the scaffolding information to obtain a scaffolding model;
[0068] The processing of the structural information to obtain the structural model, the processing of the building information to obtain the building model, the processing of the process information to obtain the process model, the processing of the deodorization pipeline information to obtain the deodorization pipeline model, and the processing of the scaffolding information to obtain the scaffolding model include:
[0069] Obtain a modeling tool on the building information modeling platform, and input structural information, building information, process information, deodorization pipeline information, and scaffolding information into the modeling tool;
[0070] The structural information is processed by the modeling tool to obtain the structural model, the building information is processed by the modeling tool to obtain the building model, the process information is processed by the modeling tool to obtain the process model, the deodorization pipeline information is processed by the modeling tool to obtain the deodorization pipeline model, and the scaffolding information is processed by the modeling tool to obtain the scaffolding model.
[0071] Exemplarily, the structural information is processed by a modeling tool to obtain a structural model, the building information is processed by a modeling tool to obtain a building model, the process information is processed by a modeling tool to obtain a process model, the deodorization pipeline information is processed by a modeling tool to obtain a deodorization pipeline model, and the scaffolding information is processed by a modeling tool to obtain a scaffolding model, including:
[0072] The structural information is processed by a modeling tool to obtain a model corresponding to the structural information, and the model corresponding to the structural information is selected as the structural model;
[0073] Processing the building information through a modeling tool to obtain a model corresponding to the building information, and selecting the model corresponding to the building information as the building model;
[0074] Processing the process information through a modeling tool to obtain a model corresponding to the process information, and selecting the model corresponding to the process information as the process model;
[0075] Processing the deodorization pipeline information by using a modeling tool to obtain a model corresponding to the deodorization pipeline information, and selecting the model corresponding to the deodorization pipeline information as the deodorization pipeline model;
[0076] The scaffolding information is processed by a modeling tool to obtain a model corresponding to the scaffolding information, and the model corresponding to the scaffolding information is selected as the scaffolding model.
[0077] Among them, the structural model is used to display the structural layout, material selection, stress analysis, etc. of the water plant structure, helping users to carry out structural design and optimization.
[0078] Among them, the architectural model is used to display the appearance, layout, and functional divisions of the water plant building, helping users with architectural design and planning.
[0079] Among them, the process model is used to display the water plant's treatment process flow, helping users to design and optimize the process and improve the water plant's water treatment efficiency.
[0080] Among them, the deodorization pipeline model is used to demonstrate the overall layout and treatment effect of the water plant's deodorization pipeline, helping engineers design and optimize the deodorization pipeline and improve the environmental sanitation of the water plant.
[0081] Among them, the scaffolding model is used to evaluate the bearing capacity and stability of the scaffolding to ensure the safety and reliability of the scaffolding model during the construction process.
[0082] S23, merging the structural model, the building model, the process model, the deodorization pipeline model, and the scaffolding model to obtain a BIM model corresponding to the water plant construction project;
[0083] The BIM model stands for Building Information Modeling (BIM). During the construction phase, the BIM model for the water plant project can guide the construction sequence, assist with resource management and schedule control, and effectively reduce construction errors and delays.
[0084] S24, performing collision check on the structural model, the building model, the process model, the deodorization pipeline model, and the scaffolding model in the BIM model to obtain collision points in the BIM model;
[0085] The collision check of the structural model, building model, process model, deodorization pipeline model, and scaffolding model in the BIM model to obtain the collision points in the BIM model includes:
[0086] Access the collision check tool on the building information modeling platform and input the BIM model into the collision check tool;
[0087] The collision check tool is used to perform collision checks on the structural model, building model, process model, deodorization pipeline model, and scaffolding model in the BIM model to obtain multiple collision check results. The multiple collision check results are integrated to obtain the overall result, and the collision position in the overall result is selected as the collision point in the BIM model.
[0088] Among them, different collision check results are integrated to obtain the overall result, and the collision positions in the selected overall result are obtained as the collision points in the BIM model. This can enable the collision points to be discovered and resolved in advance during the design phase. Since the collision points can be resolved before construction, on-site changes and delays can be greatly reduced, and project costs can be effectively controlled, thereby significantly improving the efficiency and quality of the project.
[0089] For example, a collision check tool is used to perform a collision check on the structural model, building model, process model, deodorization pipeline model, and scaffolding model in the BIM model to obtain multiple collision check results. The multiple collision check results are integrated to obtain a total result, and the collision position in the total result is obtained and selected as the collision point in the BIM model, including:
[0090] Use the collision check tool to perform collision checks on the structural model, architectural model, process model, deodorization pipeline model, and scaffolding model in the BIM model, and obtain the collision check results between the structural model and the architectural model, the structural model and the process model, the structural model and the deodorization pipeline model, the structural model and the scaffolding model, the architectural model and the process model, the architectural model and the deodorization pipeline model, the architectural model and the scaffolding model, the process model and the deodorization pipeline model, the process model and the scaffolding model, and the collision check results between the deodorization pipeline model and the scaffolding model;
[0091] The collision check results between the structural model and the architectural model, the structural model and the process model, the structural model and the deodorization pipeline model, the structural model and the scaffolding model, the architectural model and the process model, the architectural model and the deodorization pipeline model, the architectural model and the scaffolding model, the process model and the deodorization pipeline model, the process model and the scaffolding model, and the collision check results between the deodorization pipeline model and the scaffolding model are integrated to obtain the overall result, and the collision positions in the overall result are selected as the collision points in the BIM model.
[0092] The structural model, architectural model, process model, deodorization pipeline model, and scaffolding model are different models. The collision check tool performs collision checks on the structural model, architectural model, process model, deodorization pipeline model, and scaffolding model in the BIM model, and can fully identify the collision check results between any two models in the structural model, architectural model, process model, deodorization pipeline model, and scaffolding model during the design phase.
[0093] S25, obtaining collision information corresponding to the collision point, obtaining the pipeline that collides with the wall in the BIM model from the collision information, adjusting the position or path of the pipeline to obtain a pipeline that bypasses the wall, replacing the pipeline that collides with the wall with the pipeline that bypasses the wall, and selecting the BIM model using the pipeline that bypasses the wall as the modified BIM model;
[0094] Adjusting the location or path of the pipelines resulted in pipelines bypassing the wall, eliminating collision points. Therefore, selecting the BIM model of the pipelines bypassing the wall as the modified BIM model can help avoid potential collision issues in the water plant construction project before construction, reducing on-site changes and delays, shortening the construction time of the water plant construction project, and improving the construction efficiency of the water plant construction project.
[0095] S26. In the modified BIM model, a plan view, a cross-sectional view, or a elevation view of the water plant pool wall is obtained, the plan view, the cross-sectional view, or the elevation view of the water plant pool wall is selected as a target view of the water plant pool wall, construction information is added to the target view, and the target view with the added construction information is selected as a construction view of the water plant pool wall.
[0096] Among them, construction information is added to the target map, and the target map with added construction information is selected as the construction drawing of the water plant pool wall. The construction drawing provides construction information, enabling the construction team to arrange resources reasonably, reducing the construction time of the water plant pool wall, and helping to improve the construction efficiency of the water plant pool wall.
[0097] In the modified BIM model, a plan view, a cross-sectional view, or a elevation view of the water plant pool wall is obtained, the plan view, the cross-sectional view, or the elevation view of the water plant pool wall is selected as a target view of the water plant pool wall, construction information is added to the target view, and the target view with the added construction information is selected as a construction view of the water plant pool wall. The water plant pool wall construction simulation method includes:
[0098] The bill of quantities is exported from the modified BIM model, a first display window and a second display window are created, the bill of quantities is displayed through the first window, and the construction drawing is displayed through the second window.
[0099] Among them, the bill of quantities records information on all materials and workload required for the water plant pool wall in the water plant construction project, providing an accurate data basis for project management and cost control.
[0100] Among them, exporting the bill of quantities from the modified BIM model avoids errors caused by manual calculation of the bill of quantities and significantly improves the accuracy of the bill of quantities.
[0101] Among them, the construction drawings are displayed through the second window. The construction drawings provide construction information, enabling the construction team to reasonably arrange resources and effectively control the construction progress.
[0102] In the embodiment of the present invention, the beneficial effects are in two aspects. On the one hand, in the modified BIM model, the plan view, cross-section view or elevation view of the water plant pool wall is obtained, the plan view, cross-section view or elevation view of the water plant pool wall is selected as the target view of the water plant pool wall, construction information is added to the target view, and the target view with the added construction information is selected as the construction drawing of the water plant pool wall. Since manual acquisition is not required, the acquisition time of the construction drawing of the water plant pool wall is reduced, which is conducive to improving the acquisition efficiency of the construction drawing of the water plant pool wall; on the other hand, since it will not be affected by human intervention, it is conducive to improving the reliability of the acquired construction drawing of the water plant pool wall.
[0103] See also Figure 3 , Figure 3 yes Figure 2 The flow chart of step S23 is described in detail as follows:
[0104] S31, obtaining a first model file corresponding to the structural model, obtaining a second model file corresponding to the building model, obtaining a third model file corresponding to the process model, obtaining a fourth model file corresponding to the deodorization pipeline model, and obtaining a fifth model file corresponding to the scaffolding model;
[0105] S32: Merge the first model file, the second model file, the third model file, the fourth model file, and the fifth model file to obtain a target file, import the target file into a building information modeling platform, and process the target file through the building information modeling platform to obtain a BIM model corresponding to the water plant construction project.
[0106] In an embodiment of the present invention, the target file is processed through the building information model platform to obtain the BIM model corresponding to the water plant construction project. The BIM model corresponding to the water plant construction project integrates the structural model, building model, process model, deodorization pipeline model, and scaffolding model, realizing unified management of information and efficient communication, which is conducive to discovering potential problems in construction in advance.
[0107] See also Figure 4 , Figure 4 yes Figure 2The flow chart of step S25 is described in detail as follows:
[0108] S41, obtaining collision information corresponding to the collision point, and obtaining the pipeline that collides with the wall in the BIM model from the collision information;
[0109] S42, using a path planning algorithm to adjust the position or path of the pipeline to obtain a pipeline that bypasses the wall, replacing the pipeline that collides with the wall with the pipeline that bypasses the wall, and selecting a BIM model using the pipeline that bypasses the wall as the modified BIM model. The path planning algorithm includes one of a graph search algorithm and a heuristic search algorithm, or a combination thereof.
[0110] In an embodiment of the present invention, the position or path of the pipeline is adjusted to obtain a pipeline that bypasses the wall, and the pipeline that collides with the wall is replaced by the pipeline that bypasses the wall. The BIM model of the pipeline that bypasses the wall is selected as the modified BIM model. The modified BIM model can eliminate the collision point and significantly reduce the rework during the construction process. This not only saves valuable time and human resources, but also greatly reduces the additional costs caused by repeated construction.
[0111] See also Figure 5 , Figure 5 yes Figure 2 The flow chart of step S26 is described in detail as follows:
[0112] S51, obtaining a preset drawing scale, obtaining a plan view, a cross-sectional view, or an elevation view of the waterworks pool wall that conforms to the drawing scale in the modified BIM model, and selecting the plan view, cross-sectional view, or elevation view of the waterworks pool wall as a target view of the waterworks pool wall;
[0113] S52, obtaining the length, thickness, height, material information, and coordinate position of the water plant pool wall in the modified BIM model, splicing the length, thickness, height, material information, and coordinate position of the water plant pool wall to obtain construction information, adding the construction information to the target drawing, and selecting the target drawing with the construction information added as the construction drawing of the water plant pool wall.
[0114] In an embodiment of the present invention, the length, thickness, height, material information, and coordinate position of the water plant pool wall are spliced together to obtain construction information, the construction information is added to the target map, and the target map with the added construction information is selected as the construction drawing of the water plant pool wall. Since manual acquisition is not required, the acquisition time of the construction drawing of the water plant pool wall is reduced, which is conducive to improving the efficiency of acquiring the construction drawing of the water plant pool wall.
[0115] See also Figure 6 , Figure 6 Schematic diagram of the structure of the water plant wall construction simulation device in one embodiment of the present invention. Figure 6As shown, the water plant pool wall construction simulation device includes a first acquisition module 101, a processing module 102, a merging module 103, a checking module 104, a second acquisition module 105, and a third acquisition module 106. The functional modules are described in detail as follows:
[0116] The first acquisition module 101 is used to obtain structural information, building information, process information, deodorization pipeline information, and scaffolding information in the water plant construction project;
[0117] Processing module 102, configured to process structural information to obtain a structural model, process architectural information to obtain an architectural model, process process information to obtain a process model, process deodorization pipeline information to obtain a deodorization pipeline model, and process scaffolding information to obtain a scaffolding model;
[0118] A merging module 103 is used to merge the structural model, the building model, the process model, the deodorization pipeline model, and the scaffolding model to obtain a BIM model corresponding to the water plant construction project;
[0119] The checking module 104 is used to perform collision checking on the structural model, the building model, the process model, the deodorization pipeline model, and the scaffolding model in the BIM model to obtain collision points in the BIM model;
[0120] The second acquisition module 105 is configured to obtain collision information corresponding to the collision point, obtain the pipeline that collides with the wall in the BIM model from the collision information, adjust the position or path of the pipeline to obtain the pipeline that bypasses the wall, replace the pipeline that collides with the wall with the pipeline that bypasses the wall, and select the BIM model using the pipeline that bypasses the wall as the modified BIM model;
[0121] The third acquisition module 106 is used to obtain the plan view, cross-section view or elevation view of the water plant pool wall in the modified BIM model, select the plan view, cross-section view or elevation view of the water plant pool wall as the target view of the water plant pool wall, add construction information to the target view, and select the target view with the construction information added as the construction view of the water plant pool wall.
[0122] In the embodiment of the present invention, the beneficial effects are in two aspects. On the one hand, in the modified BIM model, the plan view, cross-section view or elevation view of the water plant pool wall is obtained, the plan view, cross-section view or elevation view of the water plant pool wall is selected as the target view of the water plant pool wall, construction information is added to the target view, and the target view with the added construction information is selected as the construction drawing of the water plant pool wall. Since manual acquisition is not required, the acquisition time of the construction drawing of the water plant pool wall is reduced, which is conducive to improving the acquisition efficiency of the construction drawing of the water plant pool wall; on the other hand, since it will not be affected by human intervention, it is conducive to improving the reliability of the acquired construction drawing of the water plant pool wall.
[0123] For the specific limitations of the water plant pool wall construction simulation device, please refer to the limitations of the water plant pool wall construction simulation method above, which will not be repeated here.
[0124] Each module in the water plant wall construction simulation device can be implemented in whole or in part through software, hardware, or a combination thereof. Each module can be embedded in or independent of a processor in a computer device in hardware form, or can be stored in a computer device memory in software form, so that the processor can call and execute the corresponding operations of each module.
[0125] See also Figure 7 , Figure 7 Schematic diagram of the structure of a computer device in one embodiment of the present invention. In one embodiment, a computer device is provided. The computer device is a server device or a client device. The internal structure diagram thereof can be as follows: Figure 7 As shown. The computer device includes a processor, memory, network interface, display screen, and input device connected via a system bus. The processor of the computer device is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system and a computer program. The internal memory provides an environment for the operation of the operating system and computer program in the non-volatile storage medium. The network interface of the computer device is used to communicate with external devices. When the computer program is executed by the processor, it can implement the functions or steps of a water plant pool wall construction simulation method.
[0126] In one embodiment, a computer device is provided, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor.
[0127] It should be noted that the above functions or steps that can be implemented by the computer-readable storage medium or computer device can refer to the relevant description of the aforementioned method embodiment. To avoid repetition, they will not be described one by one here.
[0128] The above-mentioned processor can be a general-purpose processor, including a central processing unit (CPU), a graphics processing unit (GPU), and a network processor (NP); it can also be a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components.
[0129] The above description and accompanying drawings sufficiently illustrate the embodiments of the present disclosure to enable those skilled in the art to practice them. Each embodiment herein may focus on the differences from other embodiments, and similar portions between the embodiments may be referenced to each other. For methods disclosed in the embodiments, if they correspond to the method portion disclosed in the embodiments, then the relevant portions may be referenced to the description of the method portion.
[0130] Those skilled in the art will appreciate that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are performed in hardware or software may depend on the specific application and design constraints of the technical solution. Technicians can use different methods to implement the described functions for each specific application, but such implementation should not be considered to be beyond the scope of the embodiments of the present disclosure.
Claims
1. A water plant pool wall construction simulation method, characterized in that: include: Obtain structural information, construction information, process information, deodorization pipeline information, and scaffolding information in water plant construction projects; Processing the structural information to obtain a structural model, processing the building information to obtain a building model, processing the process information to obtain a process model, processing the deodorization pipeline information to obtain a deodorization pipeline model, processing the scaffolding information to obtain a scaffolding model; Merge the structural model, building model, process model, deodorization pipeline model, and scaffolding model to obtain the BIM model corresponding to the water plant construction project; Perform collision checks on the structural model, building model, process model, deodorization pipeline model, and scaffolding model in the BIM model to obtain collision points in the BIM model; Obtain collision information corresponding to the collision point, obtain the pipeline that collides with the wall in the BIM model from the collision information, adjust the position or path of the pipeline to obtain a pipeline that bypasses the wall, replace the pipeline that collides with the wall with the pipeline that bypasses the wall, and select the BIM model using the pipeline that bypasses the wall as the modified BIM model; In the modified BIM model, the plan view, cross-section view or elevation view of the water plant pool wall is obtained, the plan view, cross-section view or elevation view of the water plant pool wall is selected as the target view of the water plant pool wall, construction information is added to the target view, and the target view with the added construction information is selected as the construction view of the water plant pool wall.
2. The water plant pool wall construction simulation method according to claim 1, characterized in that: The processing of the structural information to obtain the structural model, the processing of the building information to obtain the building model, the processing of the process information to obtain the process model, the processing of the deodorization pipeline information to obtain the deodorization pipeline model, and the processing of the scaffolding information to obtain the scaffolding model include: Obtain a modeling tool on the building information modeling platform, and input structural information, building information, process information, deodorization pipeline information, and scaffolding information into the modeling tool; The structural information is processed by the modeling tool to obtain the structural model, the building information is processed by the modeling tool to obtain the building model, the process information is processed by the modeling tool to obtain the process model, the deodorization pipeline information is processed by the modeling tool to obtain the deodorization pipeline model, and the scaffolding information is processed by the modeling tool to obtain the scaffolding model.
3. The water plant pool wall construction simulation method according to claim 1, characterized in that: The structural model, building model, process model, deodorization pipeline model, and scaffolding model are merged to obtain the BIM model corresponding to the water plant construction project, including: Obtain a first model file corresponding to the structural model, obtain a second model file corresponding to the building model, obtain a third model file corresponding to the process model, obtain a fourth model file corresponding to the deodorization pipeline model, and obtain a fifth model file corresponding to the scaffolding model; The first model file, the second model file, the third model file, the fourth model file and the fifth model file are merged to obtain a target file, the target file is imported into a building information modeling platform, and the target file is processed through the building information modeling platform to obtain a BIM model corresponding to the water plant construction project.
4. The water plant pool wall construction simulation method according to claim 1, characterized in that: The collision check of the structural model, building model, process model, deodorization pipeline model, and scaffolding model in the BIM model to obtain the collision points in the BIM model includes: Access the collision check tool on the building information modeling platform and input the BIM model into the collision check tool; The collision check tool is used to perform collision checks on the structural model, building model, process model, deodorization pipeline model, and scaffolding model in the BIM model to obtain multiple collision check results. The multiple collision check results are integrated to obtain the overall result, and the collision position in the overall result is selected as the collision point in the BIM model.
5. The water plant pool wall construction simulation method according to claim 1, characterized in that: Obtaining collision information corresponding to the collision point, obtaining the pipeline that collides with the wall in the BIM model from the collision information, adjusting the position or path of the pipeline to obtain the pipeline that bypasses the wall, replacing the pipeline that collides with the wall with the pipeline that bypasses the wall, and selecting the BIM model using the pipeline that bypasses the wall as the modified BIM model, including: Obtain collision information corresponding to the collision point, and obtain, from the collision information, the pipeline that collides with the wall in the BIM model; A path planning algorithm is used to adjust the position or path of the pipeline to obtain a pipeline that bypasses the wall. The pipeline that bypasses the wall replaces the pipeline that collides with the wall, and a BIM model using the pipeline that bypasses the wall is selected as the modified BIM model. The path planning algorithm includes one of a graph search algorithm and a heuristic search algorithm, or a combination thereof.
6. The water plant pool wall construction simulation method according to claim 1, characterized in that: In the modified BIM model, obtaining a plan view, a cross-sectional view, or an elevation view of the water plant pool wall, selecting the plan view, the cross-sectional view, or the elevation view of the water plant pool wall as a target view of the water plant pool wall, adding construction information to the target view, and selecting the target view with the added construction information as a construction view of the water plant pool wall, including: Obtain a preset drawing scale, and in the modified BIM model, obtain a plan view, a cross-section view, or an elevation view of the waterworks pool wall that conforms to the drawing scale, and select the plan view, the cross-section view, or the elevation view of the waterworks pool wall as a target view of the waterworks pool wall; Obtain the length, thickness, height, material information, and coordinate position of the water plant pool wall in the modified BIM model, splice the length, thickness, height, material information, and coordinate position of the water plant pool wall to obtain construction information, add the construction information to the target drawing, and select the target drawing with the construction information added as the construction drawing of the water plant pool wall.
7. The water plant pool wall construction simulation method according to claim 1, characterized in that: In the modified BIM model, a plan view, a cross-sectional view, or a elevation view of the water plant pool wall is obtained, the plan view, the cross-sectional view, or the elevation view of the water plant pool wall is selected as a target view of the water plant pool wall, construction information is added to the target view, and the target view with the added construction information is selected as a construction view of the water plant pool wall. The water plant pool wall construction simulation method includes: The bill of quantities is exported from the modified BIM model, a first display window and a second display window are created, the bill of quantities is displayed through the first window, and the construction drawing is displayed through the second window.
8. A water plant pool wall construction simulation device, characterized in that: include: The first acquisition module is used to obtain structural information, building information, process information, deodorization pipeline information, and scaffolding information in the water plant construction project; a processing module for processing structural information to obtain a structural model, processing building information to obtain a building model, processing process information to obtain a process model, processing deodorization pipeline information to obtain a deodorization pipeline model, and processing scaffolding information to obtain a scaffolding model; The merging module is used to merge the structural model, building model, process model, deodorization pipeline model, and scaffolding model to obtain the BIM model corresponding to the water plant construction project; The inspection module is used to perform collision checks on the structural model, building model, process model, deodorization pipeline model, and scaffolding model in the BIM model to obtain collision points in the BIM model; The second acquisition module is configured to obtain collision information corresponding to the collision point, obtain the pipeline that collides with the wall in the BIM model from the collision information, adjust the position or path of the pipeline to obtain the pipeline that bypasses the wall, replace the pipeline that collides with the wall with the pipeline that bypasses the wall, and select the BIM model using the pipeline that bypasses the wall as the modified BIM model; The third acquisition module is used to obtain the plan view, cross-section view or elevation view of the water plant pool wall in the modified BIM model, select the plan view, cross-section view or elevation view of the water plant pool wall as the target view of the water plant pool wall, add construction information to the target view, and select the target view with the added construction information as the construction view of the water plant pool wall.
9. A computer device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the computer program, the steps of the water plant pool wall construction simulation method as described in any one of claims 1 to 7 are implemented.
10. A computer-readable storage medium storing a computer program, characterized in that: When the computer program is executed by a processor, the steps of the water plant pool wall construction simulation method as described in any one of claims 1 to 7 are implemented.
Citation Information
Cited By
Automatic generation method and system for semi-conductor factory layout map based on artificial intelligence model
CN120975025A