A digital management method and system for pile foundation engineering construction acceptance data

By configuring acceptance standards and areas, generating digital summary tables and using blockchain to store evidence, the offline management problem of pile foundation construction acceptance data is solved, and efficient and authentic acceptance management and tamper prevention are achieved.

CN115796690BActive Publication Date: 2025-10-03WENZHOU KAICHEN TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202211573447.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-08
Publication Date
2025-10-03
Estimated Expiration
2042-12-08

AI Technical Summary

Technical Problem

The lack of digital management methods in the construction acceptance process of pile foundation projects has led to manual offline sorting and paper review of acceptance materials, which are inefficient, easy to tamper with, and difficult to preserve, and cannot truly reflect the construction quality.

Method used

By configuring acceptance standards and areas, a summary table of materials and test data is generated to achieve digital management, and blockchain evidence is used to prevent tampering, thereby improving audit efficiency and quality reflection.

Benefits of technology

It realizes the digital management of pile foundation construction acceptance data, improves the review efficiency, ensures the authenticity and integrity of the data, and meets the quality acceptance requirements.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115796690B_ABST
    Figure CN115796690B_ABST
Patent Text Reader

Abstract

The present invention discloses a digital management method and system for pile foundation construction acceptance data. By configuring the pile foundation construction data acceptance standards and acceptance areas, the present invention can meet the actual requirements of pile foundation construction acceptance management. Corresponding material quality summary tables and construction quality summary tables are generated according to the acceptance areas. Furthermore, the present invention supports the random generation of various types of acceptance data required for pile foundation construction acceptance according to the configured material inspection data sampling rules and construction inspection data sampling rules. This method can effectively improve audit efficiency and reduce acceptance time. Furthermore, because the acceptance data is based on construction process data, it can truly reflect construction quality and meet quality acceptance requirements. Finally, by storing the acceptance data files on a blockchain, it can ensure that the acceptance data files cannot be tampered with.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the field of construction engineering management and a method for managing engineering construction data, and in particular to a method and system for digitally managing pile foundation engineering construction acceptance data. Background Art

[0002] The construction acceptance process of pile foundation projects involves the inspection and review of a large amount of acceptance documents, such as material inspection documents, pile foundation technical documents, and construction inspection documents. Currently, due to the lack of digital management methods, most of the construction acceptance documents for pile foundation projects are manually compiled offline by document clerks, and are often prepared "after the fact", which is disconnected from the actual construction process, making it difficult to effectively implement quality assurance measures for construction acceptance. In addition, construction acceptance documents need to be printed into paper documents for offline submission and review, which leads to serious paper waste and low review efficiency, resulting in a long acceptance time. Paper acceptance documents are easy to tamper with, making it difficult to prevent the falsification of acceptance documents. In addition, the final acceptance documents are difficult to archive and inconvenient to access.

[0003] Currently, digital management methods and systems for the entire construction process of pile foundation projects exist, capable of digitally collecting and managing the construction process data for each pile. Therefore, based on the existing data on the entire construction process of pile foundation projects, a digital management method and system for pile foundation construction acceptance documents can be constructed. This digital generation and management of pile foundation construction acceptance documents allows for online submission and review, improving review efficiency and reducing acceptance time. Furthermore, because construction acceptance documents are based on construction process data, they can truly reflect construction quality, thereby better meeting the quality supervision requirements for pile foundation construction acceptance. Summary of the Invention

[0004] In view of the shortcomings of the existing technology and the actual needs of pile foundation acceptance, the present invention proposes a digital management method and system for pile foundation construction acceptance data.

[0005] The purpose of the present invention is achieved through the following technical solutions:

[0006] According to a first aspect of this specification, a method for digital management of pile foundation construction acceptance data is provided, comprising:

[0007] Step 1: Configure the pile foundation construction data acceptance standards, select the list of materials to be included in the construction acceptance documents, and set specific sampling rules, including sampling rules for material acceptance documents and construction inspection documents;

[0008] Step 2: Configure the pile foundation construction acceptance area, define the acceptance area name and axis area range, configure and manage the piles in the acceptance area, and generate a pile list for the acceptance area;

[0009] Step 3: Apply for construction data acceptance for the pile foundation project according to the acceptance area, analyze the construction completion status of the piles in the acceptance area and the acceptance status of the pile positions, and determine whether an acceptance application can be initiated for the acceptance area;

[0010] Step 4: If the construction data acceptance application is allowed to be initiated for the acceptance area, the integrity of the material receipt and inspection data associated with the piles in the acceptance area will be analyzed. If the data is complete, a corresponding material quality summary table will be generated. The material inspection data will be sampled and generated according to the material inspection data sampling rules defined in the acceptance standards;

[0011] Step 5: If the application for construction data acceptance is allowed for the acceptance area, the integrity of the construction inspection data associated with the piles in the acceptance area is analyzed. If the data is complete, a corresponding construction quality summary table is generated, and the construction inspection data is sampled and generated according to the construction inspection data sampling rules defined in the acceptance standards;

[0012] Step 6. After completing the sampling and generation of the corresponding acceptance materials in the acceptance area, merge and generate a pile foundation construction acceptance material file, submit it to the relevant parties for review and then archive it, and store the acceptance material file on the blockchain to realize the digital management of the pile foundation construction acceptance material.

[0013] Furthermore, the step 1 specifically includes:

[0014] Step 1.1 According to the requirements for the acceptance of pile foundation construction, select the list of materials to be included in the acceptance documents for the purpose of generating the acceptance documents;

[0015] Step 1.2: Set specific sampling rules according to the construction acceptance requirements of the pile foundation project, including sampling rules for material inspection data and sampling rules for construction inspection data;

[0016] The material inspection data sampling rules are mainly used to set the number of material receipt records for random sampling of steel bars and commercial concrete; the construction inspection data sampling rules are mainly used to set the random sampling rules for piles.

[0017] Furthermore, the step 2 specifically includes:

[0018] Step 2.1: Divide and configure the construction acceptance area according to the pile foundation construction acceptance requirements, and define the corresponding axis range in a digital manner;

[0019] Step 2.2: Arrange the piles in the acceptance area according to the requirements of the pile foundation construction drawings, identify and distinguish the piles according to the pile numbers, and generate a pile list for the acceptance area.

[0020] Furthermore, the step three specifically includes:

[0021] Step 3.1 Select the acceptance area for the pile foundation project and obtain the corresponding pile list;

[0022] Step 3.2: Analyze the pile status and pile position acceptance of each pile according to the pile list to determine whether the acceptance area meets the conditions for initiating the construction data acceptance application. The specific conditions are as follows:

[0023] (1) Determine whether all piles in the acceptance area have been piled. If all piles in the acceptance area have been piled, proceed to step (2); otherwise, no acceptance application can be initiated for the acceptance area;

[0024] (2) Determine whether each pile in the acceptance area has undergone pile position acceptance and the acceptance results are all qualified. If the judgment result is "yes", an acceptance application can be initiated for the acceptance area; otherwise, an acceptance application cannot be initiated for the acceptance area.

[0025] Furthermore, in step 4, the main criteria for the integrity analysis of material receipt and inspection data are as follows:

[0026] (1) Whether each pile in the acceptance area has a corresponding steel bar raw material inspection report;

[0027] (2) Whether the steel bar inspection report associated with each pile in the acceptance area has the corresponding steel bar receipt record;

[0028] (3) Whether there is a commercial concrete inspection record for each pile in the acceptance area;

[0029] (4) Whether the commercial concrete inspection record for each pile in the acceptance area has corresponding commercial concrete receipt records and quality certification documents.

[0030] Furthermore, in step 4, the material inspection data is randomly sampled and generated, and the specific generation algorithm is as follows:

[0031] (1) According to the steel bar model of the pile in the acceptance area, the steel bar model n-tuple (C1, C2, ..., C n );

[0032] (2) According to the steel bar model n-tuple (C1, C2, ..., C n ), for each model C i , i∈(1,2,...,n), randomly select the steel bar model from the steel bar receipt records associated with the piles in the acceptance area, and draw a corresponding steel bar receipt record to obtain the corresponding inspection information and generate the corresponding steel bar inspection data;

[0033] (3) According to the strength grade of commercial concrete piles in the acceptance area, the commercial concrete strength grade m-tuple (T1, T2, ..., T m );

[0034] (4) According to the commercial concrete strength grade m tuple (T1, T2, ..., T m ), for each intensity level T k , k∈(1,2,...,m), randomly select the strength grade from the commercial concrete receipt records associated with the piles in the acceptance area, draw a corresponding commercial concrete receipt record to obtain the corresponding inspection information and generate the corresponding commercial concrete inspection data.

[0035] Furthermore, in step 5, the main criteria for judging the integrity of construction inspection data are as follows:

[0036] (5) Whether each pile in the acceptance area has a corresponding standard curing test block test report;

[0037] (6) Whether each pile in the acceptance area has a corresponding steel bar welding inspection report;

[0038] (7) Whether there are corresponding static load test reports for the piles selected for static load testing in the acceptance area;

[0039] (8) Whether the dynamic testing of piles in the acceptance area meets the acceptance coverage requirements and whether there is a corresponding dynamic testing report.

[0040] Furthermore, in step five, according to the construction inspection data sampling rules defined in the acceptance standards, piles within the acceptance area are randomly selected, and the corresponding construction and inspection information of the selected piles is obtained according to the data list required by the acceptance standards, and corresponding construction inspection data are generated, including: construction files, on-site image data, steel bar welding inspection report, standard curing test block inspection report, dynamic test report, and static load inspection report.

[0041] Furthermore, the step six specifically includes:

[0042] Step 6.1: For all kinds of acceptance data generated by sampling in the acceptance area, merge them in a certain order to generate corresponding acceptance data files;

[0043] Step 6.2 The acceptance documents are archived after review by relevant parties and can be viewed online;

[0044] Step 6.3: For the generated acceptance document, a unique evidence number is randomly generated and stored on the blockchain established by the parties involved in the pile foundation project.

[0045] According to a second aspect of this specification, a digital management system for pile foundation construction acceptance data is provided, comprising:

[0046] The configuration management unit for the acceptance standards of construction data of pile foundation projects can configure the acceptance standards of construction data of pile foundation projects, select the list of materials to be included in the construction acceptance documents, and set specific sampling rules;

[0047] The pile foundation construction acceptance area management unit can configure the acceptance area of ​​the pile foundation construction and define the name and axis area of ​​the acceptance area according to the pile foundation construction acceptance requirements;

[0048] The pile foundation construction acceptance application management unit can manage the construction data acceptance application initiation in the pile foundation construction acceptance area, and analyze and judge the completion status of the piles in the acceptance area and the acceptance status of the pile positions;

[0049] The pile foundation construction acceptance data generation unit can generate corresponding material quality summary tables and construction quality summary tables based on the integrity of material receipt and inspection data and construction inspection data in the acceptance area, while allowing the initiation of construction data acceptance applications for the acceptance area. It can also generate sampling acceptance data.

[0050] The pile foundation construction acceptance document review and evidence management unit can generate corresponding acceptance document files for various types of acceptance documents sampled within the acceptance area, conduct online viewing, review and archiving, and generate and assign unique evidence numbers to the acceptance document files, and store them on the blockchain established by the parties involved in the pile foundation project.

[0051] The advantages and beneficial effects of the present invention are as follows:

[0052] The present invention can meet the actual requirements of pile foundation construction acceptance management by configuring the acceptance standards for pile foundation construction materials and the acceptance areas. It generates corresponding material quality summary tables and construction quality summary tables according to the acceptance areas, and supports random generation of various types of acceptance materials required for pile foundation construction acceptance according to the configured material inspection data sampling rules and construction inspection data sampling rules. On the one hand, it can effectively improve the audit efficiency and reduce the acceptance time; on the other hand, since the acceptance materials are based on the construction process data, they can truly reflect the construction quality and meet the quality acceptance requirements; finally, the acceptance materials are stored through the blockchain to ensure that the acceptance materials cannot be tampered with. Its main advantages are as follows:

[0053] 1. Realize the digital management of the acceptance standards for pile foundation construction materials: According to the acceptance requirements for pile foundation construction, it can select and determine the list of materials to be covered in the acceptance materials, and set the sampling rules for material reporting and inspection materials and the sampling rules for construction inspection materials.

[0054] 2. Realize the digital management of the construction acceptance area of ​​pile foundation engineering: It can configure the construction acceptance area of ​​pile foundation engineering, define the name of the acceptance area and the axis area range, and meet the needs of on-site construction acceptance management of pile foundation engineering.

[0055] 3. Digital management of construction acceptance data of pile foundation projects has been realized: acceptance applications can be submitted for pile foundation projects according to the acceptance area, and the construction completion status of the piles in the acceptance area and the acceptance status of the pile positions can be analyzed. When the acceptance application for the acceptance area is allowed to be initiated, the corresponding material quality summary table and construction quality summary table are generated, and the corresponding material acceptance data and construction inspection data are randomly sampled according to the configured material acceptance data sampling rules and construction inspection data sampling rules, which can effectively improve the review efficiency of the acceptance data and meet the quality acceptance requirements.

[0056] 4. Realize the review and evidence management of the acceptance documents of pile foundation projects: Through the blockchain, the acceptance documents are reviewed online and stored on the blockchain to prevent the acceptance documents from being tampered with at will, ensure the validity of the acceptance documents, and finally realize the digital management of the acceptance documents of pile foundation projects. BRIEF DESCRIPTION OF THE DRAWINGS

[0057] Figure 1 It is a flowchart of the method of the present invention.

[0058] Figure 2 2 is an application example diagram of the method of the present invention.

[0059] Figure 3 This is an example diagram of specific application steps of the method described in the present invention.

[0060] Figure 4 It is a structural block diagram of the system of the present invention. DETAILED DESCRIPTION

[0061] The features and exemplary embodiments of various aspects of the present invention will be described in detail below. In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below in conjunction with the accompanying drawings and Examples. It should be understood that the specific embodiments described herein are only configured to explain the present invention and are not configured to limit the present invention. For those skilled in the art, the present invention can be implemented without the need for some of these specific details. The description of the following embodiment is merely to provide a better understanding of the present invention by illustrating examples of the present invention.

[0062] like Figure 1 、 2 As shown, an embodiment of the present invention provides a digital management method for pile foundation construction acceptance data, comprising the following steps:

[0063] Step 1: Configure the acceptance standards for pile foundation construction materials, select the list of materials to be covered in the construction acceptance materials, and set specific sampling rules.

[0064] Step 1.1: According to the pile foundation construction acceptance requirements, select the list of documents to be included in the acceptance documents for the purpose of generating the acceptance documents. For example, if "Chloride Ion Test Block Test Report" is selected in the construction inspection documents, this means that a sample of this test report will be required in the acceptance documents.

[0065] Step 1.2: According to the requirements for pile foundation construction acceptance, set specific sampling rules, including: material inspection data sampling rules, construction inspection data sampling rules.

[0066] (1) Material inspection data sampling rules mainly set the number of material receipt records to be randomly sampled for steel bars and commercial concrete. For example, one steel bar receipt record can be randomly sampled for each steel bar model and specification, and one commercial concrete receipt record can be randomly sampled for each commercial concrete strength grade.

[0067] (2) Construction inspection data sampling rules are mainly set for random sampling rules of piles. For example, they can be set according to the random sampling rate (such as 1%) or the number of randomly sampled piles (such as 2 piles).

[0068] Step 2: Configure the pile foundation construction acceptance area, define the acceptance area name and axis area range, configure and manage the piles in the acceptance area, and generate a pile list for the acceptance area.

[0069] Step 2.1: Divide and configure the construction acceptance area according to the construction acceptance requirements of the pile foundation project, and digitally define the corresponding axis ranges, such as: X-axis range (ap) and Y-axis range (1-10).

[0070] In step 2.2, arrange the piles within the acceptance area according to the pile foundation construction drawings and identify and distinguish the piles by pile number. For example, assign the 50 piles "A1-A50" and the 30 piles "B1-B30" (a total of 80 piles) to the "Z1 acceptance area" and generate a pile list for this acceptance area.

[0071] Step three: Apply for construction data acceptance of the pile foundation project according to the acceptance area, analyze the construction completion status of the piles in the acceptance area and the acceptance status of the pile positions, and determine whether an acceptance application can be initiated for the acceptance area. If the conditions for initiating the construction data acceptance application are met, the acceptance application can be made.

[0072] Step 3.1 Select the acceptance area for the pile foundation project and obtain the corresponding pile list;

[0073] Step 3.2: Obtain the corresponding pile list according to the acceptance area, analyze the pile formation and pile position acceptance of each pile, and determine whether the acceptance area meets the conditions for initiating the construction data acceptance application. The specific judgment conditions are as follows:

[0074] (1) Determine whether all piles in the acceptance area have been piled. If all piles in the acceptance area have been piled, proceed to step (2); otherwise, no acceptance application can be initiated for the acceptance area;

[0075] (2) Determine whether each pile in the acceptance area has undergone pile position acceptance and the acceptance results are all qualified. If the judgment result is "yes", an acceptance application can be initiated for the acceptance area; otherwise, an acceptance application cannot be initiated for the acceptance area.

[0076] Step 4: When the application for construction data acceptance is allowed to be initiated for the acceptance area, the integrity of the material receipt and inspection data associated with the piles in the acceptance area is analyzed. If the data is complete, a corresponding material quality summary table is generated, and the material inspection data is sampled and generated in accordance with the material inspection data sampling rules defined in the acceptance standards.

[0077] Step 4.1 The materials used in pile foundation construction are mainly steel bars and commercial concrete. Analyze the integrity of the material receipt and inspection data associated with the piles within the acceptance area. The main criteria for integrity analysis are as follows:

[0078] (1) Whether each pile in the acceptance area has a corresponding steel bar raw material inspection report;

[0079] (2) Whether the steel bar inspection report associated with each pile in the acceptance area has the corresponding steel bar receipt record;

[0080] (3) Whether there is a commercial concrete inspection record for each pile in the acceptance area;

[0081] (4) Whether the commercial concrete inspection record for each pile in the acceptance area has corresponding commercial concrete receipt records and quality certification documents.

[0082] In step 4.2, if the data is complete, the corresponding material quality summary table can be generated, and the material inspection data can be randomly sampled and generated. The specific generation algorithm is as follows:

[0083] (1) According to the steel bar model of the pile in the acceptance area, the steel bar model n-tuple (C1, C2, ..., C n );

[0084] (2) According to the steel bar model n-tuple (C1, C2, ..., C n ), for each model C i (i∈(1,2,...,n)), randomly select the steel bar model from the steel bar receipt records associated with the piles in the acceptance area, and select a corresponding steel bar receipt record to obtain the corresponding inspection information (including: application form, material list, quality certification documents, test report, etc.) to generate the corresponding steel bar inspection data;

[0085] (3) Similarly, according to the commercial concrete strength grade of the piles in the acceptance area, the commercial concrete strength grade m-tuple (T1, T2, ..., T m );

[0086] (4) According to the commercial concrete strength grade m tuple (T1, T2, ..., T m ), for each intensity level T k (k∈(1,2,...,m)), randomly select the strength grade from the commercial concrete receipt records associated with the piles in the acceptance area, and draw a corresponding commercial concrete receipt record to obtain the corresponding inspection information (including: application form, material list, quality certification document) to generate the corresponding commercial concrete inspection information.

[0087] Step 5: When the application for construction data acceptance is allowed for the acceptance area, the integrity of the construction inspection data associated with the piles in the acceptance area is analyzed. If the data is complete, a corresponding construction quality summary table is generated, and the construction inspection data is sampled and generated in accordance with the construction inspection data sampling rules defined in the acceptance standards.

[0088] Step 5.1: Analyze the integrity of the construction inspection data associated with the piles in the acceptance area. If the data is complete, a corresponding construction quality summary table can be generated. The main criteria for the integrity analysis of the construction inspection data are as follows:

[0089] (1) Whether each pile in the acceptance area has a corresponding standard curing test block test report;

[0090] (2) Whether each pile in the acceptance area has a corresponding steel bar welding inspection report;

[0091] (3) Whether there are corresponding static load test reports for the piles selected for static load test in the acceptance area;

[0092] (4) Whether the dynamic testing of piles in the acceptance area meets the acceptance coverage requirements and whether there is a corresponding dynamic testing report.

[0093] Step 5.2: Randomly select piles within the acceptance area according to the construction inspection data sampling rules defined in the acceptance standards. Obtain the corresponding construction and inspection information for the selected piles according to the data list required by the acceptance standards, and generate corresponding construction inspection data, including: construction files, on-site image data, steel bar welding inspection report, standard curing test block inspection report, dynamic test report, and static load inspection report.

[0094] Step 6. After completing the sampling and generation of the corresponding acceptance materials in the acceptance area, merge and generate a pile foundation construction acceptance material file, submit it to the relevant parties for review and then archive it, and store the acceptance material file on the blockchain to realize the digital management of the pile foundation construction acceptance material.

[0095] Step 6.1: For all types of acceptance data generated by sampling within the acceptance area, merge them in a certain order to generate corresponding acceptance data files (such as PDF format).

[0096] Step 6.2 The acceptance documents are archived after being reviewed by relevant parties (such as the construction unit, supervision unit, and construction unit) and can be viewed online.

[0097] In step 6.3, a unique evidence number is randomly generated for the generated acceptance document, and the evidence is stored on the blockchain (such as the industry alliance chain) established by the relevant parties of the pile foundation project (such as the construction unit, supervision unit, construction unit and competent department, etc.) to ensure that the result cannot be tampered with.

[0098] Figure 3This is an implementation example of a specific application scenario for this application. Step 1: Configuring the acceptance standards for pile foundation construction data: Select the list of materials to be covered in the construction acceptance documents, and set the sampling rules for material inspection documents and construction inspection documents. For example, randomly sample one steel bar receipt record for each steel bar model and specification, and randomly sample one commercial concrete receipt record for each commercial concrete strength grade. Sample the construction inspection data of the piles at a random sampling rate of 1%. Step 2: Configuring the acceptance area: Set the acceptance area and divide the axis range, for example: Z1 (ap, 1-10), and configure the piles within the acceptance area Z1 (for example: A1-A50, B1-B30). Step 3: Initiating the acceptance application for the construction data acceptance of the acceptance area: Initiate the construction data acceptance application for the acceptance area (for example, Z1), analyze the pile formation status and pile position acceptance status of the piles within Z1 (such as: A1-A50, B1-B30), and initiate the acceptance application if the conditions for initiating the construction data acceptance application are met. Step 4: Generate Construction Acceptance Documents for the Acceptance Area: Generate corresponding material quality summary tables and construction quality summary tables for the piles within acceptance area Z1. According to the configured material inspection and construction inspection data sampling rules, random sampling is performed to generate corresponding material inspection and construction inspection data. Step 5: Review and Blockchain Storage of Acceptance Documents for the Acceptance Area: Generate corresponding acceptance document files for various types of acceptance documents sampled within acceptance area Z1. These files are then reviewed, reviewed, and archived online. Unique identification numbers are generated and assigned to the acceptance document files for blockchain storage.

[0099] like Figure 4 As shown, the embodiment of the present invention further provides a digital management system for pile foundation construction acceptance data, including:

[0100] The configuration management unit for the acceptance standards of construction data of pile foundation projects can configure the acceptance standards of construction data of pile foundation projects, select the list of materials to be covered in the construction acceptance materials, and set specific sampling rules.

[0101] The pile foundation construction acceptance area management unit can configure the acceptance area of ​​the pile foundation construction, and define the name of the acceptance area and the axis area range according to the pile foundation construction acceptance requirements.

[0102] The pile foundation construction acceptance application management unit can manage the construction data acceptance application initiated in the pile foundation construction acceptance area, and analyze and judge the completion status of the piles in the acceptance area and the acceptance status of the pile positions.

[0103] The pile foundation construction acceptance data generation unit can generate corresponding material quality summary tables and construction quality summary tables based on the integrity of material receipt and inspection data and construction inspection data in the acceptance area, while allowing the initiation of construction data acceptance application for the acceptance area, and generate sampling acceptance data.

[0104] The pile foundation construction acceptance document review and evidence management unit can generate corresponding acceptance document files for various types of acceptance documents sampled within the acceptance area, conduct online viewing, review and archiving, and generate and assign unique evidence numbers to the acceptance document files, and store them on the blockchain established by the parties involved in the pile foundation project (such as the industry alliance chain).

[0105] Furthermore, the implementation of each unit refers to the steps in the above-mentioned digital management method for pile foundation construction acceptance data.

[0106] In addition, the present application also provides a server, which includes a processor and a memory, wherein the memory stores at least one instruction, at least one program, a code set or an instruction set, and the at least one instruction, the at least one program, the code set or the instruction set is loaded and executed by the processor to implement the steps in the above-mentioned main project construction digital management method.

[0107] The present application also provides a computer-readable storage medium, which stores at least one instruction, at least one program, code set or instruction set. The at least one instruction, at least one program, code set or instruction set is loaded and executed by a processor to implement the steps in the above-mentioned main project construction digital management method.

[0108] The flow charts and block diagrams in the accompanying drawings illustrate the possible architecture, functions and operations of the systems, methods and computer program products according to various embodiments of the present invention. In this regard, each box in the flow chart or block diagram can represent a module, program segment or a part of code, and the module, program segment or a part of code contains one or more executable instructions for realizing the prescribed logical functions. It should also be noted that in some alternative implementations, the functions marked in the box can also occur in a sequence different from that marked in the accompanying drawings. For example, two boxes represented in succession can actually be executed substantially in parallel, and they can sometimes be executed in the opposite order, depending on the functions involved. It should also be noted that each box in the block diagram and / or flow chart, and the combination of the boxes in the block diagram and / or flow chart can be implemented by a dedicated hardware-based system that performs the prescribed function or operation, or can be implemented by a combination of dedicated hardware and computer instructions.

[0109] The units or modules involved in the embodiments described in this application may be implemented in software or hardware. The units or modules described may also be provided in a processor. For example, each of the units may be a software program provided in a computer or mobile smart device, or a separately configured hardware device. The names of these units or modules do not, in certain circumstances, constitute limitations on the units or modules themselves.

[0110] The above description is merely a preferred embodiment of the present application and an illustration of the technical principles employed. Those skilled in the art should understand that the scope of the invention herein is not limited to the technical solutions formed by the specific combination of the above-mentioned technical features, but also encompasses other technical solutions formed by any combination of the above-mentioned technical features or their equivalents without departing from the scope of the present application. For example, a technical solution formed by replacing the above-mentioned features with technical features having similar functions disclosed in this application.

Claims

1. A digital management method for pile foundation construction acceptance data, characterized in that: The following steps are involved: Step 1: Configure the pile foundation construction data acceptance standards, select the list of materials to be included in the construction acceptance documents, and set specific sampling rules, including sampling rules for material acceptance documents and construction inspection documents; Step 2: Configure the pile foundation construction acceptance area, define the acceptance area name and axis area range, configure and manage the piles in the acceptance area, and generate a pile list for the acceptance area; Step 3: Apply for construction data acceptance for the pile foundation project according to the acceptance area, analyze the construction completion status of the piles in the acceptance area and the acceptance status of the pile positions, and determine whether an acceptance application can be initiated for the acceptance area; Step 4: If the construction data acceptance application is allowed to be initiated for the acceptance area, the integrity of the material receipt and inspection data associated with the piles in the acceptance area is analyzed. If the data is complete, a corresponding material quality summary table is generated. The material inspection data is sampled and generated according to the material inspection data sampling rules defined in the acceptance standards. The specific generation algorithm is as follows: (1) According to the steel bar model of the piles in the acceptance area, remove duplicates and generate the steel bar model n-tuple (C1, C2, ..., C n ); (2) According to the steel bar model n-tuple (C1, C2, ..., C n ), for each model C i , i∈(1,2,...,n), randomly select the steel bar model from the steel bar receipt records associated with the piles in the acceptance area, and draw a corresponding steel bar receipt record to obtain the corresponding inspection information and generate the corresponding steel bar inspection data; (3) According to the commercial concrete strength grade of the piles in the acceptance area, remove the duplicates and generate the commercial concrete strength grade m-tuple (T1, T2,..., T m ); (4) According to the strength grade m of commercial concrete (T1, T2, ..., T m ), for each intensity level T k , k∈(1,2,...,m), randomly select the strength grade from the commercial concrete receipt records associated with the piles in the acceptance area, and draw a corresponding commercial concrete receipt record to obtain the corresponding inspection information and generate the corresponding commercial concrete inspection data; Step 5: If the application for construction data acceptance is allowed for the acceptance area, the integrity of the construction inspection data associated with the piles in the acceptance area is analyzed. If the data is complete, a corresponding construction quality summary table is generated, and the construction inspection data is sampled and generated according to the construction inspection data sampling rules defined in the acceptance standards; Step 6. After completing the sampling and generation of the corresponding acceptance materials in the acceptance area, merge and generate a pile foundation construction acceptance material file, submit it to the relevant parties for review and then archive it, and store the acceptance material file on the blockchain to realize the digital management of the pile foundation construction acceptance material.

2. A digital management method for pile foundation construction acceptance data according to claim 1, characterized in that: The step 1 specifically includes: Step 1.1 According to the pile foundation construction acceptance requirements, select the list of materials to be included in the acceptance documents for the purpose of generating the acceptance documents; Step 1.2 Set specific sampling rules according to the construction acceptance requirements of the pile foundation project, including sampling rules for material inspection documents and sampling rules for construction inspection documents; The material inspection data sampling rule is to set the number of material receipt records for random sampling of steel bars and commercial concrete; the construction inspection data sampling rule is to set the random sampling rule for piles.

3. A digital management method for pile foundation construction acceptance data according to claim 1, characterized in that: The second step specifically includes: Step 2.1 Divide and configure the construction acceptance area according to the pile foundation construction acceptance requirements, and define the corresponding axis range in a digital manner; Step 2.2: Arrange the piles in the acceptance area according to the requirements of the pile foundation construction drawings, identify and distinguish the piles according to the pile numbers, and generate a pile list for the acceptance area.

4. A digital management method for pile foundation construction acceptance data according to claim 1, characterized in that: The step three specifically includes: Step 3.1 Select the acceptance area for the pile foundation project and obtain the corresponding pile list; Step 3.2 Analyze the pile status and pile position acceptance of each pile according to the pile list to determine whether the acceptance area meets the conditions for initiating the construction data acceptance application. The specific judgment conditions are as follows: (1) Determine whether all piles in the acceptance area have been piled. If all piles in the acceptance area have been piled, proceed to step (2); otherwise, no acceptance application can be initiated for the acceptance area. (2) Determine whether each pile in the acceptance area has undergone pile position acceptance and the acceptance results are all qualified. If the judgment result is "yes", an acceptance application can be initiated for the acceptance area; otherwise, an acceptance application cannot be initiated for the acceptance area.

5. A digital management method for pile foundation construction acceptance data according to claim 1, characterized in that: In step 4, the criteria for the integrity analysis of material receipt and inspection data are as follows: (1) Whether each pile in the acceptance area has a corresponding steel bar raw material inspection report; (2) Whether the steel bar raw material inspection report associated with each pile in the acceptance area has the corresponding steel bar receipt record; (3) Whether there is a commercial concrete inspection record for each pile in the acceptance area; (4) Whether the commercial concrete inspection record for each pile in the acceptance area has corresponding commercial concrete receipt records and quality certification documents.

6. A digital management method for pile foundation construction acceptance data according to claim 1, characterized in that: In step 5, the judgment conditions for the integrity analysis of construction inspection data are as follows: (1) Whether each pile in the acceptance area has a corresponding standard curing test block test report; (2) Whether each pile in the acceptance area has a corresponding steel bar welding test report; (3) Whether there are corresponding static load test reports for the piles selected for static load test in the acceptance area; (4) Whether the dynamic testing of piles in the acceptance area meets the acceptance coverage requirements and whether there is a corresponding dynamic testing report.

7. A digital management method for pile foundation construction acceptance data according to claim 1, characterized in that: In step five, according to the construction inspection data sampling rules defined in the acceptance standards, piles within the acceptance area are randomly selected, and the corresponding construction and inspection information of the selected piles is obtained according to the data list required by the acceptance standards, and corresponding construction inspection data are generated, including: construction files, on-site image data, steel bar welding inspection report, standard curing test block inspection report, dynamic test report, and static load inspection report.

8. A digital management method for pile foundation construction acceptance data according to claim 1, characterized in that: The step six specifically includes: Step 6.1 For all types of acceptance data generated by sampling within the acceptance area, merge them in a certain order to generate corresponding acceptance data files; Step 6.2 The acceptance documents are archived after review by relevant parties and can be viewed online; Step 6.3: For the generated acceptance document, a unique evidence number is randomly generated and stored on the blockchain established by the parties involved in the pile foundation project.

9. A digital management system for pile foundation construction acceptance data implemented based on the method according to any one of claims 1 to 8, characterized in that: The system includes: The configuration management unit for the acceptance standards of construction data of pile foundation projects can configure the acceptance standards of construction data of pile foundation projects, select the list of materials to be included in the construction acceptance documents, and set specific sampling rules; The pile foundation construction acceptance area management unit can configure the acceptance area of ​​the pile foundation construction and define the name and axis area of ​​the acceptance area according to the pile foundation construction acceptance requirements; The pile foundation construction acceptance application management unit can manage the construction data acceptance application initiation in the pile foundation construction acceptance area, and analyze and judge the completion status of the piles in the acceptance area and the acceptance status of the pile positions; The pile foundation construction acceptance data generation unit can generate corresponding material quality summary tables and construction quality summary tables based on the integrity of material receipt and inspection data and construction inspection data in the acceptance area, while allowing the initiation of construction data acceptance applications for the acceptance area. It can also generate sampling acceptance data. The pile foundation construction acceptance document review and evidence management unit can generate corresponding acceptance document files for various types of acceptance documents sampled within the acceptance area, conduct online viewing, review and archiving, and generate and assign unique evidence numbers to the acceptance document files, and store them on the blockchain established by the parties involved in the pile foundation project.

Citation Information

Patent Citations

  • Pile foundation seven-step quality management method based on BIM model

    CN111709614A

  • Quality evaluation method and system based on BIM model

    CN114519498A