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CN112669019A - Engineering data automatic filing method based on engineering quantity list and quality inspection data correlation interaction - Google Patents

Engineering data automatic filing method based on engineering quantity list and quality inspection data correlation interaction Download PDF

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Publication number
CN112669019A
CN112669019A CN202110132637.6A CN202110132637A CN112669019A CN 112669019 A CN112669019 A CN 112669019A CN 202110132637 A CN202110132637 A CN 202110132637A CN 112669019 A CN112669019 A CN 112669019A
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China
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data
engineering
project
quality
list
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CN202110132637.6A
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Inventor
刘�文
邹南
刘勇军
赵桐远
仇宁涛
康荣
邹育麟
刘静
吴再新
肖建
郑慧琴
申鹏
彭小明
石志良
吴峰
陈镇
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Hunan Jianyan Information Technology Co ltd
Sichuan Railway Investment Group Co ltd
Sichuan Yanjiang Panning Expressway Co ltd
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Hunan Jianyan Information Technology Co ltd
Sichuan Railway Investment Group Co ltd
Sichuan Yanjiang Panning Expressway Co ltd
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Priority to CN202110132637.6A priority Critical patent/CN112669019A/en
Publication of CN112669019A publication Critical patent/CN112669019A/en
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Abstract

The invention discloses an automatic engineering data archiving method based on the correlation and interaction of an engineering quantity list and quality inspection data, which comprises the following steps: establishing various tables of construction project quality and measurement data; establishing unit engineering, subsection and corresponding standard construction procedures; matching tables for the construction procedures; matching a standard engineering quantity list for the construction process, thereby establishing a corresponding relation between the form and the standard engineering quantity list; according to the specific situation instantiation division items, determining an actual engineering quantity list, determining an actually adopted construction process, and further screening out a table suitable for the actual situation from tables corresponding to the construction process; collecting and filling quality original record data, calculating, realizing data circulation and personnel examination and verification, and evaluating the quality; step seven, returning to the step six if the quality assessment is not qualified, and generating a subentry progress meter if the quality assessment is qualified; and step eight, generating the engineering file according to the filing requirement.

Description

Engineering data automatic filing method based on engineering quantity list and quality inspection data correlation interaction
Technical Field
The invention belongs to the field of engineering construction management, and particularly relates to an automatic engineering data archiving method based on the correlation and interaction of an engineering quantity list and quality inspection data.
Background
Progress metering and quality management of construction projects are the primary items of project management, and should be ideally closely coupled. However, the two types of computer software have been two separate functional software (or modules) without connection for a long time, and data cannot be shared and cannot form a relationship that restricts correlation promotion. Under the background, a management system of project progress measurement and project quality association interaction based on a project amount list is researched, and the method has important significance for standardizing project data management, promoting improvement of project quality and improving accuracy and timeliness of the progress measurement.
Disclosure of Invention
The invention provides an automatic engineering data archiving method based on the correlation and interaction of an engineering quantity list and quality inspection data, and solves the problems of disjointed engineering measurement and engineering quality management, non-systematic data form, non-standard filling, non-timeliness and the like.
In order to achieve the technical purpose, the technical scheme of the invention is that,
an automatic engineering data archiving method based on the correlation and interaction of an engineering quantity list and quality inspection data is characterized by comprising the following steps:
step one, establishing various tables of construction engineering quality and measurement data;
step two, establishing unit projects, subsection clauses and corresponding standard construction procedures;
step three, matching tables for the construction procedures;
matching the construction process with the standard engineering quantity list, and establishing a corresponding relation between the form and the standard engineering quantity list based on the construction process;
step five, instantiating partial items according to the specific situation of the project, determining an actual project quantity list, determining an actually adopted construction process according to the actual project quantity list items and list item characteristics, and further screening a table suitable for the actual situation from the tables corresponding to the construction process;
collecting and reporting quality original record data, performing professional calculation according to a set calculation formula, a logic relation and a data flow, realizing data circulation among tables and online examination and verification of related personnel, and finally performing quality evaluation;
step seven, returning to the step six if the quality assessment is not qualified, and automatically generating a subentry progress meter if the quality assessment is qualified;
and step eight, generating the engineering file according to the filing requirement by the generated form and the attached file.
The automatic engineering data archiving method based on the association and interaction of the engineering quantity list and the quality inspection data comprises the following steps that various tables of construction engineering quality and measurement data are established, a plurality of tables for recording data related to engineering progress and performing quality judgment are established, and the tables are divided into three areas, namely an original data acquisition report area, a data calculation processing area and an evaluation area;
the original data acquisition and reporting area is used for filling in direct detection data related to engineering quality, the data calculation processing area is used for automatically generating quality-related data calculation results according to the data in the original data acquisition and reporting area and a preset calculation formula and cannot be directly modified, and the evaluation area is used for automatically obtaining quality evaluation results according to the data in the original data acquisition and reporting area and the data calculation processing area and the preset calculation formula and cannot be directly modified.
The automatic engineering data archiving method based on the correlation and interaction of the engineering quantity list and the quality inspection data is characterized in that the original data acquisition and filling area is filled by different account numbers with preset authority, the filling sequence of table contents is preset for each account number, and the operation process of the account number on the contents is recorded.
The automatic engineering data archiving method based on the association and interaction of the engineering quantity list and the quality inspection data comprises the step of setting and reading a system for displaying a form at present after a database of a project quality data form is built, wherein the form is displayed in a web end display form when the system is a web end system, and the form is displayed in a mobile end display form when the system is a mobile end.
The automatic engineering data archiving method based on the association and interaction of the engineering quantity list and the quality inspection data comprises the following steps of: establishing a unit project, subsection and item and construction procedure database from the total project to the subsection according to different project professional requirements; the construction process refers to standard construction steps which are required to be carried out for completing a certain subentry and have definite quality inspection and evaluation, and each subentry is listed with all possible construction processes and is arranged according to the construction sequence.
The automatic engineering data archiving method based on the association and interaction of the engineering quantity list and the quality inspection data comprises the following steps: matching all possible tables for each construction process, wherein one process comprises at least one table; and the filling order and the reference logic relation among the forms are preset.
The automatic engineering data archiving method based on the association and interaction of the engineering quantity list and the quality inspection data comprises the following steps of: and matching all the standard engineering quantity lists which are possibly required to be used by the construction process in the subsection itemized structure tree, wherein the standard engineering quantity lists are standard engineering quantity lists issued by various industry governing departments and used for engineering measurement, bidding and settlement.
In the fifth step, according to the specific situation of the project, the partial items are instantiated, and the step of determining the actual project amount list comprises the following processes:
(1) selecting one or more branch items matched with the actual project from the branch items and the process classes established in the step two according to the actual situation of the project, copying the branch items and the process classes into the current project to realize instantiation, simultaneously carrying out corresponding times of instantiation according to the specific sub-execution situation of one branch item, and renaming the copied branch items according to the actual project;
(2) inputting an actual list for the instantiated subentries according to the actual situation of the project, wherein the actual list is obtained by rearranging on the basis of a standard list in combination with the actual situation of the project, and the list name is supplemented with feature description comprising project data and unit price for measuring, paying and settling the project progress; after the actual project amount list is input for the subentry, according to the corresponding relation between the process and the project amount list established in the third step, the processes which are not used in the subentry after instantiation and the associated data tables are automatically eliminated, and the data tables of the processes which are actually used are reserved.
The automatic engineering data archiving method based on the association and interaction of the engineering quantity list and the quality inspection data comprises the following steps of: in a specified metering period, summarizing and counting the actual engineering quantity completed in the metering period, then calculating the cost to be paid, and carrying out progress metering payment related flow processing; the metering cycle refers to the time cycle of progress metering payment between the two parties of the first party and the second party in contract agreement.
The automatic engineering data archiving method based on the association and interaction of the engineering quantity list and the quality inspection data comprises the following steps of: presetting a form filing path, generating a file with a specified format at a specified directory position after the form completes the process, performing CA authentication each time the form is circulated, generating and adding an electronic signature, and storing original content in a server of a CA authentication mechanism; and after all the flows of the form are completed, generating a file with a specified format by using all the report contents of the electronic signature structure, and storing the file into a preset directory position.
The invention has the technical effects that the close and efficient association of engineering measurement and engineering quality management can be realized, the systematization of the data forms can be realized, the standardization of filling the data forms can be realized by the operation and supervision among the execution steps, the staff at all levels can be effectively urged to fill the corresponding forms timely and accurately, and the working efficiency is improved.
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FIG. 1 is a basic flow chart of an embodiment of the present invention
FIG. 2 is a diagram of a basic attribute setting interface of a data table according to the present invention;
FIG. 3 is a diagram of a specialized component library setup interface according to the present invention;
FIG. 4 is a table interface diagram of the project amount list correlation data according to the present invention;
FIG. 5 is a diagram illustrating an interface for filling engineering data at a mobile terminal according to the present invention;
FIG. 6 is a schematic diagram of the present invention for filling engineering data at the Web site, calculating and evaluating;
FIG. 7 is a schematic diagram of the present invention for generating an intermediate term meter;
FIG. 8 is a diagram illustrating the filing of a data table according to the present invention.
Detailed Description
The embodiment provides an automatic engineering data archiving method based on the association and interaction of an engineering quantity list and quality inspection data, which comprises the following steps:
step one, establishing a table base of construction engineering quality and measurement data. The form library includes a plurality of construction project quality and measurement data forms for recording data related to the progress of the project and performing quality evaluation, and is provided for facilitating information processing by a computer. Wherein the areas within the table are divided into a raw data acquisition filling area, a data calculation processing area and an assessment area. The original data acquisition and filling area is used for acquiring and filling quality original data, the data calculation and processing area is used for recording a calculation formula in advance, and automatically calculating the intermediate data to be calculated, such as an average value, a representative value, a deviation value, a qualified rate and the like, according to the quality original data. The evaluation area evaluates the parameters of the data in the original data acquisition and filling area and the data calculation and processing area, such as the data frequency filled in the original data acquisition and filling area, the qualification rate calculated by the data calculation and processing area and the like according to the quality inspection and evaluation standard so as to judge whether the component quality meets the requirement. In this embodiment, the role authorities corresponding to the cells in the data form are set at the same time to adapt to the information-based process management, so that the operations of the roles in the quality management process are all completed in the same form, but each role can only fill the form unit with the authority, and the filling sequence of the form is allocated to each role, that is, the filling sequence of each role for the form is specified according to specific needs, for example, after the specified form unit content is filled by a certain role, the contents of other part of the form unit are allowed to be filled by another role, so that the timeliness of filling the form can be ensured under the required condition, that is, people are responsible for incomplete filling, and a specific role is responsible for filling a part of the form. Meanwhile, in order to enable the form to be displayed clearly and in accordance with the size of the screen on the PC and the mobile terminal, the distribution arrangement style of the form on the mobile terminal is set in the embodiment, and the position, the sequence and the arrangement relation of the data cells are changed under the condition that the logical relation of the form data is not changed, so that the original data acquisition and filling can be carried out on the mobile equipment with few screens on the complex form. In the step, a form filing path can be preset, and a file with a specified format is generated at a specified directory position after the form completes the process, so that the data filing management is realized.
And step two, establishing unit projects, branch items and corresponding construction process libraries. Establishing a unit project, subsection and item and construction procedure database from the total project to the subsection according to different project professional requirements; the construction process refers to standard construction steps which are required to be carried out for completing a certain subentry and have definite quality inspection and evaluation, and each subentry is listed with all possible construction processes and is arranged according to the construction sequence. The method is used for establishing a multi-level standard data table library of major, unit project (chapter), component (subentry) and subentry, leaf nodes in the library divide one or more process subentries according to the construction process, and each subentry is associated with a plurality of data table combinations generated in the first step. Where the specialties include specialties such as buildings, highways, railways, water conservancy, municipalities, and the like. The data table combination includes the name of the data table, the filling sequence, the logic association between the tables, etc.
And step three, matching tables for the construction procedures. Matching all possible tables for each construction process, wherein one process comprises at least one table; and the filling order and the reference logic relation among the forms are preset.
And step four, matching the standard engineering quantity list for the construction process, and thus establishing the corresponding relation between the form and the standard engineering quantity list based on the construction process. The construction process in the subsection itemized structure tree is matched with all standard engineering quantity lists which are possibly required to be used by the process, wherein the standard engineering quantity lists are standard engineering quantity lists issued by various industry governing departments and used for engineering measurement, bidding and settlement.
Step five, instantiating partial items according to the specific situation of the project, determining an actual project quantity list, determining an actually adopted construction process according to the actual project quantity list items and list item characteristics, and further screening a table suitable for the actual situation from the tables corresponding to the construction process. Wherein instantiating the partition item according to the specific situation of the project, determining the actual project quantity inventory comprises the following processes:
(1) selecting one or more branch items matched with the actual project from the branch items and the process classes established in the step two according to the actual situation of the project, copying the branch items and the process classes into the current project to realize instantiation, simultaneously carrying out corresponding times of instantiation according to the specific sub-execution situation of one branch item, and renaming the copied branch items according to the actual project;
(2) inputting an actual list for the instantiated subentries according to the actual situation of the project, wherein the actual list is obtained by rearranging on the basis of a standard list in combination with the actual situation of the project, and the list name is supplemented with feature description comprising project data and unit price for measuring, paying and settling the project progress; after the actual project amount list is input for the subentry, according to the corresponding relation between the process and the project amount list established in the third step, the processes which are not used in the subentry after instantiation and the associated data tables are automatically eliminated, and the data tables of the processes which are actually used are reserved.
The step can set the attribute corresponding to the engineering quantity list according to the requirement, namely, the engineering quantity list is associated with the resource table group, the attribute comprises a key word and an exclusion key word, the key word and the exclusion key word are a set consisting of one or more key word elements, and each key word element has different weight values. The project amount list contained in each component (subentry) in the construction project is matched with 'including key words', 'excluding key words', 'matching priority weight' in each record in the professional component database through the list name, project characteristics, belonging subentry, etc., so as to select one or more groups of data tables which are matched most, and then the data tables required by quality control of each component (subentry) in the construction project are combined.
And step six, acquiring and filling quality original record data, performing professional calculation according to a set calculation formula, a logic relation and a data flow, realizing data circulation among tables and online examination and verification of related personnel, and finally performing quality evaluation. When the quality evaluation is performed, whether each reported value meets the standard or not can be judged according to the standards of upper and lower limits, extreme values and the like set in the table. And then judging whether a certain group of data is qualified or not according to the set qualified rate on the basis of the judgment. And finally, on the basis of the evaluation, evaluating whether the whole component (subentry) is qualified according to the qualification standard of the component (subentry).
And step seven, if the quality evaluation is unqualified, returning to the step six, and if the quality evaluation is qualified, automatically generating the itemized progress meter. And the step six is returned to find out the data which causes the unqualified construction, and then the construction process with the problems and the construction steps in the process are found according to the data, so that the construction is carried out again to reach the qualified standard. And the automatic generation of the subentry progress meter when the quality is qualified comprises the following processes: in a specified metering period, summarizing and counting the actual engineering quantity completed in the metering period, then calculating the cost to be paid, and carrying out progress metering payment related flow processing; the metering cycle refers to the time cycle of progress metering payment between the two parties of the first party and the second party in contract agreement.
And step eight, generating the engineering file according to the filing requirement by the generated form and the attached file. The method comprises the steps that a form filing path is preset, a file with a specified format is generated at a specified directory position after a form completes a process, CA authentication is carried out during each circulation of the form, an electronic signature is generated and added, and original contents are stored in a server of a CA authentication mechanism; and after all the flows of the form are completed, generating a file with a specified format by using all the report contents of the electronic signature structure, and storing the file into a preset directory position.

Claims (10)

1. An automatic engineering data archiving method based on the correlation and interaction of an engineering quantity list and quality inspection data is characterized by comprising the following steps:
step one, establishing various tables of construction engineering quality and measurement data;
step two, establishing unit projects, subsection clauses and corresponding standard construction procedures;
step three, matching tables for the construction procedures;
matching the construction process with the standard engineering quantity list, and establishing a corresponding relation between the form and the standard engineering quantity list based on the construction process;
step five, instantiating partial items according to the specific situation of the project, determining an actual project quantity list, determining an actually adopted construction process according to the actual project quantity list items and list item characteristics, and further screening a table suitable for the actual situation from the tables corresponding to the construction process;
collecting and reporting quality original record data, performing professional calculation according to a set calculation formula, a logic relation and a data flow, realizing data circulation among tables and online examination and verification of related personnel, and finally performing quality evaluation;
step seven, returning to the step six if the quality assessment is not qualified, and automatically generating a subentry progress meter if the quality assessment is qualified;
and step eight, generating the engineering file according to the filing requirement by the generated form and the attached file.
2. The automatic engineering data archiving method based on the association and interaction of the engineering quantity list and the quality inspection data according to claim 1, wherein the first step of establishing various forms of the construction engineering quality and the measurement data is to establish a plurality of forms for recording data related to the engineering progress and performing quality evaluation, and the forms are divided into three areas, namely an original data acquisition and filling area, a data calculation and processing area and an evaluation area;
the original data acquisition and reporting area is used for filling in direct detection data related to engineering quality, the data calculation processing area is used for automatically generating quality-related data calculation results according to the data in the original data acquisition and reporting area and a preset calculation formula and cannot be directly modified, and the evaluation area is used for automatically obtaining quality evaluation results according to the data in the original data acquisition and reporting area and the data calculation processing area and the preset calculation formula and cannot be directly modified.
3. The automatic engineering data archiving method based on the association and interaction of the engineering quantity list and the quality inspection data as claimed in claim 2, wherein the original data acquisition and filling area is filled by different account numbers with preset authority, a form content filling sequence is preset for each account number, and an operation process of the account number on the content is recorded.
4. The method as claimed in claim 1, wherein the step one of establishing the database of the project quality data table and reading the system for displaying the table is further included after establishing the database of the project quality data table, wherein the table is displayed in a web-side display mode when the system is a web-side system, and the table is displayed in a mobile-side display mode when the system is a mobile terminal.
5. The method as claimed in claim 1, wherein the second step comprises the following steps: establishing a unit project, subsection and item and construction procedure database from the total project to the subsection according to different project professional requirements; the construction process refers to standard construction steps which are required to be carried out for completing a certain subentry and have definite quality inspection and evaluation, and each subentry is listed with all possible construction processes and is arranged according to the construction sequence.
6. The method as claimed in claim 1, wherein the third step comprises the following steps: matching all possible tables for each construction process, wherein one process comprises at least one table; and the filling order and the reference logic relation among the forms are preset.
7. The method as claimed in claim 1, wherein the step four of matching the standard engineering quantity list for the construction process comprises the following steps: and matching all the standard engineering quantity lists which are possibly required to be used by the construction process in the subsection itemized structure tree, wherein the standard engineering quantity lists are standard engineering quantity lists issued by various industry governing departments and used for engineering measurement, bidding and settlement.
8. The automatic engineering material archiving method based on the association and interaction between the engineering quantity list and the quality inspection material as claimed in claim 1, wherein in the fifth step, the step of instantiating the partial items according to the specific situation of the engineering to determine the actual engineering quantity list comprises the following processes:
(1) selecting one or more branch items matched with the actual project from the branch items and the process classes established in the step two according to the actual situation of the project, copying the branch items and the process classes into the current project to realize instantiation, simultaneously carrying out corresponding times of instantiation according to the specific sub-execution situation of one branch item, and renaming the copied branch items according to the actual project;
(2) inputting an actual list for the instantiated subentries according to the actual situation of the project, wherein the actual list is obtained by rearranging on the basis of a standard list in combination with the actual situation of the project, and the list name is supplemented with feature description comprising project data and unit price for measuring, paying and settling the project progress; after the actual project amount list is input for the subentry, according to the corresponding relation between the process and the project amount list established in the third step, the processes which are not used in the subentry after instantiation and the associated data tables are automatically eliminated, and the data tables of the processes which are actually used are reserved.
9. The method as claimed in claim 1, wherein the step seven of automatically generating the project progress meter when the quality is qualified comprises the following steps: in a specified metering period, summarizing and counting the actual engineering quantity completed in the metering period, then calculating the cost to be paid, and carrying out progress metering payment related flow processing; the metering cycle refers to the time cycle of progress metering payment between the two parties of the first party and the second party in contract agreement.
10. The method as claimed in claim 1, wherein the step eight of generating the engineering file comprises the following steps: presetting a form filing path, generating a file with a specified format at a specified directory position after the form completes the process, performing CA authentication each time the form is circulated, generating and adding an electronic signature, and storing original content in a server of a CA authentication mechanism; and after all the flows of the form are completed, generating a file with a specified format by using all the report contents of the electronic signature structure, and storing the file into a preset directory position.
CN202110132637.6A 2021-01-31 2021-01-31 Engineering data automatic filing method based on engineering quantity list and quality inspection data correlation interaction Pending CN112669019A (en)

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CN113868753A (en) * 2021-12-06 2021-12-31 深圳市城市交通规划设计研究中心股份有限公司 Intelligent metering method and device for building engineering, computing equipment and storage medium
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