Engineering quality digital detection system and method based on building information model

Through the BIM-based digital inspection system for engineering quality, the existing inspection methods are solved, an efficient and fast inspection process is achieved, and the accuracy and efficiency of inspection are improved.

CN120106689AInactive Publication Date: 2025-06-06GUANGZHOU TESTING CENTRE OF CONSTRUCTION QUALITY AND SAFETY CO LTD +2

Patent Information

Application Number
CN202510591789.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2025-06-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing engineering quality inspection methods are time-consuming and labor-intensive, and there are repeated mechanical work and human omissions, which leads to inefficient and unfast inspection process.

Method used

The digital engineering quality inspection system based on building information model (BIM) is adopted, including information management module, solution generation module, data acquisition module and search module, to realize the generation and data acquisition of quality inspection schemes through the BIM model, reduce duplicate work and improve detection efficiency.

Benefits of technology

It realizes efficient and fast engineering quality inspection, reduces repetitive mechanical work during the inspection process, improves the accuracy and efficiency of inspection, and realizes the digital management of the entire process of inspection projects.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention relates to the technical field of engineering quality detection, and particularly discloses an engineering quality digital detection system and method based on a building information model.In the detection system, an information management module is used for obtaining authentication information of responsible personnel and field detection equipment and conducting authenticity verification; the scheme generation module imports and identifies building information contained in the BIM model, and generates a quality detection scheme according to the building information; the data acquisition module acquires field detection data corresponding to detection positions and detection parameters, and in the detection process, the retrieval module retrieves corresponding contents from the BIM model according to retrieval requirements and displays the corresponding contents to assist the detection work. According to the method, digital management and the BIM model are closely combined, and the engineering quality detection work is realized based on the BIM model, so that the repeated mechanical work in the detection process is greatly reduced, the paperless work of the whole process of the detection process is realized, and the engineering quality detection work becomes more efficient, faster and more accurate.
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Description

Technical Field

[0001] The present invention relates to the technical field of engineering quality detection, and in particular to a digital engineering quality detection system and method based on a building information model. Background Art

[0002] At present, there is a lack of research results on the combination of engineering quality inspection and BIM technology. Inspection work runs through the entire cycle of the entire project, from raw material inspection, foundation inspection to superstructure inspection, decoration inspection, etc., all of which are coordinated with the construction links. The lack of inspection information in the digital management of the project is imperfect. The current mainstream engineering quality inspection method is still that on-site workers take paper drawings to the corresponding locations for inspection, fill in the inspection data in the paper form, and then the office staff inputs the data into the machine to form electronic data for digital management of the project. However, this method of engineering quality inspection is more time-consuming and labor-intensive, and there are many repetitive mechanical tasks. It is also prone to human omissions, which leads to various problems in the inspection or management process. This is not an efficient and fast way of working.

[0003] Therefore, how to realize an efficient, fast and digital detection solution is an urgent problem to be solved. Summary of the invention

[0004] In view of the technical problems in the prior art, the present invention provides a digital detection system and method for engineering quality based on building information model.

[0005] In a first aspect, the present invention provides a digital engineering quality detection system based on a building information model, the detection system comprising an information management module, a solution generation module, a data acquisition module and a retrieval module; wherein:

[0006] The information management module is connected to the solution generation module and the data acquisition module; the information management module is used to store the personnel information of the responsible personnel and the equipment information of the on-site detection equipment. The information management module is provided with an information verification port for obtaining the authentication information of the responsible personnel and the on-site detection equipment and performing authenticity verification; the responsible personnel have corresponding responsibilities and authorities;

[0007] The scheme generation module is connected to the information management module, the data acquisition module, and the retrieval module; the scheme generation module is used to import the BIM model and identify the building information contained in the BIM model, and generate a quality inspection scheme according to a preset scheme generation strategy and the building information; the quality inspection scheme at least includes an inspection location, inspection parameters, and responsible personnel;

[0008] The data acquisition module is connected to the information management module, the solution generation module, and the retrieval module; the data acquisition module is provided with a data acquisition port for acquiring on-site detection data corresponding to the detection position and the detection parameters; the on-site detection data is acquired by the responsible person inputting the data acquisition port after the authenticity of the authentication information is verified by the information management module, and / or is acquired by the on-site detection equipment sending the data acquisition port;

[0009] The retrieval module is connected to the solution generation module and the data acquisition module; the retrieval module is used to retrieve corresponding content from the BIM model for display according to the retrieval requirements input by the responsible personnel, and, according to the on-site detection data collection progress of the data acquisition module, automatically retrieve part of the BIM model corresponding to the detection location and detection parameters from the BIM model for display.

[0010] Furthermore, the detection system further comprises a sampling module, and the sampling module is connected with the information management module, the scheme generation module, and the data acquisition module;

[0011] The scheme generation module is further used to generate a sampling scheme according to the scheme generation strategy and the building information; the sampling scheme includes sampling objects, sampling locations and responsible personnel;

[0012] The sampling module is used to generate unique corresponding sample identification codes for different sampling objects at different sampling locations, and to print the sample identification codes according to the printing instructions, and is also used to identify the sample identification codes on the sample for sampling and match them with the generated sample identification codes; the sample for sampling is collected on site by the responsible personnel;

[0013] The data acquisition module is also used to obtain the sample test results of the sample after the sampling module successfully matches the sample identification code generated and the sample identification code on the sample.

[0014] Furthermore, the detection system also includes an original record generation module, which is connected to the information management module, solution generation module, data acquisition module, and sampling module; the original record generation module is used to summarize the relevant information of the information management module, solution generation module, data acquisition module, and sampling module during the detection process, generate an electronic original record, and have the corresponding responsible personnel sign it electronically.

[0015] Furthermore, the detection system also includes a data processing module, which is connected to the data acquisition module; the data processing module is used to compare the on-site detection data and sample test results obtained by the data acquisition module with preset design requirements to evaluate whether the on-site detection data and sample test results meet the design requirements, and generate an abnormal notification sheet based on the on-site detection data and sample test results that do not meet the design requirements.

[0016] Furthermore, the detection system also includes a report generation module, which is connected to the data processing module; the report generation module is used to generate a project quality inspection report based on a preset inspection report template and the on-site inspection data and sample test results.

[0017] Furthermore, the detection system also includes an electronic archiving module, which is connected to the solution generation module and the data acquisition module; the electronic archiving module is used to combine the on-site detection data and sample test results into the BIM model, and archive the BIM model containing the on-site detection data and sample test results as electronic data to a cloud server.

[0018] Furthermore, the detection system also includes a query display module; the query display module is connected to the electronic archiving module; the query display module is used to obtain query instructions, and query and display relevant information matching the query instruction dimensions in the cloud server.

[0019] Furthermore, the detection system also includes a quality supervision module, which is connected to the data acquisition module; the quality supervision module is used to generate supervision requirements for the detection process, obtain the completion certificate of the supervision task of the responsible personnel during the detection process, and evaluate the completion certificate of the supervision task to generate a supervision record.

[0020] In a second aspect, the present invention provides a digital detection method for engineering quality based on a building information model, the method is implemented based on the aforementioned detection system, and the method comprises the steps of:

[0021] Store the personnel information of responsible personnel and the equipment information of on-site testing equipment;

[0022] Importing a BIM model and identifying building information contained in the BIM model;

[0023] Generate a quality inspection plan according to a preset plan generation strategy and the building information; the quality inspection plan at least includes an inspection location, inspection parameters and responsible personnel;

[0024] Obtain the authentication information of the responsible personnel and on-site testing equipment and verify its authenticity; after the authenticity of the authentication information is verified,

[0025] Collecting on-site detection data corresponding to the detection position and the detection parameters;

[0026] Also includes:

[0027] Generate a sampling plan according to the plan generation strategy and the building information; the sampling plan includes sampling objects, sampling locations and responsible personnel;

[0028] Generate unique corresponding sample identification codes for different sampling objects at different sampling locations, and identify the sample identification codes on the sample samples and match them with the generated sample identification codes; after the generated sample identification codes are successfully matched with the sample identification codes on the sample samples,

[0029] Obtaining sample test results of the sample being randomly inspected;

[0030] Also includes:

[0031] According to the search requirements input by the responsible personnel, the corresponding content is retrieved from the BIM model for display; and according to the progress of on-site inspection data collection, part of the BIM model corresponding to the inspection location and inspection parameters is automatically retrieved from the BIM model for display.

[0032] Furthermore, the detection method also includes:

[0033] Summarize the relevant information during the testing process, generate electronic original records, and have the corresponding responsible personnel sign electronically;

[0034] and comparing the on-site inspection data and sample test results with preset design requirements to evaluate whether the on-site inspection data and sample test results meet the design requirements, and generating an abnormality notification sheet based on the on-site inspection data and sample test results that do not meet the design requirements;

[0035] And, generate a project quality inspection report based on the preset inspection report template and the on-site inspection data and sample test results.

[0036] The present invention discloses a digital engineering quality detection system and method based on building information model. The detection system comprises an information management module, a scheme generation module, a data acquisition module and a retrieval module. The information management module stores the personnel information of responsible personnel and the equipment information of on-site detection equipment. The information management module is provided with an information verification port for obtaining the authentication information of the responsible personnel and the on-site detection equipment and performing authenticity verification. The scheme generation module imports the BIM model and identifies the building information contained in the BIM model, and generates a quality detection scheme according to a preset scheme generation strategy and building information. The data acquisition module is provided with a data acquisition port, and can collect on-site detection data corresponding to the detection position and detection parameters. During the detection process, the retrieval module retrieves the corresponding content from the BIM model according to the retrieval requirements input by the responsible personnel for display, and, according to the on-site detection data collection progress, automatically retrieves the partial BIM model corresponding to the detection position and detection parameters from the BIM model for display, so as to assist the detection work. The detection system and detection method of the present invention closely combine digital management with BIM model, realize engineering quality detection work based on BIM model, greatly reduce repetitive mechanical work in the detection process, realize paperless office of the whole process of detection process, compress the detection work into on-site data collection, and the rest of the work can be completed by the system itself, making the engineering quality detection work more efficient and fast, and also with higher accuracy; in addition, the present invention also realizes the digital management of detection items, as well as the digitization and visualization of the whole process of detection items, and the analysis and processing of detection data, the prompting of abnormal detection results and other digital detection management work, which is convenient for relevant personnel to make quick judgments on detection results and engineering quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. 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 creative work.

[0038] Figure 1 It is a module composition diagram of a digital engineering quality detection system based on a building information model according to an embodiment of the present invention;

[0039] Figure 2 Another module composition diagram of the digital engineering quality detection system based on building information modeling according to an embodiment of the present invention;

[0040] Figure 3 A flowchart of the steps of a digital detection method for engineering quality based on a building information model according to an embodiment of the present invention;

[0041] Among them, 101-information management module, 102-scheme generation module, 103-data collection module, 104-retrieval module, 105-sampling module, 106-original record generation module, 107-data processing module, 108-report generation module, 109-electronic archiving module, 110-query display module, 111-quality supervision module. DETAILED DESCRIPTION

[0042] The following will be combined with the accompanying drawings in the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work belong to the protection scope of the present invention.

[0043] The embodiment of the present invention is a digital engineering quality detection system based on a building information model. The system is a functional software built by a computer program. The specific implementation method is not limited. For example, a set of digital detection technology programs is formed through Revit software to realize the functions of the detection system of the embodiment of the present invention. The embodiment of the present invention can be applied to detection work at all stages in the engineering field, including material detection, foundation detection, main structure detection, indoor environment detection, etc.

[0044] like Figure 1 As shown, the detection system includes an information management module 101, a solution generation module 102, a data acquisition module 103 and a retrieval module 104; wherein:

[0045] The information management module 101 is connected to the solution generation module 102 and the data acquisition module 103; the information management module 101 is used to store the personnel information of the responsible personnel and the equipment information of the on-site detection equipment. The information management module is provided with an information verification port for obtaining the authentication information of the responsible personnel and the on-site detection equipment, and performing authenticity verification; the responsible personnel have corresponding responsibilities and permissions. The information management module 101 of this embodiment can be understood as the management and verification of system users and equipment. After the personnel information is verified, the responsible personnel can log in to the system and perform operations with corresponding permissions on the smart terminal or PC, such as obtaining, querying, and screening the quality detection scheme and its specific contents mentioned later, as well as uploading and viewing the on-site detection data mentioned later. The authentication information in this embodiment may include image information, fingerprint information, QR code information, etc., and the image information may include face image information, device image information, etc. The information management module 101 can call all personnel information and equipment information. Before the authentication of the responsible personnel and the on-site detection equipment, the name / title, human fingerprint, face image, equipment image, equipment QR code, etc. of the responsible personnel and the on-site detection equipment are pre-stored. The login password pre-set by each person can also be saved, and the authentication of personnel information is realized by inputting the login password. In addition, the information management module 101 in this embodiment can also determine the equipment status of the on-site detection equipment according to the authentication result of the on-site detection equipment, and provide the on-site detection personnel with the equipment status information, calibration status, data correction suggestions, etc. during the detection process.

[0046] The solution generation module 102 is connected to the information management module 101, the data acquisition module 103, and the retrieval module 104; the solution generation module 102 is used to import the BIM model and identify the building information contained in the BIM model, and generate a quality inspection plan according to the preset solution generation strategy and building information; the quality inspection plan at least includes the inspection location, inspection parameters and responsible personnel. The BIM model has one or more professional information such as architecture, structure, HVAC, electromechanical equipment, water supply and drainage, etc. After the BIM model is imported, its related basic engineering information is also entered. After the solution generation module 102 identifies the BIM model, its materials, components, system properties, dimensions, quantities, types and other multi-dimensional building information (the building information mentioned here in this embodiment refers to all information related to the building designed in the BIM model, including not only three-dimensional model data, but also related design information, multi-dimensional drawings, etc.), and then generates a quality inspection plan according to the preset solution generation strategy and building information. The responsible personnel included in the detection plan in this embodiment not only refer to the on-site detection personnel assigned to the detection task, but also include other relevant personnel of the entire detection task, such as supervisors, project leaders, supervisors, verifiers, test operators, etc.

[0047] The data acquisition module 103 is connected to the information management module 101, the solution generation module 102, and the retrieval module 104; the data acquisition module 103 is provided with a data acquisition port for collecting on-site detection data corresponding to the detection position and detection parameters; the on-site detection data is obtained by the responsible personnel inputting the data acquisition port after the authenticity of the authentication information is verified by the information management module, and / or is obtained by the on-site detection equipment sending it to the data acquisition port. The data acquisition port of the embodiment of the present invention is not limited to a data entry window or a communication interface, as long as it can realize the collection and acquisition of on-site detection data. Preferably, a corresponding time tag is also generated when the on-site detection data is obtained. As an example, the data collection process of the detection system of this embodiment may be as follows: after the personnel information of person A who is responsible for on-site detection is verified, the detection task that person A needs to complete is queried, and the relevant information of the detection object can also be screened according to the needs, so as to quickly retrieve the relevant information of the detection object. The detection task in this embodiment comes from the quality detection plan generated by the plan generation module 102. After that, person A uses relevant detection instruments to complete the on-site detection, and inputs the on-site detection data into the data acquisition port, thereby completing the detection work of person A; in addition, the detection system of the embodiment of the present invention is also communicatively connected with a variety of on-site detection equipment, such as sensors and instruments for detecting various detection parameters such as pressure, stress, temperature, and flow. After the authenticity of the authentication information of the on-site detection equipment is verified, the on-site detection data measured by the on-site detection equipment is directly obtained according to the detection position and detection parameters included in the quality detection plan.

[0048] The retrieval module 104 is connected to the solution generation module 102 and the data acquisition module 103; the retrieval module 104 is used to retrieve corresponding content from the BIM model for display according to the retrieval requirements input by the responsible personnel, and, according to the on-site detection data collection progress of the data acquisition module, automatically retrieve part of the BIM model corresponding to the detection location and detection parameters from the BIM model for display.

[0049] The retrieval module 104 of the embodiment of the present invention can filter key design information in the BIM model for the inspection personnel, such as filtering out the information of the building, HVAC, electromechanical equipment, etc. when inspecting the main structure, and displaying the structural BIM model. The retrieval module 104 can also use a variety of query methods to allow the inspection personnel to quickly locate the inspection object, such as the plan and elevation section of the whole building, the three-dimensional model diagram of the whole building, the three-dimensional model diagram of the standard layer, the plan diagram of the standard layer, etc. The inspection personnel can directly operate the inspection object in the corresponding display mode. For example, when inspecting the upper main structure, the three-dimensional model diagram of the standard layer is called to inspect and confirm a selected beam component, and at the same time display the size of the beam component, the design reinforcement and other information, and provide a detection data entry dialog box (a method of the data acquisition port of the data acquisition module 103) on the display interface to realize the entry and upload of on-site inspection data.

[0050] When the data acquisition module 103 in this embodiment obtains on-site inspection data, the responsible personnel can first retrieve a certain building component in the inspection task to be completed through the retrieval module 104 for visual display. For example, enter the number "XXX" and the building structure name "beam" for retrieval, retrieve the beam numbered XXX from the BIM model for display, and then enter the on-site inspection data of the beam from the set data entry window through interface operations, thereby realizing interactive retrieval and data acquisition functions.

[0051] like Figure 2 As shown, the detection system of this embodiment also includes a sampling module 105, and the sampling module 105 is connected to the information management module 101, the solution generation module 102, and the data acquisition module 103; wherein, the solution generation module 102 in this embodiment is also used to generate a sampling plan according to the solution generation strategy and building information; the sampling plan includes sampling objects, sampling locations and responsible personnel; the sampling module 105 is used to generate unique corresponding sample identification codes for different sampling objects at different sampling locations, and to print the sample identification codes according to the printing instructions, and is also used to identify the sample identification codes on the sampling samples and match them with the generated sample identification codes; the sampling samples are collected from the site by the responsible personnel; the data acquisition module 103 is also used to obtain the sample test results of the sampling samples after the sampling module successfully matches the generated sample identification codes with the sample identification codes on the sampling samples.

[0052] The responsible personnel can obtain the sampling tasks they are responsible for in the system. The sampling tasks come from the sampling scheme generated by the scheme generation module 102, in which the sampling objects and sampling locations can be randomly determined by the scheme generation module 102. The responsible personnel carry out the sampling work according to the sampling tasks assigned to them, including but not limited to: quickly determining the sampling objects and sampling locations according to the sampling tasks, and collecting sampling samples on site; and inputting printing instructions to the sampling module 105, pasting the sample identification code (such as a QR code or a barcode) printed by the sampling module 105 on the collected sampling samples; and the responsible personnel send the sampling samples to the laboratory for testing, and upload the sample test results of the sampling samples to the data acquisition module 103. In the embodiment of the present invention, the sample identification code is used to correspond to the information of the sample for random inspection. The sampling module 105 can generate the sample identification code, and then the system and the sample for random inspection are associated and corresponded with each other through the steps of printing and pasting. Alternatively, a barcode generation terminal can be used to generate a sample identification code and print it out, and then paste it on the sample for random inspection. The sampling module 105 scans the information of the sample identification code and saves it to achieve the association and correspondence between the system and the sample for random inspection. The sample test results in this embodiment can be uploaded by the collector of the sample for random inspection, or by the test personnel or test equipment that tests the sample for random inspection. The specific settings for the relevant personnel in the random inspection plan are not limited by the present invention.

[0053] Preferably, before generating the quality inspection plan and the sampling inspection plan, the plan generation module 102 splits and analyzes the necessary information in the BIM model to obtain professional information such as architecture, structure, HVAC, electromechanical equipment, water supply and drainage, etc., and then selects the inspection object according to the inspection requirements, such as concrete entity inspection, and then selects appropriate inspection specifications and acceptance specifications in combination with the project location to generate the quality inspection plan and the sampling inspection plan. Before implementation, the relevant professionals may review the plan and adjust and modify the plan through interface interaction. If there are no problems, a paper plan with an electronic signature may be generated first, and the paper plan may be uploaded and archived after being signed by all parties. Finally, the inspection task is completed according to the plan.

[0054] The detection system of this embodiment also includes an original record generation module 106, which is connected to the information management module 101, the solution generation module 102, the data acquisition module 103, and the sampling module 105; the original record generation module 106 is used to summarize the relevant information of the information management module 101, the solution generation module 102, the data acquisition module 103, and the sampling module 105 during the detection process, generate an electronic original record, and the corresponding responsible personnel perform an electronic signature. The relevant information of the information management module 101, the solution generation module 102, the data acquisition module 103, and the sampling module 105 during the detection process at least includes: the personnel information of the responsible personnel in the implementation of the quality inspection plan and the sampling plan, the equipment information of the on-site detection equipment, the certification records and results of the certification information, the on-site detection data, the sample identification code, the sample test results, the basic information of the project, etc., and the electronic original record is quickly generated with one key. The electronic signature of the electronic original record is a pre-entered electronic signature.

[0055] The detection system of this embodiment also includes a data processing module 107, which is connected to the data acquisition module 103; the data processing module 107 is used to compare the field detection data and sample test results obtained by the data acquisition module 103 with the preset design requirements to evaluate whether the field detection data and sample test results meet the design requirements, and generate an abnormal notification form according to the field detection data and sample test results that do not meet the design requirements. Before comparing with the preset design requirements, the data processing module 107 in this embodiment first calculates and processes the field detection data and sample test results obtained by the data acquisition module 103 to obtain calculated data that can be used to issue a report, and then judges whether these data meet the design requirements according to the evaluation requirements of the specifications and standards, and generates an abnormal notification form for the data that does not meet the design with one click, and the relevant responsible personnel can check and read the abnormal notification form, and then arrange data verification and abnormal handling.

[0056] Preferably, the detection system of the present embodiment also includes a report generation module 108, which is connected to the data processing module 107; the report generation module 108 is used to generate a project quality inspection report with one click according to the preset inspection report template, on-site inspection data, and sample test results. The embodiment of the present invention does not limit the style and content requirements of the inspection report template, and those skilled in the art can set it by themselves according to relevant regulations. When there are multiple types of inspection report templates preset, the relevant responsible personnel who have passed the certification can interactively select the desired inspection report template, call the relevant data, and generate the corresponding project quality inspection report after analyzing the data. Afterwards, the project quality inspection report is first reviewed online by the relevant responsible personnel such as proofreaders, auditors, and approvers. If there are places that do not meet the requirements, interactive modifications are made until the project quality inspection report is no problem, and a final version of the report with electronic signatures of the unit, inspection personnel, proofreaders, auditors, and authorized signatories is generated, which can be printed by an external printer and a paper report is retained.

[0057] More preferably, the detection system of this embodiment also includes an electronic archiving module 109, which is connected to the solution generation module 102 and the data acquisition module 103; the electronic archiving module 109 is used to combine the on-site detection data and sample test results into the BIM model, and archive the BIM model containing the on-site detection data and sample test results as electronic data to the cloud server. If you want to view the electronic data stored in the cloud server, you can download, export and other operations to save the electronic data in the smart terminal or PC. The electronic data of the embodiment of the present invention is a high degree of combination of the detection results and the BIM model, and the presentation method is not limited. For example, on the interface showing the BIM model, the on-site detection data and sample test results are displayed in the corresponding position or set area, and different colors can also be used to represent the comparison results of the on-site detection data and sample test results with the preset design requirements. For example, if a certain on-site detection data meets the design requirements, it is displayed in green, and if it exceeds the design requirements, it is displayed in orange or red; or, only the BIM model is displayed, and when the mouse cursor moves to a certain structure of the BIM model, the data display area pops up to display the relevant data of the structure.

[0058] In addition, the detection system of this embodiment also includes a query display module 110; the query display module 110 is connected to the electronic archiving module 109; the query display module 110 is used to obtain query instructions, and query and display relevant information matching the query instruction dimensions in the cloud server. The query display module 110 of the embodiment of the present invention can be combined with the BIM model to realize the diversified, digital, and visual display of the detection results. It can also generate a summary electronic document of the detection results with one click through the screening of the detection category, and display a general summary of the detection results; when displaying, different colors can be displayed in the BIM model for components with abnormal detection results, and the results can also be displayed in multiple directions on the plan, elevation, and section drawings, three-dimensional graphics, and a certain layer or several layers. The query display module 110 can also quickly summarize multiple detection parameter results of a certain detection object according to the query instruction.

[0059] The detection system of the present embodiment also includes a quality supervision module 111, which is connected to the data acquisition module 103; the quality supervision module 111 is used to generate supervision requirements for the detection process, and obtain the completion certificate of the supervision task of the responsible personnel in the detection process, and evaluate the completion certificate of the supervision task, and generate a supervision record. The function of the quality supervision module 111 can be managed and operated by a quality supervisor with the authority to generate supervision requirements. After verifying the personnel information, the quality supervisor selects the project to be supervised, and then issues the supervision requirements according to actual needs. When the relevant personnel perform the detection work, the detection personnel complete the supervision task according to the supervision requirements. The supervision task is not limited to: uploading pictures of the detection site, images / videos of the detection personnel when performing the detection, or connecting videos with the quality supervisor. The quality supervisor evaluates the completion of the supervision task and automatically generates a supervision record. The detection personnel can also make rectifications according to the supervision record. The quality supervision module 111 of the present embodiment can realize the randomness of quality supervision in time, space, and project, and reduce the time cost of the quality supervisor on site.

[0060] Another embodiment of the present invention is a digital detection method for engineering quality based on building information modeling. The detection method is implemented based on the detection system of the above embodiment. Figure 3 As shown, the detection method comprises the steps of:

[0061] Step 101: Store the personnel information of the responsible personnel and the equipment information of the on-site detection equipment.

[0062] Step 102: Import the BIM model and identify the building information contained in the BIM model.

[0063] Step 103: Generate a quality inspection plan based on the preset plan generation strategy and building information.

[0064] The quality inspection plan shall at least include the inspection location, inspection parameters and responsible personnel.

[0065] Step 104: Obtain authentication information of responsible personnel and on-site testing equipment and perform authenticity verification.

[0066] After the authenticity of the authentication information is verified, it also includes:

[0067] Step 105: Collect on-site detection data corresponding to the detection position and detection parameters.

[0068] Also includes:

[0069] Step 106: Generate a sampling plan based on the plan generation strategy and building information; the sampling plan includes sampling objects, sampling locations and responsible personnel.

[0070] Step 107: Generate unique corresponding sample identification codes for different sampling objects at different sampling locations, and identify the sample identification codes on the sample samples and match them with the generated sample identification codes.

[0071] After the generated sample identification code is successfully matched with the sample identification code on the sample for inspection, it also includes:

[0072] Step 108: Obtain sample test results of the random samples.

[0073] The entire process of obtaining the experimental results of the field detection dataset samples also includes:

[0074] Step 109: Retrieve corresponding content from the BIM model for display according to the search requirements input by the responsible personnel, and automatically retrieve part of the BIM model corresponding to the detection location and detection parameters from the BIM model for display according to the progress of on-site detection data collection.

[0075] Preferably, the detection method of the embodiment of the present invention further includes:

[0076] Step 110: Summarize the relevant information during the testing process, generate an electronic original record, and have the corresponding responsible personnel sign it electronically.

[0077] And, step 111: compare the field test data and sample test results with the preset design requirements to evaluate whether the field test data and sample test results meet the design requirements, and generate an abnormal notification sheet based on the field test data and sample test results that do not meet the design requirements.

[0078] And, step 112: generating a project quality inspection report according to a preset inspection report template, on-site inspection data, and sample test results.

[0079] And, step 113: combining the on-site inspection data and sample test results into the BIM model, and archiving the BIM model containing the on-site inspection data and sample test results as electronic data to a cloud server.

[0080] And, step 114: obtaining a query instruction, and querying and displaying relevant information matching the query instruction dimension in the cloud server.

[0081] And, step 115: generating supervision requirements for the detection process, obtaining the completion certificate of the supervision task of the responsible personnel during the detection process, and evaluating the completion certificate of the supervision task to generate a supervision record.

[0082] The specific implementation of the above steps can be understood by referring to the embodiments of the aforementioned detection system, which will not be described in detail here.

[0083] The detection system and detection method of the present invention closely combine digital management with BIM model, realize engineering quality detection work based on BIM model, greatly reduce repetitive mechanical work in the detection process, realize paperless office of the whole process of detection process, compress the detection work into on-site data collection, and the rest of the work can be completed by the system itself, making the engineering quality detection work more efficient and fast, and also with higher accuracy; in addition, the present invention also realizes the digital management of detection items, as well as the digitization and visualization of the whole process of detection items, and the analysis and processing of detection data, the prompting of abnormal detection results and other digital detection management work, which is convenient for relevant personnel to make quick judgments on detection results and engineering quality.

[0084] The present invention is further described above with the aid of specific embodiments. However, it should be understood that the specific description here should not be construed as limiting the essence and scope of the present invention. Various modifications made to the above embodiments by ordinary technicians in the field after reading this specification are all within the scope of protection of the present invention.

Claims

1. A digital engineering quality detection system based on building information model, characterized in that: The detection system includes an information management module, a solution generation module, a data acquisition module and a retrieval module; wherein: The information management module is connected to the solution generation module and the data acquisition module; the information management module is used to store the personnel information of the responsible personnel and the equipment information of the on-site detection equipment. The information management module is provided with an information verification port for obtaining the authentication information of the responsible personnel and the on-site detection equipment and performing authenticity verification; the responsible personnel have corresponding responsibilities and authorities; The scheme generation module is connected to the information management module, the data acquisition module, and the retrieval module; the scheme generation module is used to import the BIM model and identify the building information contained in the BIM model, and generate a quality inspection scheme according to a preset scheme generation strategy and the building information; the quality inspection scheme at least includes an inspection location, inspection parameters, and responsible personnel; The data acquisition module is connected to the information management module, the solution generation module, and the retrieval module; the data acquisition module is provided with a data acquisition port for acquiring on-site detection data corresponding to the detection position and the detection parameters; the on-site detection data is acquired by the responsible person inputting the data acquisition port after the authenticity of the authentication information is verified by the information management module, and / or is acquired by the on-site detection equipment sending the data acquisition port; The retrieval module is connected to the solution generation module and the data acquisition module; the retrieval module is used to retrieve corresponding content from the BIM model for display according to the retrieval requirements input by the responsible personnel, and, according to the on-site detection data collection progress of the data acquisition module, automatically retrieve part of the BIM model corresponding to the detection location and detection parameters from the BIM model for display.

2. A digital engineering quality detection system based on building information model as claimed in claim 1, characterized in that: It also includes a sampling module, which is connected to the information management module, the solution generation module, and the data acquisition module; The scheme generation module is further used to generate a sampling scheme according to the scheme generation strategy and the building information; the sampling scheme includes sampling objects, sampling locations and responsible personnel; The sampling module is used to generate unique corresponding sample identification codes for different sampling objects at different sampling locations, and to print the sample identification codes according to the printing instructions, and is also used to identify the sample identification codes on the sample for sampling and match them with the generated sample identification codes; the sample for sampling is collected on site by the responsible personnel; The data acquisition module is also used to obtain the sample test results of the sample after the sampling module successfully matches the sample identification code generated and the sample identification code on the sample.

3. A digital engineering quality detection system based on building information model as claimed in claim 2, characterized in that: It also includes an original record generation module, which is connected to the information management module, the solution generation module, the data acquisition module, and the sampling module; the original record generation module is used to summarize the relevant information of the information management module, the solution generation module, the data acquisition module, and the sampling module during the detection process, generate an electronic original record, and the corresponding responsible personnel shall sign it electronically.

4. A digital engineering quality detection system based on building information model as claimed in claim 3, characterized in that: It also includes a data processing module, which is connected to the data acquisition module; the data processing module is used to compare the on-site detection data and sample test results obtained by the data acquisition module with the preset design requirements to evaluate whether the on-site detection data and sample test results meet the design requirements, and generate an abnormal notification sheet based on the on-site detection data and sample test results that do not meet the design requirements.

5. A digital engineering quality detection system based on building information model as claimed in claim 4, characterized in that: It also includes a report generation module, which is connected to the data processing module; the report generation module is used to generate a project quality inspection report based on a preset inspection report template and the on-site inspection data and sample test results.

6. A digital engineering quality detection system based on building information model as claimed in claim 5, characterized in that: It also includes an electronic archiving module, which is connected to the solution generation module and the data acquisition module; the electronic archiving module is used to combine the on-site detection data and sample test results into the BIM model, and archive the BIM model containing the on-site detection data and sample test results as electronic data to a cloud server.

7. A digital engineering quality detection system based on building information modeling as claimed in claim 6, characterized in that: It also includes a query display module; the query display module is connected to the electronic archiving module; the query display module is used to obtain query instructions, and query and display relevant information matching the query instruction dimension in the cloud server.

8. A digital engineering quality detection system based on building information modeling as claimed in claim 7, characterized in that: It also includes a quality supervision module, which is connected to the data acquisition module; the quality supervision module is used to generate supervision requirements for the detection process, obtain the completion certificate of the supervision task of the responsible personnel during the detection process, and evaluate the completion certificate of the supervision task to generate a supervision record.

9. A digital detection method for engineering quality based on building information model, characterized in that: The detection method is implemented based on the detection system according to claim 8, and the detection method comprises the steps of: Store the personnel information of responsible personnel and the equipment information of on-site testing equipment; Importing a BIM model and identifying building information contained in the BIM model; Generate a quality inspection plan according to a preset plan generation strategy and the building information; the quality inspection plan at least includes an inspection location, inspection parameters and responsible personnel; Obtain certification information of responsible personnel and on-site testing equipment and verify authenticity; After the authenticity of the authentication information is verified, Collecting on-site detection data corresponding to the detection position and the detection parameters; Also includes: Generate a sampling plan according to the plan generation strategy and the building information; the sampling plan includes sampling objects, sampling locations and responsible personnel; Generate unique corresponding sample identification codes for different sampling objects at different sampling locations, and identify the sample identification codes on the sample samples and match them with the generated sample identification codes; after the generated sample identification codes are successfully matched with the sample identification codes on the sample samples, Obtaining sample test results of the sample being randomly inspected; Also includes: According to the search requirements input by the responsible personnel, the corresponding content is retrieved from the BIM model for display; and according to the progress of on-site inspection data collection, part of the BIM model corresponding to the inspection location and inspection parameters is automatically retrieved from the BIM model for display.

10. A digital detection method for engineering quality based on building information model as claimed in claim 9, characterized in that: The detection method further comprises: Summarize the relevant information during the testing process, generate electronic original records, and have the corresponding responsible personnel sign electronically; and comparing the on-site inspection data and sample test results with preset design requirements to evaluate whether the on-site inspection data and sample test results meet the design requirements, and generating an abnormality notification sheet based on the on-site inspection data and sample test results that do not meet the design requirements; And, generate a project quality inspection report based on the preset inspection report template and the on-site inspection data and sample test results.

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