Water heating well pipe deployment method based on BIM platform and related equipment

By adopting a BIM-based method for deploying water and heating well pipes, pipe configuration information is obtained, branch pipe patterns are constructed, and installation conditions are checked. This solves the problem of insufficient design accuracy of water and heating well pipes and achieves accuracy and efficiency in three-dimensional design and installation.

CN115455516BActive Publication Date: 2025-12-30HEFEI LIANGZHEN CONSTR TECH CO LTD
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Patent Information

Application Number
CN202210696204.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-06-20
Publication Date
2025-12-30
Estimated Expiration
2042-06-20

AI Technical Summary

Technical Problem

Existing plumbing design methods lack precision, leading to numerous errors and discrepancies in the design drawings at the installation site, which affects project quality and delivery dates.

Method used

The water and heating well pipeline deployment method based on the BIM platform is adopted. By obtaining pipeline configuration information, constructing branch pipe patterns, checking whether the layout effect meets the spatial installation conditions, configuring branch pipe related components, and generating a three-dimensional water and heating well pipeline system.

Benefits of technology

It improves the accuracy of design drawings, reduces engineering errors, facilitates design and construction, and ensures the accuracy and efficiency of installation.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application relates to the technical field of intelligent building technology, and discloses a water heating well pipeline deployment method based on a BIM platform and related equipment. The method comprises the following steps: starting an auxiliary deployment device, and obtaining pipeline configuration information of a water heating well pipeline system to be constructed, wherein the pipeline configuration information comprises first configuration information, second configuration information and third configuration information; according to the first configuration information, a branch pipe style corresponding to a system construction type and a size is constructed; according to the second configuration information, a layout effect of the water heating well pipeline system to be constructed is determined, and whether the layout effect meets preset space installation conditions is detected based on the branch pipe style; if yes, branch pipe related components of the water heating well pipeline system to be constructed are configured according to the third configuration information, the layout effect and the branch pipe style, and a water heating well pipeline system is obtained. The method realizes high-precision three-dimensional design of the water heating well pipeline.
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Description

Technical Field

[0001] This invention relates to the field of intelligent building technology, and in particular to a method for deploying water and heating well pipes based on a BIM platform and related equipment. Background Technology

[0002] In the current architectural design industry, functional designs are becoming increasingly standardized across different patent fields. In the design and installation of water and heating well pipes, design teams generally design pipes according to the enterprise standards of real estate developers or the requirements of relevant design specifications and atlases, and then complete the design of relevant drawings after modification.

[0003] Currently, designers complete design tasks using CAD drawings, with pipeline drawings mostly remaining at a two-dimensional level. Because these drawings are often two-dimensional, complex manhole installation spaces cannot be visually assessed. When these drawings arrive at the installation site, numerous errors, omissions, and collisions often occur, requiring extensive modifications or even rework, significantly impacting project quality and delivery dates. In other words, the existing design methods for plumbing manholes suffer from insufficient precision. Summary of the Invention

[0004] The main objective of this invention is to solve the problem of insufficient accuracy in existing water and heating well pipe design methods.

[0005] The first aspect of this invention provides a method for deploying water and heating well pipes based on a BIM platform. The BIM platform includes an auxiliary deployment device. The method for deploying water and heating well pipes based on the BIM platform includes: activating the auxiliary deployment device and acquiring pipe configuration information of the water and heating well pipe system to be constructed, wherein the pipe configuration information includes first configuration information, second configuration information, and third configuration information; constructing branch pipe styles corresponding to the system construction type and size based on the first configuration information; determining the layout effect of the water and heating well pipe system to be constructed based on the second configuration information, and detecting whether the layout effect meets the preset space installation conditions based on the branch pipe styles; if it meets the conditions, configuring the branch pipe-related components of the water and heating well pipe system to be constructed based on the third configuration information, the layout effect, and the branch pipe styles to obtain the water and heating well pipe system.

[0006] Optionally, in a first implementation of the first aspect of the present invention, the step of constructing a branch pipe pattern corresponding to the system construction type and size based on the first configuration information includes: identifying the size value and system construction type of the water and heating well pipeline system to be constructed based on the first configuration information; selecting the branch pipe family parameter corresponding to the system construction type, and assigning the branch pipe family parameter with the size value to obtain the corresponding branch pipe pattern.

[0007] Optionally, in a second implementation of the first aspect of the present invention, determining the layout effect of the water and heating well pipeline system to be constructed based on the second configuration information includes: parsing the second configuration information to obtain a first branch pipe form parameter, a branch pipe quantity parameter, and a branch pipe spacing parameter; determining the spatial layout structure of the water and heating well pipeline system to be constructed based on the first branch pipe form parameter; and adjusting the spatial layout structure based on the branch pipe quantity parameter and the branch pipe spacing parameter to obtain the layout effect of the water and heating well pipeline system to be constructed.

[0008] Optionally, in a third implementation of the first aspect of the present invention, after detecting whether the arrangement effect meets the preset space installation conditions, the method further includes: if the arrangement effect does not meet the preset space installation conditions, matching the second branch pipe form parameters corresponding to the water and heating well pipeline system to be constructed; replacing the first branch pipe form parameters with the second branch pipe form parameters to update the arrangement effect; and configuring a final arrangement effect that meets the space installation conditions based on the update result.

[0009] Optionally, in a fourth implementation of the first aspect of the present invention, the step of detecting whether the arrangement effect meets the preset space installation conditions based on the branch pipe pattern includes: calculating the pipe installation space of the water and heating well pipe corresponding to the arrangement effect based on the branch pipe pattern; comparing the pipe installation space with the preset water and heating well net space, and detecting whether the pipe installation space is within the preset range of the water and heating well net space according to the comparison result; if it is within the preset range of the water and heating well net space, then it is determined that the arrangement effect meets the preset space installation conditions; if it is not within the preset range of the water and heating well net space, then it is determined that the arrangement effect does not meet the preset space installation conditions.

[0010] Optionally, in a fifth implementation of the first aspect of the present invention, the step of configuring the branch pipe-related components of the water and heating well pipeline system to be constructed according to the third configuration information, the layout effect, and the branch pipe style to obtain the water and heating well pipeline system includes: if satisfied, constructing an initial water and heating well pipeline system corresponding to the water and heating well pipeline system to be constructed according to the layout effect and the branch pipe style; determining the branch pipe accessories and branch pipe valves of the water and heating well pipeline system to be constructed according to the third configuration information; configuring the branch pipe accessories and the branch pipe valves in the initial water and heating well pipeline system to obtain the final water and heating well pipeline system.

[0011] Optionally, in a sixth implementation of the first aspect of the present invention, the step of configuring the branch pipe fittings and the branch pipe valves in the initial water and heating well piping system to obtain the final water and heating well piping system includes: determining the deployment location and corresponding deployment quantity of the branch pipe fittings and the branch pipe valves; and configuring the branch pipe fittings and the branch pipe valves into the initial water and heating well piping system according to the deployment location and the deployment quantity to obtain the final water and heating well piping system.

[0012] A second aspect of the present invention provides a water and heating well pipeline deployment device based on a BIM platform, comprising: an information acquisition module, configured to activate the auxiliary deployment device and acquire pipeline configuration information of the water and heating well pipeline system to be constructed, wherein the pipeline configuration information includes first configuration information, second configuration information, and third configuration information; a style construction module, configured to construct a branch pipe style corresponding to the system construction type and size based on the first configuration information; an effect judgment module, configured to determine the layout effect of the water and heating well pipeline system to be constructed based on the second configuration information, and to detect whether the layout effect meets the preset space installation conditions based on the branch pipe style; and a pipeline configuration module, configured, if satisfied, according to the third configuration information, the layout effect, and the branch pipe style, to configure the branch pipe related components of the water and heating well pipeline system to be constructed, thereby obtaining the water and heating well pipeline system.

[0013] Optionally, in a first implementation of the second aspect of the present invention, the style construction module includes: a first identification unit, used to identify the size value and system construction type of the water heating well pipeline system to be constructed according to the first configuration information; and a parameter assignment unit, used to select the branch pipe family parameter corresponding to the system construction type, and assign the branch pipe family parameter with the size value to obtain the corresponding branch pipe style.

[0014] Optionally, in a second implementation of the second aspect of the present invention, the effect judgment module includes: a second identification unit, used to parse the second configuration information to obtain a first branch pipe form parameter, a branch pipe quantity parameter, and a branch pipe spacing parameter; a structure determination unit, used to determine the spatial layout structure of the water and heating well pipeline system to be constructed based on the first branch pipe form parameter; and a structure adjustment unit, used to adjust the spatial layout structure based on the branch pipe quantity parameter and the branch pipe spacing parameter to obtain the layout effect of the water and heating well pipeline system to be constructed.

[0015] Optionally, in a third implementation of the second aspect of the present invention, the effect judgment module further includes: a parameter matching unit, used to match the second branch pipe form parameter corresponding to the water and heating well pipeline system to be constructed if the arrangement effect does not meet the preset space installation conditions; an effect updating unit, used to update the arrangement effect by replacing the first branch pipe form parameter with the second branch pipe form parameter; and a condition configuration unit, used to configure the final arrangement effect that meets the space installation conditions based on the update result.

[0016] Optionally, in the fourth implementation of the second aspect of the present invention, the effect judgment module further includes: a space calculation unit, used to calculate the pipe installation space of the water and heating well pipe corresponding to the arrangement effect based on the branch pipe style; a space comparison unit, used to compare the pipe installation space with the preset water and heating well net space, and detect whether the pipe installation space is within the preset range of the water and heating well net space according to the comparison result; and a condition determination unit, used to determine that the arrangement effect meets the preset space installation conditions if it is within the preset range of the water and heating well net space, and to determine that the arrangement effect does not meet the preset space installation conditions if it is not within the preset range of the water and heating well net space.

[0017] Optionally, in a fifth implementation of the second aspect of the present invention, the pipeline configuration module includes: an initial construction unit, configured to construct an initial water and heating well pipeline system corresponding to the water and heating well pipeline system to be constructed, based on the layout effect and the branch pipe style, if satisfied; a third identification unit, configured to determine the branch pipe accessories and branch pipe valves of the water and heating well pipeline system to be constructed based on the third configuration information; and a final construction unit, configured to configure the branch pipe accessories and branch pipe valves in the initial water and heating well pipeline system to obtain the final water and heating well pipeline system.

[0018] Optionally, in a sixth implementation of the second aspect of the present invention, the final construction unit includes: determining the deployment location and corresponding deployment quantity of the branch pipe fittings and the branch pipe valves; configuring the branch pipe fittings and the branch pipe valves into the initial water and heating well pipeline system according to the deployment location and the deployment quantity to obtain the final water and heating well pipeline system.

[0019] A third aspect of the present invention provides a water and heating well pipeline deployment device based on a BIM platform, comprising: a memory and at least one processor, wherein the memory stores instructions; the at least one processor invokes the instructions in the memory to cause the water and heating well pipeline deployment device based on the BIM platform to perform the various steps of the above-described water and heating well pipeline deployment method based on the BIM platform.

[0020] A fourth aspect of the present invention provides a computer-readable storage medium storing instructions that, when executed on a computer, cause the computer to perform the various steps of the above-described BIM platform-based plumbing and piping deployment method.

[0021] In the technical solution provided by this invention, an auxiliary deployment device is activated to obtain the pipe configuration information of the water and heating well pipeline system to be constructed. The pipe configuration information includes first configuration information, second configuration information, and third configuration information. Based on the first configuration information, a branch pipe style corresponding to the system construction type and size is constructed. Based on the second configuration information, the layout effect of the water and heating well pipeline system to be constructed is determined, and based on the branch pipe style, it is checked whether the layout effect meets the pre-set space installation conditions. If it does, then based on the third configuration information, the layout effect, and the branch pipe style, the branch pipe-related components of the water and heating well pipeline system to be constructed are configured to obtain the water and heating well pipeline system. Compared with the prior art, this application, based on a BIM platform, obtains the size parameters, branch pipe layout form, branch pipe quantity parameters, branch pipe spacing parameters, and related branch pipe accessory parameters of the water and heating well pipeline system to be constructed, thereby constructing the corresponding branch pipe style and branch pipe layout effect, and checking whether the layout style meets the pre-set space installation conditions. If it does, then based on the layout style, branch pipe style, and branch pipe accessory parameters, the corresponding water and heating well pipeline system is generated. It enables the design of water and heating well pipes in three dimensions, improves the accuracy of design drawings, and facilitates the design and review by designers and the construction by relevant construction personnel. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the first embodiment of the water and heating well pipeline deployment method based on the BIM platform in this invention.

[0023] Figure 2 This is a schematic diagram of the second embodiment of the water and heating well pipeline deployment method based on the BIM platform in this invention.

[0024] Figure 3 This is a schematic diagram of the third embodiment of the water and heating well pipeline deployment method based on the BIM platform in this invention.

[0025] Figure 4 This is a schematic diagram of an embodiment of the water and heating well pipeline deployment device based on the BIM platform in this invention.

[0026] Figure 5 This is a schematic diagram of another embodiment of the water and heating well pipeline deployment device based on the BIM platform in this invention;

[0027] Figure 6 This is a schematic diagram of an embodiment of a water and heating well pipeline deployment device based on a BIM platform according to the present invention. Detailed Implementation

[0028] This invention provides a method and related equipment for deploying plumbing systems based on a BIM platform. The auxiliary deployment device is activated to acquire pipe configuration information for the plumbing system to be constructed. This pipe configuration information includes first configuration information, second configuration information, and third configuration information. Based on the first configuration information, branch pipe patterns corresponding to the system's construction type and size are constructed. Based on the second configuration information, the layout effect of the plumbing system to be constructed is determined, and based on the branch pipe patterns, it is checked whether the layout effect meets the preset space installation conditions. If it does, then based on the third configuration information, the layout effect, and the branch pipe patterns, the branch pipe-related components of the plumbing system to be constructed are configured to obtain the plumbing system. This achieves high-precision three-dimensional design of plumbing systems.

[0029] The terms “first,” “second,” “third,” “fourth,” etc. (if present) in the specification, claims, and accompanying drawings of this invention are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms “comprising” or “having,” and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0030] For ease of understanding, the specific process of the embodiments of the present invention is described below. Please refer to [link / reference]. Figure 1 The first embodiment of the water and heating well pipeline deployment method based on the BIM platform in this invention includes:

[0031] 101. Start the auxiliary deployment device and obtain the pipeline configuration information of the water and heating well pipeline system to be constructed, wherein the pipeline configuration information includes first configuration information, second configuration information and third configuration information;

[0032] It is understood that the executing entity of this invention can be a water and heating well pipeline deployment device based on a BIM platform, or it can be a terminal or a server; the specific implementation is not limited here. This embodiment of the invention will be described using a server as an example.

[0033] The embodiments of this application can acquire and process relevant data based on artificial intelligence technology. Artificial intelligence (AI) refers to the theories, methods, technologies, and application systems that use digital computers or machines controlled by digital computers to simulate, extend, and expand human intelligence, perceive the environment, acquire knowledge, and use that knowledge to obtain optimal results.

[0034] Foundational technologies for artificial intelligence generally include sensors, dedicated AI chips, cloud computing, distributed storage, big data processing, operating / interactive systems, and mechatronics. AI software technologies mainly encompass computer vision, robotics, biometrics, speech processing, natural language processing, and machine learning / deep learning.

[0035] In this embodiment, the water and heating well piping system refers to the 3D design drawing of the branch pipe details of the water and heating well piping system. The piping configuration information refers to the parameter information required to construct the water and heating well piping system, such as the corresponding water and heating well piping type information, water and heating well piping size and elevation parameter information, branch pipe layout information, branch pipe quantity information, riser and branch pipe spacing information, branch pipe spacing information, and valve and accessory information, etc. The first configuration information refers to the water and heating well piping type information and water and heating well piping size and elevation parameter information. The second configuration information refers to the branch pipe layout information, branch pipe quantity information, riser and branch pipe spacing information, and branch pipe spacing information. The third configuration information refers to valve and accessory information, etc.

[0036] In practical applications, a BIM platform is used, which includes an auxiliary deployment device. This device prompts designers to input relevant design parameters of the water and heating well piping system to be constructed. The BIM platform then analyzes and processes the user-inputted information to obtain the piping configuration information of the water and heating well piping system to be constructed. The piping configuration information includes first configuration information, second configuration information, and third configuration information.

[0037] 102. Based on the first configuration information, construct the branch style corresponding to the system construction type and size;

[0038] In this embodiment, the branch pipe style refers to the basic branch pipe style required for the constructed water and heating well piping system. By using the first configuration parameter, the basic component branch pipe style required for the water and heating well piping system to be constructed is constructed. Subsequently, the corresponding branch pipe style can be selected according to the second configuration parameter to complete the water and heating well piping, thereby realizing rapid three-dimensional construction of the water and heating well piping.

[0039] In practical applications, based on the first configuration information, the size values ​​and system construction type of the water and heating well pipeline system to be constructed are identified; then, the branch family parameters corresponding to the system construction type are selected, and the size values ​​are used to assign values ​​to the branch family parameters to obtain the corresponding branch style.

[0040] 103. Based on the second configuration information, determine the layout effect of the water and heating well pipeline system to be constructed, and based on the branch pipe style, check whether the layout effect meets the installation conditions of the preset space.

[0041] In this embodiment, the layout effect refers to the basic three-dimensional effect of the water and heating well piping system after its construction is completed; the spatial installation conditions refer to the installation conditions in which the constructed water and heating well piping system can be installed in the corresponding well model. That is, before installing the constructed water and heating well piping system into the well model, a certain installation space needs to be added around the well of the water and heating well piping system (generally, the installation space is 150mm more than the pipe diameter on all four sides). After adding a certain space, the water and heating well piping system pipe can still be smoothly installed into the well model.

[0042] In practical applications, by parsing the second configuration information, the first branch pipe form parameters, branch pipe quantity parameters, and branch pipe spacing parameters are obtained. Then, based on the first branch pipe form parameters, the spatial layout structure of the plumbing system to be constructed is determined. Next, based on the branch pipe quantity parameters and branch pipe spacing parameters, the spatial layout structure is adjusted to obtain the layout effect of the plumbing system to be constructed. Then, based on the branch pipe style, the pipe installation space corresponding to the plumbing system of the plumbing system is calculated. Then, the pipe installation space is compared with the pre-set plumbing system net space, and based on the comparison results, it is checked whether the pipe installation space is within the pre-set range of the plumbing system net space. If it is within the pre-set range, the layout effect is determined to meet the pre-set space installation conditions; if it is not within the pre-set range, the layout effect is determined to not meet the pre-set space installation conditions. If the layout effect does not meet the pre-set space installation conditions, the second branch pipe form parameters corresponding to the plumbing system to be constructed are matched. Then, the second branch pipe form parameters are used to replace the first branch pipe form parameters to update the layout effect. Finally, based on the updated result, the final layout effect that meets the spatial installation conditions is configured.

[0043] 104. If satisfied, configure the relevant components of the branch pipe of the water heating well pipeline system to be constructed according to the third configuration information, layout effect and branch pipe style, and obtain the water heating well pipeline system.

[0044] In this embodiment, if the arrangement effect is determined to meet the spatial installation conditions, the required water and heating well pipeline system is constructed based on the obtained relevant parameter information. This ensures that the final constructed water and heating well pipeline system meets the design and installation requirements, thereby reducing engineering errors in the design. The constructed three-dimensional water and heating well pipeline system is beneficial for designers to design and review, improves the designers' drawing efficiency, and also makes it easier for subsequent construction personnel to install the water and heating well pipelines better and more intuitively based on the design drawings.

[0045] In practical applications, based on the layout effect and branch pipe style, an initial water and heating well piping system corresponding to the water and heating well piping system to be constructed is built; then, based on the third configuration information, the branch pipe accessories and branch pipe valves of the water and heating well piping system to be constructed are determined; then, the deployment positions and corresponding deployment quantities of the branch pipe accessories and branch pipe valves are determined; then, based on the deployment positions and deployment quantities, the branch pipe accessories and branch pipe valves are configured into the initial water and heating well piping system to obtain the final water and heating well piping system.

[0046] In this embodiment of the invention, an auxiliary deployment device is activated, and pipe configuration information of the plumbing system to be constructed is obtained. This pipe configuration information includes first configuration information, second configuration information, and third configuration information. Based on the first configuration information, a branch pipe style corresponding to the system construction type and size is constructed. Based on the second configuration information, the layout effect of the plumbing system to be constructed is determined, and based on the branch pipe style, it is checked whether the layout effect meets the pre-set space installation conditions. If it does, then based on the third configuration information, the layout effect, and the branch pipe style, the branch pipe-related components of the plumbing system to be constructed are configured to obtain the plumbing system. Compared to existing technologies, this application, based on a BIM platform, obtains the size parameters, branch pipe layout form, branch pipe quantity parameters, branch pipe spacing parameters, and related branch pipe accessory parameters of the plumbing system to be constructed, thereby constructing the corresponding branch pipe style and branch pipe layout effect, and checking whether the layout style meets the pre-set space installation conditions. If it does, then based on the layout style, branch pipe style, and branch pipe accessory parameters, the corresponding plumbing system is generated. It enables the design of water and heating well pipes in three dimensions, improves the accuracy of design drawings, and facilitates the design and review by designers and the construction by relevant construction personnel.

[0047] Please see Figure 2 The second embodiment of the water and heating well pipeline deployment method based on the BIM platform in this invention includes:

[0048] 201. Start the auxiliary deployment device and obtain the pipeline configuration information of the water and heating well pipeline system to be constructed, wherein the pipeline configuration information includes first configuration information, second configuration information and third configuration information;

[0049] 202. Based on the first configuration information, identify the dimensions and system construction type of the water and heating well piping system to be constructed;

[0050] In this embodiment, the types of water and heating well pipes include heating water supply systems and heating return water systems.

[0051] In practical applications, based on the first configuration information obtained above, the BIM platform is used to identify the information of the first configuration information, thereby obtaining the size values ​​of the water and heating well pipeline system and the system construction type.

[0052] 203. Select the branch family parameters corresponding to the system construction type, and assign values ​​to the branch family parameters using size values ​​to obtain the corresponding branch style;

[0053] In this embodiment, the branch family parameters refer to the general design parameters in the BIM platform. By setting the relevant family parameters, the three-dimensional model of the graphic can be constructed. The family parameters include annotation families and outline families, loadable families, building families, structural families, and MEP families.

[0054] In practical applications, based on the system construction type identified above, the corresponding branch family parameters for the branch type are selected, and then the branch family parameters are assigned values ​​using the aforementioned size values ​​to generate the corresponding branch pattern.

[0055] 204. Based on the second configuration information, determine the layout effect of the water and heating well pipeline system to be constructed, and based on the branch pipe style, check whether the layout effect meets the installation conditions of the preset space.

[0056] 205. If satisfied, construct the initial water and heating well piping system corresponding to the water and heating well piping system to be constructed, based on the layout effect and branch pipe style.

[0057] In this embodiment, if the above-mentioned layout effect meets the pre-set space installation conditions, then based on the BIM platform, the layout effect and branch pipe style are used to construct the initial water and heating well pipeline system corresponding to the water and heating well pipeline system to be constructed.

[0058] 206. Based on the third configuration information, determine the branch pipe fittings and branch pipe valves of the water and heating well piping system to be constructed;

[0059] In this embodiment, the branch valve refers to the valve used to control the on / off state of the hot water well pipeline; the branch accessories refer to other components of the hot water well pipeline system, such as pipe supports.

[0060] In practical applications, based on the third configuration information, the BIM platform is used to identify the third configuration information, thereby determining the branch pipe accessories and branch pipe valves of the water and heating well piping system to be constructed.

[0061] 207. Determine the deployment location and corresponding quantity of branch pipe accessories and branch pipe valves;

[0062] In this embodiment, based on the determined branch pipe accessories and branch pipe valves, the deployment location and corresponding deployment quantity of the branch pipe accessories and branch pipe valves are further determined.

[0063] 208. Based on the deployment location and quantity, configure the branch pipe accessories and branch pipe valves into the initial water and heating well piping system to obtain the final water and heating well piping system.

[0064] In this embodiment, based on the deployment location and quantity information mentioned above, the branch pipe accessories and branch pipe valves at the corresponding locations are combined into the initial water and heating well piping system until all branch pipe accessories and branch pipe valves are configured to obtain the final water and heating well piping system.

[0065] In this embodiment of the invention, based on the first configuration information, the dimensions and system construction type of the plumbing system to be constructed are identified; the branch pipe family parameters corresponding to the system construction type are selected, and the dimensions are used to assign values ​​to the branch pipe family parameters to obtain the corresponding branch pipe style; if satisfied, the initial plumbing system corresponding to the plumbing system to be constructed is constructed according to the layout effect and branch pipe style; based on the third configuration information, the branch pipe accessories and branch pipe valves of the plumbing system to be constructed are determined; the deployment positions and corresponding deployment quantities of the branch pipe accessories and branch pipe valves are determined; based on the deployment positions and deployment quantities, the branch pipe accessories and branch pipe valves are configured into the initial plumbing system to obtain the final plumbing system. Compared with the prior art, this application generates the corresponding branch pipe type of the system type by selecting the corresponding family parameters and dimension parameters, and then uses the branch pipe accessory information and branch pipe valve information in the third configuration parameters to construct the final plumbing system, realizing the three-dimensional design of the plumbing system using the BIM platform, greatly improving the design efficiency and accuracy of the plumbing system design drawings.

[0066] Please see Figure 3 The third embodiment of the water and heating well pipeline deployment method based on the BIM platform in this invention includes:

[0067] 301. Start the auxiliary deployment device and obtain the pipeline configuration information of the water and heating well pipeline system to be constructed, wherein the pipeline configuration information includes first configuration information, second configuration information and third configuration information;

[0068] 302. Based on the first configuration information, construct the branch style corresponding to the system construction type and size;

[0069] 303. Parse the second configuration information to obtain the first branch pipe type parameters, branch pipe quantity parameters, and branch pipe spacing parameters;

[0070] In this embodiment, the first branch pipe type parameter refers to branch pipes of different types of water heating well pipes, such as "I" type and "L" type water heating well branch pipes; the branch pipe spacing parameter refers to the spacing between the branch pipe and the riser and the spacing between the branch pipes.

[0071] In practical applications, based on the second configuration information mentioned above, the BIM platform is used to parse the second configuration information to obtain the first branch pipe type parameters, branch pipe quantity parameters, and branch pipe spacing parameters.

[0072] 304. Based on the parameters of the first branch pipe, determine the spatial layout structure of the water and heating well piping system to be constructed;

[0073] In this embodiment, the spatial arrangement structure refers to the three-dimensional arrangement structure of the basic water and heating well pipeline corresponding to the type of branch pipes composed of corresponding branch pipes.

[0074] In practical applications, based on the first branch pipe type parameters mentioned above, the spatial layout structure corresponding to the water and heating well piping system to be constructed is determined using the BIM platform.

[0075] 305. Based on the parameters of the number of branch pipes and the spacing between branch pipes, the spatial layout structure is adjusted to obtain the layout effect of the water and heating well pipeline system to be constructed.

[0076] In this embodiment, based on the above-mentioned branch pipe quantity parameters and branch pipe spacing parameters, the arrangement effect of the above-mentioned spatial layout structure branch pipe combination and spacing is obtained by adjusting the branch pipe quantity parameters and branch pipe spacing parameters.

[0077] 306. Based on the branch pipe style, calculate the pipe installation space corresponding to the water and heating well pipes for the layout effect;

[0078] In this embodiment, based on the above-mentioned branch pipe style, the origin of the basic space is determined, and then the three-dimensional spatial calculation algorithm of the BIM platform is used to calculate the pipe installation space size of the water and heating well pipes corresponding to the layout effect in the design space.

[0079] 307. Compare the pipe installation space with the pre-set net space of the water and heating well, and based on the comparison results, check whether the pipe installation space is within the pre-set range of the net space of the water and heating well;

[0080] In this embodiment, based on the above-mentioned pipe installation space and the preset water and heating well net space, it is compared whether the pipe installation space is smaller than the preset water and heating well static space, and then based on the space comparison result, it is detected whether the pipe installation space is within the preset range of the water and heating well net space.

[0081] 308. If the layout is within the pre-defined area of ​​the water and heating well's net space, then the layout effect must meet the pre-defined space's installation conditions.

[0082] In this embodiment, if the pipe installation space is within the preset range of the net space of the water heating well, the layout effect is determined to meet the installation conditions of the preset space, and the water heating well pipe of the required system type can be generated using the layout effect and other parameters.

[0083] 309. If it is not within the pre-set range of the net space of the water heating well, then the layout effect does not meet the installation conditions of the pre-set space.

[0084] In this embodiment, if the pipe installation space is not within the preset range of the net space of the water heating well, it is determined that the layout effect does not meet the preset space installation conditions, and it is necessary to re-determine the corresponding intuitive system parameters in order to construct the required layout effect.

[0085] 310. If the layout does not meet the installation conditions of the preset space, then match the second branch pipe form parameters corresponding to the water and heating well piping system to be constructed.

[0086] In this embodiment, if the layout effect does not meet the preset space installation conditions, the second branch pipe form parameters corresponding to the water and heating well pipeline system to be constructed are matched according to the other branch pipe form parameters input by the user or the other branch pipe form parameters in the BIM platform.

[0087] 311. Update the layout effect by replacing the first branch pipe's form parameters with the second branch pipe's form parameters;

[0088] In this embodiment, the second branch pipe form parameters obtained by matching are used to replace the first branch pipe form parameters to update the layout effect. The second branch pipe form parameters, the number of branch pipes, and the spacing between branch pipes are used to update the corresponding layout effect.

[0089] 312. Based on the updated results, configure the final layout to meet the spatial installation conditions;

[0090] In this embodiment, based on the above update results, the final arrangement effect that satisfies the space installation conditions is obtained until the arrangement effect obtained by updating the second branch pipe form parameters meets the preset space installation conditions.

[0091] 313. If satisfied, configure the relevant components of the branch pipe of the water heating well pipeline system to be constructed according to the third configuration information, layout effect and branch pipe style, and obtain the water heating well pipeline system.

[0092] In this embodiment of the invention, the second configuration information is parsed to obtain the first branch pipe form parameters, branch pipe quantity parameters, and branch pipe spacing parameters; based on the first branch pipe form parameters, the spatial layout structure of the water and heating well pipeline system to be constructed is determined; based on the branch pipe quantity parameters and branch pipe spacing parameters, the spatial layout structure is adjusted to obtain the layout effect of the water and heating well pipeline system to be constructed; based on the branch pipe style, the pipe installation space of the water and heating well pipeline corresponding to the layout effect is calculated; the pipe installation space is compared with the preset water and heating well net space, and based on the comparison result, it is detected whether the pipe installation space is within the preset range of the water and heating well net space; if it is within the preset range of the water and heating well net space, it is determined that the layout effect meets the preset space installation conditions; if it is not within the preset range of the water and heating well net space, it is determined that the layout effect does not meet the preset space installation conditions; if the layout effect does not meet the preset space installation conditions, the second branch pipe form parameters corresponding to the water and heating well pipeline system to be constructed are matched; the second branch pipe form parameters are used to replace the first branch pipe form parameters to update the layout effect; based on the updated result, the final layout effect that meets the spatial installation conditions is configured. Compared with existing technologies, this application utilizes the first branch pipe type parameters, branch pipe quantity parameters, and branch pipe spacing parameters in the second accessory information to construct an arrangement effect that meets the pre-set space installation conditions. If the conditions are not met, new branch pipe type parameters are used to construct an arrangement effect that meets the conditions. This ensures that the water and heating well pipeline system constructed using the arrangement effect meets the engineering design and installation requirements, and obtains the required three-dimensional design drawing of the water and heating well pipeline system more efficiently and accurately.

[0093] The above describes the water and heating well pipeline deployment method based on a BIM platform in the embodiments of the present invention. The following describes the water and heating well pipeline deployment device based on a BIM platform in the embodiments of the present invention. Please refer to [link / reference]. Figure 4 One embodiment of the water and heating well pipeline deployment device based on the BIM platform in this invention includes:

[0094] The information acquisition module 401 is used to start the auxiliary deployment device and acquire the pipeline configuration information of the water and heating well pipeline system to be constructed, wherein the pipeline configuration information includes first configuration information, second configuration information, and third configuration information;

[0095] The style construction module 402 is used to construct the branch style corresponding to the system construction type and size based on the first configuration information;

[0096] The effect judgment module 403 is used to determine the layout effect of the water and heating well pipeline system to be constructed according to the second configuration information, and to detect whether the layout effect meets the preset space installation conditions based on the branch pipe style.

[0097] The pipeline configuration module 404 is used to configure the branch pipe related components of the water and heating well pipeline system to be constructed according to the third configuration information, the layout effect and the branch pipe style if the conditions are met, so as to obtain the water and heating well pipeline system.

[0098] In this embodiment of the invention, an auxiliary deployment device is activated, and pipe configuration information of the plumbing system to be constructed is obtained. This pipe configuration information includes first configuration information, second configuration information, and third configuration information. Based on the first configuration information, a branch pipe style corresponding to the system construction type and size is constructed. Based on the second configuration information, the layout effect of the plumbing system to be constructed is determined, and based on the branch pipe style, it is checked whether the layout effect meets the pre-set space installation conditions. If it does, then based on the third configuration information, the layout effect, and the branch pipe style, the branch pipe-related components of the plumbing system to be constructed are configured to obtain the plumbing system. Compared to existing technologies, this application, based on a BIM platform, obtains the size parameters, branch pipe layout form, branch pipe quantity parameters, branch pipe spacing parameters, and related branch pipe accessory parameters of the plumbing system to be constructed, thereby constructing the corresponding branch pipe style and branch pipe layout effect, and checking whether the layout style meets the pre-set space installation conditions. If it does, then based on the layout style, branch pipe style, and branch pipe accessory parameters, the corresponding plumbing system is generated. It enables the design of water and heating well pipes in three dimensions, improves the accuracy of design drawings, and facilitates the design and review by designers and the construction by relevant construction personnel.

[0099] Please see Figure 5 Another embodiment of the water and heating well pipeline deployment device based on the BIM platform in this invention includes:

[0100] The information acquisition module 401 is used to start the auxiliary deployment device and acquire the pipeline configuration information of the water and heating well pipeline system to be constructed, wherein the pipeline configuration information includes first configuration information, second configuration information, and third configuration information;

[0101] The style construction module 402 is used to construct the branch style corresponding to the system construction type and size based on the first configuration information;

[0102] The effect judgment module 403 is used to determine the layout effect of the water and heating well pipeline system to be constructed according to the second configuration information, and to detect whether the layout effect meets the preset space installation conditions based on the branch pipe style.

[0103] The pipeline configuration module 404 is used to configure the branch pipe related components of the water and heating well pipeline system to be constructed according to the third configuration information, the layout effect and the branch pipe style if the conditions are met, so as to obtain the water and heating well pipeline system.

[0104] Furthermore, the style construction module 402 includes:

[0105] The first identification unit 4021 is used to identify the size values ​​and system construction type of the water heating well pipeline system to be constructed based on the first configuration information;

[0106] The parameter assignment unit 4022 is used to select the branch family parameters corresponding to the system construction type, and assign the branch family parameters with the size values ​​to obtain the corresponding branch style.

[0107] Furthermore, the effect judgment module 403 includes:

[0108] The second identification unit 4031 is used to parse the second configuration information to obtain the first branch pipe type parameter, branch pipe quantity parameter and branch pipe spacing parameter;

[0109] The structure determination unit 4032 is used to determine the spatial layout structure of the water and heating well pipeline system to be constructed based on the first branch pipe form parameters.

[0110] The structural adjustment unit 4033 is used to adjust the spatial layout structure based on the branch pipe quantity parameters and branch pipe spacing parameters to obtain the layout effect of the water and heating well pipeline system to be constructed.

[0111] Furthermore, the effect judgment module 403 also includes:

[0112] The parameter matching unit 4034 is used to match the second branch pipe form parameters corresponding to the water and heating well pipeline system to be constructed if the arrangement effect does not meet the preset space installation conditions.

[0113] The effect update unit 4035 is used to update the arrangement effect by replacing the first branch pipe form parameter with the second branch pipe form parameter;

[0114] The condition configuration unit 4036 is used to configure the final arrangement effect that satisfies the spatial installation conditions based on the updated results.

[0115] Furthermore, the effect judgment module 403 also includes:

[0116] The spatial calculation unit 4037 is used to calculate the pipe installation space of the water and heating well pipe corresponding to the layout effect based on the branch pipe style.

[0117] The space comparison unit 4038 is used to compare the pipe installation space with the preset net space of the water and heating well, and to detect whether the pipe installation space is within the preset range of the net space of the water and heating well based on the comparison result.

[0118] The condition determination unit 4039 is used to determine that if the arrangement effect is within the preset range of the net space of the water and heating well, the arrangement effect meets the preset space installation conditions; if it is not within the preset range of the net space of the water and heating well, the arrangement effect does not meet the preset space installation conditions.

[0119] Furthermore, the pipeline configuration module 404 includes:

[0120] The initial construction unit 4041 is used to construct the initial water and heating well pipeline system corresponding to the water and heating well pipeline system to be constructed, based on the layout effect and the branch pipe style, if the conditions are met.

[0121] The third identification unit 4042 is used to determine the branch pipe accessories and branch pipe valves of the water heating well pipeline system to be constructed based on the third configuration information.

[0122] The final construction unit 4043 is used to configure the branch pipe fittings and the branch pipe valves in the initial water and heating well piping system to obtain the final water and heating well piping system.

[0123] Furthermore, the final building unit 4043 includes:

[0124] Determine the deployment location and corresponding quantity of the branch pipe accessories and the branch pipe valves; based on the deployment location and the deployment quantity, configure the branch pipe accessories and the branch pipe valves into the initial water and heating well piping system to obtain the final water and heating well piping system.

[0125] In this embodiment of the invention, by acquiring the first, second, and third configuration information required for constructing a plumbing system, the corresponding branch pipe style and layout effect are determined. The layout effect is then tested, and any layout that does not meet the pre-defined space installation conditions is reconstructed to meet those conditions. Finally, the plumbing system of the corresponding system type is constructed using the branch pipe style, layout effect, branch pipe valves, and accessories. This application considers the design and installation conditions during the construction of plumbing systems, which not only improves the design efficiency of plumbing systems but also reduces common engineering errors in design, resulting in a more accurate and intuitive three-dimensional design drawing.

[0126] above Figure 4 and Figure 5 The water and heating well pipeline deployment device based on the BIM platform in this embodiment of the invention will be described in detail from the perspective of modular functional entities. The water and heating well pipeline deployment equipment based on the BIM platform in this embodiment of the invention will be described in detail from the perspective of hardware processing.

[0127] Figure 6This is a schematic diagram of a BIM-based plumbing and piping deployment device 600 provided in an embodiment of the present invention. The BIM-based plumbing and piping deployment device 600 can vary significantly due to different configurations or performance characteristics. It may include one or more central processing units (CPUs) 610 (e.g., one or more processors) and a memory 620, and one or more storage media 630 (e.g., one or more mass storage devices) storing application programs 633 or data 632. The memory 620 and storage media 630 can be temporary or persistent storage. The program stored in the storage media 630 may include one or more modules (not shown in the diagram), each module including a series of instruction operations on the BIM-based plumbing and piping deployment device 600. Furthermore, the processor 610 may be configured to communicate with the storage media 630 and execute the series of instruction operations in the storage media 630 on the BIM-based plumbing and piping deployment device 600.

[0128] The BIM-based plumbing deployment equipment 600 may also include one or more power supplies 640, one or more wired or wireless network interfaces 650, one or more input / output interfaces 660, and / or one or more operating systems 631, such as Windows Server, Mac OSX, Unix, Linux, FreeBSD, etc. Those skilled in the art will understand that... Figure 6 The illustrated structure of the water and heating well piping deployment equipment based on the BIM platform does not constitute a limitation on the water and heating well piping deployment equipment based on the BIM platform. It may include more or fewer components than illustrated, or combine certain components, or have different component arrangements.

[0129] The present invention also provides a water and heating well pipeline deployment device based on a BIM platform. The computer device includes a memory and a processor. The memory stores computer-readable instructions. When the computer-readable instructions are executed by the processor, the processor performs each step of the water and heating well pipeline deployment method based on the BIM platform in the above embodiments.

[0130] The present invention also provides a computer-readable storage medium, which can be a non-volatile computer-readable storage medium or a volatile computer-readable storage medium, wherein the computer-readable storage medium stores instructions that, when the instructions are executed on a computer, cause the computer to perform each step of the BIM platform-based plumbing pipeline deployment method.

[0131] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems, devices, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here.

[0132] If the integrated unit is implemented as a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.

[0133] This application can be used in a wide variety of general-purpose or special-purpose computer system environments or configurations. Examples include: personal computers, server computers, handheld or portable devices, tablet devices, multiprocessor systems, microprocessor-based systems, set-top boxes, programmable consumer electronics, network PCs, minicomputers, mainframe computers, and distributed computing environments including any of the above systems or devices. This application can be described in the general context of computer-executable instructions executed by a computer, such as program modules. Generally, program modules include routines, programs, objects, components, data structures, etc., that perform specific tasks or implement specific abstract data types. This application can also be practiced in distributed computing environments where tasks are performed by remote processing devices connected via a communication network. In distributed computing environments, program modules can reside in local and remote computer storage media, including storage devices.

[0134] The above-described embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A method for deploying water heating well pipes based on a BIM platform, characterized in that, The BIM platform comprises an auxiliary deployment device, and the BIM platform-based water heating well pipeline deployment method comprises the following steps: Start the auxiliary deployment device, and obtain pipeline configuration information of a water heating well pipeline system to be constructed, wherein the pipeline configuration information comprises first configuration information, second configuration information and third configuration information; According to the first configuration information, a branch pipe pattern corresponding to a system construction type and a size is constructed; The second configuration information is parsed to obtain first branch pipe form parameters, branch pipe quantity parameters and branch pipe spacing parameters; According to the first branch pipe form parameters, a spatial arrangement structure of the water heating well pipeline system to be constructed is determined; Based on the branch pipe quantity parameters and the branch pipe spacing parameters, the spatial arrangement structure is adjusted to obtain an arrangement effect of the water heating well pipeline system to be constructed; Based on the branch pipe pattern, it is detected whether the arrangement effect meets a preset spatial installation condition; If the arrangement effect meets the preset spatial installation condition, then according to the third configuration information, the arrangement effect and the branch pipe pattern, a branch pipe related component of the water heating well pipeline system to be constructed is configured to obtain a water heating well pipeline system; If the arrangement effect does not meet the preset spatial installation condition, then second branch pipe form parameters corresponding to the water heating well pipeline system to be constructed are matched; the second branch pipe form parameters are used to replace the first branch pipe form parameters to update the arrangement effect; based on the updated result, a final arrangement effect meeting the spatial installation condition is configured.

2. The BIM platform-based hydronic piping deployment method of claim 1, wherein, According to the first configuration information, a branch pipe pattern corresponding to a system construction type and a size is constructed, which comprises the following steps: According to the first configuration information, a size value and a system construction type of the water heating well pipeline system to be constructed are identified; The branch pipe family parameters corresponding to the system construction type are selected, and the size value is used to assign values to the branch pipe family parameters to obtain a corresponding branch pipe pattern.

3. The BIM platform-based hydronic piping deployment method of claim 1, wherein, Based on the branch pipe pattern, it is detected whether the arrangement effect meets a preset spatial installation condition, which comprises the following steps: Based on the branch pipe pattern, a pipeline installation space of the water heating well pipeline corresponding to the arrangement effect is calculated; The pipeline installation space and a preset water heating well net space are compared, and according to the comparison result, it is detected whether the pipeline installation space is within the preset range of the water heating well net space; If yes, it is determined that the arrangement effect meets the preset spatial installation condition; If no, it is determined that the arrangement effect does not meet the preset spatial installation condition.

4. The BIM platform-based hydronic piping deployment method according to any one of claims 1-3, wherein, According to the third configuration information, the arrangement effect and the branch pipe pattern, a branch pipe related component of the water heating well pipeline system to be constructed is configured to obtain a water heating well pipeline system, which comprises the following steps: According to the arrangement effect and the branch pipe pattern, an initial water heating well pipeline system corresponding to the water heating well pipeline system to be constructed is constructed; According to the third configuration information, branch pipe accessories and branch pipe valves of the water heating well pipeline system to be constructed are determined; The branch pipe accessories and the branch pipe valves are configured in the initial water heating well pipeline system to obtain a final water heating well pipeline system.

5. The BIM platform-based hydronic piping deployment method of claim 4, wherein, The branch pipe accessories and the branch pipe valves are configured in the initial water heating well pipeline system to obtain a final water heating well pipeline system, including: determining the deployment positions and corresponding deployment quantities of the branch pipe accessories and the branch pipe valves; configuring the branch pipe accessories and the branch pipe valves in the initial water heating well pipeline system according to the deployment positions and the deployment quantities to obtain a final water heating well pipeline system.

6. A water well pipe deployment device based on a BIM platform, characterized in that, The BIM platform comprises an auxiliary deployment device, and the BIM platform-based water heating well pipeline deployment device comprises: an information acquisition module configured to start the auxiliary deployment device and acquire pipeline configuration information of a water heating well pipeline system to be constructed, wherein the pipeline configuration information comprises first configuration information, second configuration information and third configuration information; a pattern construction module configured to construct a branch pipe pattern corresponding to a system construction type and a size according to the first configuration information; an effect judgment module configured to analyze the second configuration information to obtain first branch pipe form parameters, branch pipe quantity parameters and branch pipe spacing parameters, determine a spatial arrangement structure of the water heating well pipeline system to be constructed according to the first branch pipe form parameters, adjust the spatial arrangement structure based on the branch pipe quantity parameters and the branch pipe spacing parameters to obtain an arrangement effect of the water heating well pipeline system to be constructed, and detect whether the arrangement effect meets preset spatial installation conditions based on the branch pipe pattern; a pipeline configuration module configured to, if the arrangement effect meets the preset spatial installation conditions, configure branch pipe related components of the water heating well pipeline system to be constructed according to the third configuration information, the arrangement effect and the branch pipe pattern to obtain a water heating well pipeline system, and if the arrangement effect does not meet the preset spatial installation conditions, match second branch pipe form parameters corresponding to the water heating well pipeline system to be constructed, update the arrangement effect by replacing the first branch pipe form parameters with the second branch pipe form parameters, and configure a final arrangement effect meeting the spatial installation conditions based on an updated result.

7. A BIM platform-based water well pipe deployment apparatus, characterized by, The BIM platform-based water heating well pipeline deployment device comprises a memory and at least one processor, and the memory stores instructions; The at least one processor invokes the instructions in the memory to enable the BIM platform-based water heating well pipeline deployment device to perform each step of the BIM platform-based water heating well pipeline deployment method according to any one of claims 1-5.

8. A computer-readable storage medium having stored thereon instructions, the computer-readable storage medium comprising: The instructions are executed by the processor to implement each step of the BIM platform-based water heating well pipeline deployment method according to any one of claims 1-5.

Citation Information

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