Construction site potential safety hazard digital management system
By introducing a digital management system for safety hazards at the construction site, the problems of information asymmetry and poor management in the existing system are solved, and the entire process traceability and refined management of safety hazards at the construction site are realized.
Patent Information
- Application Number
- CN202510055246.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2025-05-06
AI Technical Summary
The existing construction site safety hazard management system has problems such as information asymmetry, inability to trace problems, inability to process approval, and inability to realize effective management and closed-loop management of automated generation inspections and shift inspections.
It provides a digital management system for safety hazards on construction sites, including a construction site safety hazard database module, a safety hazard reporting list processing module, a safety hazard project registration list processing module, a safety hazard reporting list processing module, a safety hazard management preparation module, a safety hazard management patrol module and a safety hazard shift inspection module. Through the collaboration of these modules, the operation standardization of safety hazard management and the connection of information means is realized.
It realizes integrated digital control of safety hazards on construction sites, and can control the content of hidden dangers in real time and refinely, forming a full process traceability of the content of hidden dangers from reporting to project approval, reporting, management preparation, inspection and shift inspection, solving the problems of information asymmetry and poor management in the existing system.
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Figure CN119941172A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of construction engineering safety management, and in particular relates to a digital management system for potential safety hazards at a construction site. Background Art
[0002] Safety hazards are the most important part of construction project safety management, and have a significant impact on the safety level of the entire construction process. During the entire construction process, 43 types of related content and nearly 923 standards will be involved on site. In addition, different types of hidden dangers will be divided into 4 different safety levels (such as level 2, level 1, fatal level and super-fatal level, etc.), and different levels of periodic inspections and shift inspections are required for different safety levels.
[0003] At present, there are the following deficiencies in the management of safety hazards at construction sites: (1) There is no standard hazard database, which cannot assist the site in establishing a hazard list that meets the requirements of the construction project at the beginning of the project; (2) There is no standard hazard process, and there is a hierarchical fragmentation and information asymmetry in the on-site hazard situation; (3) There is no relevant responsible entity and person in charge for each hazard content, and the risk of on-site hazards cannot be assigned to a person; (4) The relevant preparation materials for the hazard content during the construction period are not archived in time, and the relevant safety measures and corresponding materials cannot be quickly accessed afterwards; (5) The hazard content during the construction period is not inspected in time, and it is impossible to ensure whether there will be relevant safety risks during the project progress, and the safety hazards existing on site cannot be rectified in time; (6) During the construction period, for some fatal and super-fatal hazards, periodic data reporting and reminders are not carried out, resulting in the relevant leaders of the company and subsidiaries not conducting relevant shift inspections in time, and not conducting on-site inspections and guidance on high-risk content on site in time.
[0004] Therefore, facing the above situation, how to provide a digital management and control system that can integrate hidden dangers has become an urgent problem to be solved. Summary of the invention
[0005] The purpose of the present invention is to provide a digital management system for construction site safety hazards, so as to solve the problems of information asymmetry, inability to trace problems, inability to implement process-based approval, inability to realize automatic generation of inspections, and inability to achieve effective management and closed-loop management of on-duty inspections in existing construction project safety management solutions.
[0006] In order to achieve the above object, the present invention adopts the following technical solutions:
[0007] In the first aspect, a digital management system for construction site safety hazards is provided, including:
[0008] The construction site safety hazard database module is used to obtain and store the construction site safety hazard data content;
[0009] A safety hazard review list processing module is communicatively connected to the construction site safety hazard database module, and is used to obtain the content of the construction site safety hazard data, and respond to the first human-computer interaction operation of the user to form safety hazard review list data based on the content of the construction site safety hazard data;
[0010] a safety hazard project establishment list processing module, which is communicatively connected to the safety hazard review list processing module, and is used to obtain the safety hazard review list data that has passed the review, and respond to a fifth human-computer interaction operation of the user, and form safety hazard project establishment list data based on the safety hazard review list data that has passed the review;
[0011] a safety hazard reporting list processing module, which is communicatively connected to the safety hazard project establishment list processing module, and is used to obtain the safety hazard project establishment list data that has passed the project establishment review, and to respond to a ninth human-computer interaction operation of the user, and to form safety hazard reporting list data based on the safety hazard project establishment list data that has passed the project establishment review;
[0012] a safety hazard management preparation module, which is communicatively connected to the safety hazard reporting list processing module, and is used to obtain the safety hazard reporting list data that has passed the reporting review, and to respond to the thirteenth human-computer interaction operation of the user, and to form safety hazard management preparation data based on the safety hazard reporting list data that has passed the reporting review;
[0013] a safety hazard management inspection module, which is respectively communicatively connected to the safety hazard project establishment list processing module, the safety hazard reporting list processing module and / or the safety hazard management preparation module, and is used to obtain the safety hazard project establishment list data that has passed the project establishment review, the safety hazard reporting list data that has passed the reporting review and / or the safety hazard management preparation data that has passed the confirmation review, and respond to the nineteenth human-computer interaction operation of the user, and form periodic safety management inspection list data based on the acquired data;
[0014] The safety hazard on-duty inspection module is respectively communicatively connected to the safety hazard project list processing module, the safety hazard reporting list processing module and / or the safety hazard management preparation module, and is used to obtain the safety hazard project list data that has passed the project establishment review, the safety hazard reporting list data that has passed the reporting review and / or the safety hazard management preparation data that has passed the confirmation review, and respond to the user's twenty-fifth human-computer interaction operation, and form periodic safety hazard on-duty inspection list data based on the acquired data.
[0015] Based on the above invention content, a new digital management and control scheme for realizing the integrated safety hazard situation at the construction site is provided, namely, it includes a construction site safety hazard database module, a safety hazard review list processing module, a safety hazard project establishment list processing module, a safety hazard reporting list processing module, a safety hazard management preparation module, a safety hazard management inspection module and a safety hazard on-duty inspection module, and through their functional limitation and collaboration, the standardization of on-site safety hazard management actions can be formulated, and through information technology, all the contents of the safety hazard management can be connected in series, which is conducive to the real-time and refined control of the on-site hazard content, and can better assist on-site safety supervision and management, and then form a whole process traceability of the hazard content from review to project establishment, reporting, management preparation, inspection and on-duty inspection and rectification, and form a structured management mode of "one hazard one process" and "one hazard one file", so as to solve the problems of information asymmetry, inability to trace problems, inability to realize process-based approval, inability to realize automatic generation of inspections and effective management and closed-loop management of on-duty inspections in the existing construction engineering safety management schemes, and is very suitable for large-scale application and promotion in the field of safety hazards in the construction stage.
[0016] In a possible design, the construction site safety hazard database module includes a database basic parameter production unit and / or a data import generation unit;
[0017] The database basic parameter production unit is used to obtain basic information of the construction site safety hazard database, and to classify and freely combine the obtained basic information to form initialized construction site safety hazard data content;
[0018] The data import generation unit is used to parse the data in the import table, and automatically classify and freely combine the parsed data to automatically form the initialized construction site safety hazard data content.
[0019] In a possible design, the safety hazard review list processing module includes a first data acquisition unit, a review list generation unit and a review list confirmation unit;
[0020] The first data acquisition unit is communicatively connected to the construction site safety hazard database module, and is used to respond to a second human-computer interaction operation of a user to select the construction site safety hazard data content that meets the project requirements;
[0021] The review list generating unit is communicatively connected to the first data acquiring unit, and is used to respond to a third human-computer interaction operation of a user, and generate safety hazard review list data based on the safety hazard data content of the construction site that is selected and meets the project requirements;
[0022] The review list confirmation unit is communicatively connected to the review list generation unit, and is used to respond to a fourth human-computer interaction operation of the user, review the safety hazard review list data, and obtain a first review result.
[0023] In a possible design, the safety hazard project list processing module includes a second data acquisition unit, a project list generation unit and a project list confirmation unit;
[0024] The second data acquisition unit is communicatively connected to the safety hazard review list processing module, and is used to respond to the safety hazard review list data selected by the user through a sixth human-computer interaction operation;
[0025] The project establishment list generating unit is communicatively connected to the second data acquiring unit, and is used to respond to a seventh human-computer interaction operation of the user, and generate safety hazard project establishment list data based on the safety hazard review list data that is selected and passed the review;
[0026] The project list confirmation unit is communicatively connected to the project list generation unit, and is used to respond to the user's eighth human-computer interaction operation, review the safety hazard project list data, and obtain a second review result.
[0027] In a possible design, the safety hazard reporting list processing module includes a third data acquisition unit, a reporting list generating unit and a reporting list confirming unit;
[0028] The third data acquisition unit is communicatively connected to the safety hazard project list processing module, and is used to respond to the user's tenth human-computer interaction operation to select the safety hazard project list data that has passed the project review;
[0029] The reporting list generating unit is communicatively connected to the third data acquiring unit, and is used to respond to an eleventh human-computer interaction operation of the user, and generate safety hazard reporting list data based on the safety hazard project list data selected and passed the project establishment review;
[0030] The reporting list confirmation unit is communicatively connected to the reporting list generation unit, and is used to respond to the twelfth human-computer interaction operation of the user, review the safety hazard reporting list data, and obtain a third review result.
[0031] In a possible design, the safety hazard management preparation module includes a fourth data acquisition unit, a preparation data generation unit, a node data upload unit, a first process flow unit and an uploaded data review unit;
[0032] The fourth data acquisition unit is communicatively connected to the safety hazard reporting list processing module, and is used to respond to the fourteenth human-computer interaction operation of the user to obtain the safety hazard reporting list data of different hazard levels and passed the reporting review;
[0033] The preparation data generating unit is communicatively connected to the fourth data acquiring unit, and is used to respond to the fifteenth human-computer interaction operation of the user, and generate safety hazard management preparation data of different hazard levels based on the safety hazard reporting list data of different hazard levels and passed the reporting review;
[0034] The node data uploading unit is communicatively connected to the preparation data generating unit, and is used to respond to the sixteenth human-computer interaction operation of the user, and upload the data required by each process node based on the safety hazard management preparation data of different hazard levels;
[0035] The first process transfer unit is communicatively connected to the node data upload unit, and is used to respond to the seventeenth human-computer interaction operation of the user during the data upload process, perform a node delegation operation, so as to upload the data through the node data upload unit, and perform node return of the data, so as to complete the work of the node data upload unit;
[0036] The uploaded data review unit is communicatively connected to the first process flow unit, and is used to respond to the user's eighteenth human-computer interaction operation, confirm and review the returned node content, and obtain a fourth review result.
[0037] In a possible design, the safety hazard management inspection module includes a fifth data acquisition unit, an inspection list generation unit, a first node data generation unit, a second process flow unit, a first input data review unit, a first rectification list generation unit, a second node data generation unit and a first rectification review unit;
[0038] The fifth data acquisition unit is respectively connected to the safety hazard project establishment list processing module, the safety hazard reporting list processing module and / or the safety hazard management preparation module, and is used to acquire the safety hazard project establishment list data that has passed the project establishment review, the safety hazard reporting list data that has passed the reporting review and / or the safety hazard management preparation data that has passed the confirmation review;
[0039] The inspection list generation unit is communicatively connected to the fifth data acquisition unit, and is used to automatically create the inspection list based on the acquired data, and automatically generate periodic safety management inspection list data within the duration range through the duration field data;
[0040] The first node data generating unit is communicatively connected to the inspection list generating unit and is used to perform data entry operation on each node data in response to the user's twentieth human-machine operation based on the safety management inspection list data;
[0041] The second process flow unit is communicatively connected to the first node data generation unit, and is used to respond to the twenty-first human-computer interaction operation of the user during the process of node data entry, perform a node delegation operation, so as to enter data through the first node data generation unit, and perform node return of the entered data, so as to complete the work of the first node data generation unit;
[0042] The first input data review unit is communicatively connected to the second process flow unit, and is used to respond to the twenty-second human-computer interaction operation of the user, confirm and review the returned input data, and obtain a fifth review result;
[0043] The first rectification list generating unit is respectively connected to the inspection list generating unit and the first input data review unit for generating first rectification list data based on the safety management inspection list data that needs to be rectified after review and confirmation;
[0044] The second node data generating unit is communicatively connected to the first rectification list generating unit, and is used to perform a secondary data entry operation on each node data in response to a twenty-third human-machine operation of a user based on the first rectification list data;
[0045] The first rectification and review unit is communicatively connected to the second node data generating unit, and is used to respond to the user's twenty-fourth human-machine operation to confirm and review the node content that has completed the secondary data entry, and obtain a sixth review result.
[0046] In a possible design, the safety hazard on-duty inspection module includes a sixth data acquisition unit, an inspection list generation unit, a third node data generation unit, a third process flow unit, a second input data review unit, a second rectification list generation unit, a fourth node data generation unit and a second rectification review unit;
[0047] The sixth data acquisition unit is respectively connected to the safety hazard project establishment list processing module, the safety hazard reporting list processing module and / or the safety hazard management preparation module, and is used to acquire the safety hazard project establishment list data that has passed the project establishment review, the safety hazard reporting list data that has passed the reporting review and / or the safety hazard management preparation data that has passed the confirmation review;
[0048] The checklist generation unit is communicatively connected to the sixth data acquisition unit, and is used to automatically create a checklist based on the acquired data, and automatically generate periodic safety hazard on-duty checklist data within the duration range through the duration field data;
[0049] The third node data generating unit is communicatively connected to the checklist generating unit and is used to perform data entry operation on each node data in response to the user's twenty-sixth human-machine operation based on the safety hazard shift checklist data;
[0050] The third process flow unit is communicatively connected to the third node data generation unit, and is used to respond to the twenty-seventh human-computer interaction operation of the user during the process of node data entry, perform a node delegation operation, so as to enter data through the third node data generation unit, and perform node return of the entered data, so as to complete the work of the third node data generation unit;
[0051] The second input data review unit is communicatively connected to the third process flow unit, and is used to respond to the twenty-eighth human-computer interaction operation of the user, confirm and review the returned input data, and obtain a seventh review result;
[0052] The second rectification list generating unit is respectively connected to the inspection list generating unit and the second input data review unit for generating second rectification list data based on the safety hazard on-duty inspection list data that is reviewed and confirmed to need rectification;
[0053] The fourth node data generating unit is communicatively connected to the second rectification list generating unit, and is used to perform a secondary data entry operation on each node data in response to a twenty-ninth human-machine operation of the user based on the second rectification list data;
[0054] The second rectification and review unit is communicatively connected to the fourth node data generation unit, and is used to respond to the user's thirtieth human-machine operation to confirm and review the node content that has completed the secondary data entry, and obtain an eighth review result.
[0055] In a possible design, the safety hazard on-duty inspection module also includes a multi-enterprise level unit;
[0056] The multi-enterprise hierarchical unit is communicatively connected to the inspection list generation unit and is used to obtain the organizational structure of the construction enterprise so that the inspection list generation unit can generate corresponding safety hazard shift inspection list data for different architectural levels.
[0057] In a possible design, the safety hazard on-duty inspection module includes a project-level safety hazard on-duty inspection submodule for leaders to conduct on-duty inspections on safety hazard contents of all levels, a sub-enterprise-level safety hazard on-duty inspection submodule for leaders to conduct on-duty inspections on safety hazard contents of level one and above, and an enterprise-level safety hazard on-duty inspection submodule for leaders to conduct on-duty inspections on safety hazard contents of level fatal and above;
[0058] The construction site safety hazard digital management system also includes a project-level safety hazard inspection and rectification module, wherein the project-level safety hazard inspection and rectification module is communicatively connected to the sub-enterprise-level safety hazard shift inspection sub-module and the enterprise-level safety hazard shift inspection sub-module, respectively, for obtaining the data to be rectified created by the sub-enterprise-level safety hazard shift inspection sub-module and the enterprise-level safety hazard shift inspection sub-module during the safety hazard shift inspection process, and responding to the user's thirty-first human-computer interaction operation, to form safety hazard rectification data based on the data to be rectified.
[0059] Beneficial effects of the above scheme:
[0060] (1) The present invention provides a new digital management and control scheme for realizing the integration of safety hazards at construction sites, namely, it includes a construction site safety hazard database module, a safety hazard review list processing module, a safety hazard project establishment list processing module, a safety hazard reporting list processing module, a safety hazard management preparation module, a safety hazard management inspection module and a safety hazard on-duty inspection module. Through their functional limitation and collaboration, the standardization of on-site safety hazard management actions can be formulated, and through information technology, all safety hazard management contents can be connected in series, which is conducive to real-time and refined control of on-site hazard contents, and can better assist on-site safety supervision and management, thereby forming a full process traceability of hazard contents from review to project establishment, reporting, management preparation, inspection and on-duty inspection and rectification, and forming a structured management mode of "one hazard one process" and "one hazard one file", solving the problems of information asymmetry, inability to trace problems, inability to realize process-based approval, inability to realize automatic generation of inspections and effective management and closed-loop management of on-duty inspections in existing construction engineering safety management schemes, and is very suitable for large-scale application and promotion in the field of safety hazards at the construction stage;
[0061] (2) It can also be connected through the enterprise hierarchical structure to help enterprise senior management to intuitively understand the hidden dangers of the project and assist them in completing relevant hidden danger management actions;
[0062] (3) It can also be deeply matched with on-site safety hazard management. By establishing a safety hazard database, the project hazards under different business formats can be classified into different categories;
[0063] (4) It is also possible to formulate project hidden danger management standards, assign people, positions and responsibilities for all hidden dangers, and achieve integrated process management;
[0064] (5) It can also standardize the materials and prerequisites required for the hidden danger process according to different hidden danger contents, forming a structured management model of "one hidden danger, one file";
[0065] (6) Different inspection methods and cycles can also be formulated for different hidden dangers on site to reduce the risk of hidden dangers on site and increase the coverage rate of hidden danger inspections;
[0066] (7) For the enterprise leadership level, by summarizing hidden danger data, multi-dimensional data analysis can be conducted on different projects to improve the closed-loop management of hidden dangers. BRIEF DESCRIPTION OF THE DRAWINGS
[0067] 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.
[0068] Figure 1 A schematic diagram of the structure of a digital management system for construction site safety hazards provided in an embodiment of the present application. DETAILED DESCRIPTION
[0069] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the present invention will be briefly introduced below in combination with the drawings and the description of the embodiments or the prior art. Obviously, the following description of the structures of the drawings is only some embodiments of the present invention. For ordinary technicians in this field, other embodiments can be obtained based on these embodiments without creative work. It should be noted that the description of these embodiments is used to help understand the present invention, but does not constitute a limitation of the present invention.
[0070] It should be understood that although the terms first and second, etc. may be used herein to describe various objects, these objects should not be limited by these terms. These terms are only used to distinguish one object from another object. For example, a first object can be referred to as a second object, and similarly, a second object can be referred to as a first object without departing from the scope of the exemplary embodiments of the present invention.
[0071] It should be understood that the term "and / or" that may appear in this document is merely a description of the association relationship between associated objects, indicating that there may be three relationships. For example, A and / or B can indicate three situations: A exists alone, B exists alone, or A and B exist at the same time. For another example, A, B and / or C can indicate the existence of any one of A, B and C or any combination of them. The term " / and" that may appear in this document describes another type of association object relationship, indicating that there may be two relationships. For example, A / and B can indicate two situations: A exists alone or A and B exist at the same time. In addition, the character " / " that may appear in this document generally indicates that the previous and next associated objects are in an "or" relationship.
[0072] Example
[0073] like Figure 1 As shown, the construction site safety hazard digital management system provided by the present embodiment includes but is not limited to a construction site safety hazard database module, a safety hazard reporting list processing module, a safety hazard project establishment list processing module, a safety hazard reporting list processing module, a safety hazard management preparation module, a safety hazard management inspection module and a safety hazard shift inspection module, among which the construction site safety hazard database module will be deeply integrated with the safety hazard management reporting module of the target project, so as to obtain the construction site safety hazard data content of the project, thereby achieving the purpose of subsequent combination with other modules to carry out the whole process flow of safety hazards.
[0074] The construction site safety hazard database module is used to obtain and store the construction site safety hazard data content. Specifically, the construction site safety hazard database module includes but is not limited to a database basic parameter production unit and / or a data import generation unit; the database basic parameter production unit is used to obtain the basic information of the construction site safety hazard database, and classify and freely combine the acquired basic information to form the initialized construction site safety hazard data content; the data import generation unit is used to parse the data in the import table (such as Excel table, etc.), and automatically classify and freely combine the parsed data to automatically form the initialized construction site safety hazard data content. The construction site safety hazard database can be specifically but not limited to a database of multiple industries such as housing engineering, transportation construction, water conservancy engineering, and water conservancy engineering operation management.
[0075] The safety hazard report list processing module is communicatively connected to the construction site safety hazard database module, and is used to obtain the content of the construction site safety hazard data, and respond to the user's first human-computer interaction operation to form safety hazard report list data based on the construction site safety hazard data content. Specifically, the safety hazard report list processing module includes but is not limited to a first data acquisition unit, a report list generation unit, and a report list confirmation unit; the first data acquisition unit is communicatively connected to the construction site safety hazard database module, and is used to respond to the user's second human-computer interaction operation to select the content of the construction site safety hazard data that meets the project requirements; the report list generation unit is communicatively connected to the first data acquisition unit, and is used to respond to the user's third human-computer interaction operation, and generate safety hazard report list data based on the selected and project-compliant content of the construction site safety hazard data; the report list confirmation unit is communicatively connected to the report list generation unit, and is used to respond to the user's fourth human-computer interaction operation to review the safety hazard report list data and obtain a first review result. In detail, the safety hazard report list processing module can be subdivided into a project-level safety hazard report list processing sub-module and an enterprise-level safety hazard report list processing sub-module, and when the review result of the safety hazard report list data is passed, the safety hazard report list data can be sent to the enterprise-level safety hazard report list processing sub-module for enterprise-level review, and then when the enterprise-level review is passed, the safety hazard report list data is sent to the project-level safety hazard report list processing sub-module, and all review results are transmitted to the project-level safety hazard report list processing sub-module to complete all reviews.
[0076] The safety hazard project list processing module is communicatively connected to the safety hazard review list processing module, and is used to obtain the safety hazard review list data that has passed the review, and respond to the fifth human-computer interaction operation of the user, and form the safety hazard project list data based on the safety hazard review list data that has passed the review. Specifically, the safety hazard project list processing module includes but is not limited to a second data acquisition unit, a project list generation unit, and a project list confirmation unit; the second data acquisition unit is communicatively connected to the safety hazard review list processing module, and is used to respond to the sixth human-computer interaction operation of the user to select the safety hazard review list data that has passed the review; the project list generation unit is communicatively connected to the second data acquisition unit, and is used to respond to the seventh human-computer interaction operation of the user, and generate the safety hazard project list data based on the safety hazard review list data that has been selected and passed the review; the project list confirmation unit is communicatively connected to the project list generation unit, and is used to respond to the eighth human-computer interaction operation of the user to review the safety hazard project list data and obtain a second review result. In detail, the safety hazard project list processing module can be subdivided into a project-level safety hazard project list processing sub-module, a sub-enterprise-level safety hazard project list processing sub-module and an enterprise-level safety hazard project list processing sub-module, and when the audit result of the safety hazard project list data is passed, the safety hazard project list data can be sent to the sub-enterprise-level safety hazard project list processing sub-module for sub-enterprise-level review, and then when the sub-enterprise-level review is passed, the safety hazard project list data is sent to the enterprise-level safety hazard project list processing sub-module for enterprise-level review, and then when the enterprise-level review is passed, the safety hazard project list data is sent to the project-level safety hazard project list processing sub-module, and all audit results are transmitted to the project-level safety hazard project list processing sub-module to complete all audits.
[0077] The safety hazard reporting list processing module is communicatively connected to the safety hazard project list processing module, and is used to obtain the safety hazard project list data that has passed the project review, and respond to the ninth human-computer interaction operation of the user, and form the safety hazard reporting list data based on the safety hazard project list data that has passed the project review. Specifically, the safety hazard reporting list processing module includes but is not limited to a third data acquisition unit, a reporting list generation unit, and a reporting list confirmation unit; the third data acquisition unit is communicatively connected to the safety hazard project list processing module, and is used to respond to the tenth human-computer interaction operation of the user to select the safety hazard project list data that has passed the project review; the reporting list generation unit is communicatively connected to the third data acquisition unit, and is used to respond to the eleventh human-computer interaction operation of the user, and generate the safety hazard reporting list data based on the safety hazard project list data that has been selected and passed the project review; the reporting list confirmation unit is communicatively connected to the reporting list generation unit, and is used to respond to the twelfth human-computer interaction operation of the user, and review the safety hazard reporting list data to obtain the third review result. In detail, the safety hazard reporting list processing module can be subdivided into a project-level safety hazard reporting list processing sub-module, a sub-enterprise-level safety hazard reporting list processing sub-module and an enterprise-level safety hazard reporting list processing sub-module, and when the audit result of the safety hazard reporting list data is passed, the safety hazard reporting list data can be sent to the sub-enterprise-level safety hazard reporting list processing sub-module for sub-enterprise-level review, and then when the sub-enterprise-level review is passed, the safety hazard reporting list data is sent to the enterprise-level safety hazard reporting list processing sub-module for enterprise-level review, and then when the enterprise-level review is passed, the safety hazard reporting list data is sent to the project-level safety hazard reporting list processing sub-module, and all audit results are transmitted to the project-level safety hazard reporting list processing sub-module to complete all audits.
[0078] The safety hazard management preparation module is communicatively connected to the safety hazard reporting list processing module, and is used to obtain the safety hazard reporting list data that has passed the reporting review, and respond to the user's thirteenth human-computer interaction operation, and form safety hazard management preparation data based on the safety hazard reporting list data that has passed the reporting review. Specifically, the safety hazard management preparation module includes but is not limited to a fourth data acquisition unit, a preparation data generation unit, a node data upload unit, a first process flow unit, and an upload data review unit; the fourth data acquisition unit is communicatively connected to the safety hazard reporting list processing module, and is used to respond to the user's fourteenth human-computer interaction operation to obtain the safety hazard reporting list data of different hazard levels and passed the reporting review; the preparation data generation unit is communicatively connected to the fourth data acquisition unit, and is used to respond to the user's fifteenth human-computer interaction operation, and generate safety hazard management preparation data of different hazard levels based on the safety hazard reporting list data of different hazard levels and passed the reporting review; the node data upload unit is communicatively connected to the The preparation data generation unit is used to respond to the user's sixteenth human-computer interaction operation, and upload the data required for each process node based on the safety hazard management preparation data of different hazard levels; the first process flow unit is communicatively connected to the node data upload unit, and is used to respond to the user's seventeenth human-computer interaction operation during the data upload process, perform a node delegation operation, so as to upload the data through the node data upload unit, and return the data to the node, so as to complete the work of the node data upload unit; the uploaded data review unit is communicatively connected to the first process flow unit, and is used to respond to the user's eighteenth human-computer interaction operation, and confirm and review the returned node content to obtain a fourth review result. In addition, when the review result of the safety hazard management preparation data is passed, the hazard management preparation action is completed.
[0079] The safety hazard management inspection module is respectively communicatively connected to the safety hazard project list processing module, the safety hazard reporting list processing module and / or the safety hazard management preparation module, and is used to obtain the safety hazard project list data that has passed the project establishment review, the safety hazard reporting list data that has passed the reporting review and / or the safety hazard management preparation data that has passed the confirmation review, and respond to the user's nineteenth human-computer interaction operation, and form periodic safety management inspection list data based on the acquired data.Specifically, the safety hazard management inspection module includes but is not limited to a fifth data acquisition unit, an inspection list generation unit, a first node data generation unit, a second process flow unit, a first input data review unit, a first rectification list generation unit, a second node data generation unit and a first rectification review unit; the fifth data acquisition unit is respectively communicatively connected to the safety hazard project establishment list processing module, the safety hazard reporting list processing module and / or the safety hazard management preparation module, and is used to obtain the safety hazard project establishment list data that has passed the project establishment review, the safety hazard reporting list data that has passed the reporting review and / or the safety hazard management preparation module. the safety hazard management preparation data; the inspection list generation unit, which is communicatively connected to the fifth data acquisition unit, is used to automatically create an inspection list based on the acquired data, and automatically generate periodic safety management inspection list data within the duration range (such as daily safety management inspection list data) through the duration field data; the first node data generation unit, which is communicatively connected to the inspection list generation unit, is used to perform data entry operations on each node data (such as operations using taking pictures, filling in or uploading, etc.) in response to the user's twentieth human-machine operation based on the safety management inspection list data; the second process transfer unit The first node data generation unit is communicatively connected to the first node data generation unit, and is used to respond to the user's twenty-first human-computer interaction operation during the process of node data entry to perform a node delegation operation, so as to perform data entry through the first node data generation unit, and perform node return of the entered data, so as to complete the work of the first node data generation unit; the first entered data review unit is communicatively connected to the second process flow unit, and is used to respond to the user's twenty-second human-computer interaction operation, confirm and review the returned entered data, and obtain a fifth review result; the first rectification list generation unit is communicatively connected to the inspection list generation unit and the first entered data review unit, respectively, and is used to generate first rectification list data based on the safety management inspection list data that needs to be rectified after review and confirmation; the second node data generation unit is communicatively connected to the first rectification list generation unit, and is used to respond to the user's twenty-third human-computer operation based on the first rectification list data. Perform a secondary data entry operation (such as taking pictures, filling in or uploading) on each node data; the first rectification review unit is communicatively connected to the second node data generation unit, and is used to respond to the user's twenty-fourth human-computer operation to confirm and review the node content that has completed the secondary data entry, and obtain a sixth review result. In addition, when the audit result of the first rectification list data is passed, this safety management inspection action is completed.
[0080] The safety hazard on-duty inspection module is respectively communicatively connected to the safety hazard project list processing module, the safety hazard reporting list processing module and / or the safety hazard management preparation module, and is used to obtain the safety hazard project list data that has passed the project establishment review, the safety hazard reporting list data that has passed the reporting review and / or the safety hazard management preparation data that has passed the confirmation review, and respond to the user's twenty-fifth human-computer interaction operation, and form periodic safety hazard on-duty inspection list data based on the acquired data.Specifically, the safety hazard on-duty inspection module includes but is not limited to a sixth data acquisition unit, an inspection list generation unit, a third node data generation unit, a third process flow unit, a second input data review unit, a second rectification list generation unit, a fourth node data generation unit and a second rectification review unit, etc.; the sixth data acquisition unit is respectively communicatively connected to the safety hazard project establishment list processing module, the safety hazard reporting list processing module and / or the safety hazard management preparation module, and is used to obtain the safety hazard project establishment list data that has passed the project establishment review, the safety hazard reporting list data that has passed the reporting review and / or the safety hazard management preparation module. The safety hazard management preparation data that has been reviewed and approved; the checklist generation unit, which is communicatively connected to the sixth data acquisition unit, is used to automatically create a checklist based on the acquired data, and automatically generate safety hazard shift checklist data that is within the duration range and periodic through the duration field data (for example, weekly safety hazard shift checklist data, and different periods can be configured for different hazard levels); the third node data generation unit, which is communicatively connected to the checklist generation unit, is used to perform data analysis on each node data in response to the user's twenty-sixth human-machine operation based on the safety hazard shift checklist data The third process flow unit is communicatively connected to the third node data generation unit, and is used to respond to the user's twenty-seventh human-computer interaction operation during the process of node data entry to perform a node delegation operation, so as to perform data entry through the third node data generation unit, and to perform node return of the entered data, so as to complete the work of the third node data generation unit; the second input data review unit is communicatively connected to the third process flow unit, and is used to respond to the user's twenty-eighth human-computer interaction operation, confirm and review the returned input data, and obtain the seventh review result; the second rectification list generation unit is communicatively connected to the inspection list generation unit and the second input data review unit, respectively, and is used to generate the second rectification list data based on the safety hazard shift inspection list data that needs to be rectified after review and confirmation; the fourth node data generation unit is communicatively connected to the second rectification list generation unit, and is used to perform a secondary data entry operation on each node data based on the second rectification list data in response to the user's twenty-ninth human-computer operation; the second rectification review unit is communicatively connected to the fourth node data generation unit, and is used to respond to the user's thirtieth human-computer operation to confirm and review the node content that has completed the secondary data entry, and obtain the eighth review result. Similarly, when the audit result of the second rectification list data is passed, the safety hazard inspection action is completed.In addition, the safety hazard on-duty inspection module also includes but is not limited to multi-enterprise level units, etc.; the multi-enterprise level units are communicatively connected to the inspection list generation unit, and are used to obtain the organizational structure of the construction enterprise, so that the inspection list generation unit can generate corresponding safety hazard on-duty inspection list data for different architectural levels.
[0081] Preferably, the safety hazard on-duty inspection module includes but is not limited to a project-level safety hazard on-duty inspection submodule for leaders to conduct on-duty inspections on safety hazard contents of all levels, a sub-enterprise-level safety hazard on-duty inspection submodule for leaders to conduct on-duty inspections on safety hazard contents of level one and above, and an enterprise-level safety hazard on-duty inspection submodule for leaders to conduct on-duty inspections on safety hazard contents of level one and above; the construction site safety hazard digital management system also includes but is not limited to a project-level safety hazard inspection and rectification module, etc., wherein the project-level safety hazard inspection and rectification module is communicatively connected to the sub-enterprise-level safety hazard on-duty inspection submodule and the enterprise-level safety hazard on-duty inspection submodule, respectively, to obtain the data to be rectified created by the sub-enterprise-level safety hazard on-duty inspection submodule and the enterprise-level safety hazard on-duty inspection submodule during the safety hazard on-duty inspection process, and respond to the user's thirty-first human-computer interaction operation to form safety hazard rectification data based on the data to be rectified. Specifically, the project-level safety hazard inspection and rectification module includes but is not limited to a seventh data acquisition unit, a third rectification list generation unit, a fifth node data generation unit and a third rectification review unit; the seventh data acquisition unit is respectively communicatively connected to the sub-enterprise-level safety hazard on-duty inspection submodule and the enterprise-level safety hazard on-duty inspection submodule, and is used to obtain the data to be rectified created and reviewed by the sub-enterprise-level safety hazard on-duty inspection submodule and the enterprise-level safety hazard on-duty inspection submodule during the safety hazard on-duty inspection process, or the on-duty inspection status is completed and there is content that needs to be rectified; the third rectification list generation unit is communicatively connected to the seventh data acquisition unit, and is used to generate the third rectification list data based on the acquired data; the fifth node data generation unit is communicatively connected to the third rectification list generation unit, and is used to perform data entry operations on each node data in response to the user's thirty-second human-machine operation based on the third rectification list data; the third rectification review unit is communicatively connected to the fifth node data generation unit, and is used to confirm and review the node content that has completed data entry in response to the user's thirty-third human-machine operation, and obtain a ninth review result. In addition, when the audit result of the third rectification list data is passed, the safety hazard on-duty inspection action is completed.
[0082] The working process of each of the above modules is specifically as follows:
[0083] First, the safety hazard reporting list processing module is used to obtain the hazard related data in the construction site safety hazard database module (in this embodiment, the hazard database data may include but is not limited to "project type, risk level, sub-items / categories, project scope / links, hazard content, possible accident types or impacts"); of course, the hazard database can also be specifically set with more content according to actual use, and is not limited to the aforementioned examples.
[0084] After obtaining the hidden danger data related to the target hidden danger database, it can be internally circulated and reviewed so that the hidden danger content of the target project can be determined based on the hidden danger reporting module. The review list generation unit, by connecting to the multi-format database of safety hazards, selects the content that meets the project requirements through human-computer interaction, and generates the target safety hazard review list through human-computer interaction. Then, the review list confirmation unit can respond to the human-computer interaction operation with the user, and when the review result of the safety hazard review list is approved, it is sent to the enterprise-level review list module for enterprise-level review. In this way, the hidden danger data review can be completed, and after the enterprise review is completed, the closed-loop review operation is completed.
[0085] After completing the hidden danger reporting operation, the hidden danger project establishment operation can be performed on the approved hidden danger list. The second data acquisition unit connects to the safety review list and selects the list content that has passed the review through human-computer interaction; the hidden danger content is approved through each process node to complete the project establishment. For example, the hidden danger project establishment process operation may include but is not limited to "processing, rejecting, deleting, editing, viewing, downgrading and upgrading". For example, the hidden danger project establishment nodes may include but are not limited to the project chief engineer, production manager, safety inspector, business manager and project manager at the "project level", the chief engineer of the subsidiary enterprise, technical department, safety department, engineering department, general office, deputy general manager of production and general manager of the subsidiary at the "sub-enterprise level", and the chief engineer office, safety department, engineering department, general office, enterprise chief engineer, enterprise deputy general manager and enterprise general manager at the "enterprise level". Of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned examples.
[0086] In this embodiment, the system calls the enterprise-level organizational structure, and different processes are carried out according to different risk levels. For example, level 2 risk - project-level review, level 1 risk - subsidiary-level review, and critical / super critical risk - enterprise review.
[0087] After completing the project review of hidden danger content, hidden danger reporting management can be carried out. The specific operations are as follows:
[0088] The safety hazard reporting list processing module is used as a data link between the project and the enterprise. Through the third data acquisition unit, the server terminal obtains the data passed through the project establishment flow to automatically create a reporting list, and the reporting list generation unit has completed the hazard reporting content. When responding to the human-computer interaction operation with the user, the reporting confirmation unit performs the second human-computer interaction at the enterprise level according to the different levels of the hazard by connecting the enterprise organizational structure. Through the second human-computer interaction, all hazard reporting list data are circulated and reviewed, and finally the hazard reporting list data closed loop is completed. For example, the hazard reporting process operation can include but is not limited to "processing; editing; rejection". Of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned example. For example, the hazard reporting node can include but is not limited to the production manager and project manager at the "project level", the deputy general manager of production at the "sub-enterprise level", etc. Of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned example.
[0089] After completing the hidden danger reporting, you can proceed with the hidden danger management preparation work. The specific operations are as follows:
[0090] The safety hazard management preparation module is used for recording the data documents and preconditions required for all hazard contents in the project. Through the fourth data acquisition unit, through the server terminal, the hazard contents that have been passed through the project establishment and reporting are obtained, including but not limited to "secondary, primary, fatal, and super-fatal hazard items", to automatically generate a hazard preparation list. The hazard management list content is used to respond to the human-computer interaction operation with the user, and the node data upload unit is used to upload the corresponding data through the mobile terminal and the computer terminal. During the upload process, the first process flow unit can be performed, and the node delegation operation can be performed through the human-computer interaction operation, and the data data can be uploaded through the human-computer interaction operation. By connecting the upload unit, the data is node-rotated and the work of the data upload unit is completed. The data review unit confirms and reviews the data through the data upload unit for the node content that has completed the data upload through the human-computer interaction operation, and completes the hazard management preparation action when the data result of the safety hazard preparation list is approved. For example, the content of hidden danger management preparation may include but is not limited to "plan-related, technical disclosure, operator level, special work type reporting, equipment inspection, material entry form, material sampling report, emergency measures and site condition acceptance, etc."; of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned examples. For example, the hidden danger management preparation process may include but is not limited to "construction workers, technicians, safety officers, quality inspectors and project managers"; of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned examples.
[0091] After completing the hidden danger management preparation, you can carry out the hidden danger management inspection work. The specific operations are as follows:
[0092] The safety hazard management and inspection module is used for daily safety inspections of all hidden danger contents in the project. Through the fifth data acquisition unit, the hidden danger contents that have been reported and prepared for management are acquired through the server terminal. Through the list generation unit, the hidden danger contents that have been reported and prepared for management are automatically created for lists, and a periodic daily list is automatically generated through the duration field data. The hidden danger inspection list content is used to respond to the human-computer interaction operation with the user, and the node data generation unit is performed to enter data for a single hidden danger data through operations such as taking photos and describing the problem through the terminal. During the above-mentioned data generation unit process, the process flow unit can be performed, and node delegation operations can be performed through human-computer interaction operations, and data can be filled in through the second human-computer interaction operation. By connecting to the node data generation unit, the data is node-rotated. And the work of the node data generation unit is completed. And the hidden danger inspection work is completed. For example, the hidden danger inspection work may include but is not limited to "pre-operation inspection, morning meeting briefing, general contractor safety officer inspection, subcontractor safety officer inspection, general contractor project manager supervision, subcontractor project manager supervision, general contractor project chief engineer supervision, subcontractor project chief engineer supervision, general contractor hazard monitoring officer supervision and subcontractor hazard monitoring officer supervision, etc."; Of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned examples. For example, the content and method of hidden danger inspection work may include but is not limited to "on-site photos, on-site videos, text descriptions, rectification requirements, time limit selection, responsible entity selection and responsible person selection, etc."; Of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned examples.
[0093] After completing the hidden danger management inspection, you can proceed to the project-level hidden danger content rectification. The specific operations are as follows:
[0094] Hidden danger management rectification is used for the content that has problems and needs to be rectified during the project hidden danger inspection process. Through the data acquisition unit and the server terminal, the content of hidden danger inspection has been completed and there are rectification requirements. Through the rectification list generation unit, the obtained content is automatically created into a list, and the rectification deadline field data is automatically generated. The rectification list content is used to respond to the human-computer interaction operation with the user, and the node data generation unit is performed to take pictures, fill in and other operations through human-computer interaction, and data is entered through the terminal. After the above-mentioned node data generation unit is completed, the rectification review unit is performed, and the node data generation unit confirms and reviews the data for the node content that has completed data generation through human-computer interaction, and when the safety hidden danger rectification list data result is approved, the safety hidden danger rectification action is completed. For example, the rectification work content can include but is not limited to "site photos after rectification, site videos after rectification and rectification instructions, etc."; of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned examples.
[0095] After the hidden danger management rectification is completed, the project-level hidden danger management inspection action can be considered closed.
[0096] After completing the hidden danger management report, you can carry out the hidden danger management inspection work. The specific operations are as follows:
[0097] The safety hazard on-duty inspection module is used for the project to have leaders on-duty inspect all hazard contents. Through the sixth data acquisition unit, the hazard contents that have been reported and completed are acquired through the server terminal. Through the list generation unit, the hazard contents that have been reported and completed are automatically created as a list, and a periodic list is automatically generated through the duration field data. The hazard on-duty inspection list contents are used to respond to the human-computer interaction operation with the user. The node data generation unit is performed to input data for a single hazard data through operations such as taking photos and describing the problem through the terminal. During the above-mentioned data generation unit process, the process flow unit can be performed, and node delegation operations can be performed through human-computer interaction operations, and data can be filled in through the second human-computer interaction operation. By connecting the node data generation unit, the data is node-rotated. And the work of the node data generation unit is completed. And the inspection work on duty is completed. For example, the hidden danger inspection work needs to be carried out at different periods according to different hidden danger levels, which may include but is not limited to "secondary hidden dangers once a week, first hidden dangers twice a week, and fatal / super-fatal hidden dangers three times a week, etc."; of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned examples. For example, the executors of the hidden danger inspection work may include but are not limited to: "project managers, project chief engineers, and safety officers, etc."; of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned examples.
[0098] Hidden danger management rectification is used for the content that has problems and needs to be rectified during the process of the project hidden danger inspection. Through the data acquisition unit and the server terminal, the content of the hidden danger inspection is completed and there are rectification requirements. Through the rectification list generation unit, the obtained content is automatically created, and the rectification deadline field data is automatically generated. The rectification list content is used to respond to the human-computer interaction operation with the user, and the node data generation unit is performed to take pictures, fill in and other operations through human-computer interaction, and data entry is performed through the terminal. After the above-mentioned node data generation unit is completed, the rectification review unit is performed, and the node data generation unit confirms and reviews the data for the node content that has completed the data generation through human-computer interaction, and the safety hidden danger rectification list data result is passed when the review is passed, and the safety hidden danger rectification action is completed. For example, the rectification work content can include but is not limited to "site photos after rectification, site videos after rectification and rectification instructions, etc."; of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned example. After the hidden danger management rectification is completed, the project-level hidden danger inspection action is considered closed.
[0099] After the subsidiary's hidden danger project approval is completed and the subsidiary's hidden danger report is completed, the subsidiary's hidden danger management shift inspection work can be carried out. The specific operations are as follows:
[0100] The sub-enterprise-level safety hazard on-duty inspection submodule is used for the leadership on-duty inspection of all first-level, fatal, and super-fatal hazard contents of the sub-enterprise. Through the data acquisition unit, through the server terminal, the hazard contents of the sub-enterprise that have passed the project approval and the sub-enterprise hazard reporting are obtained. Through the list generation unit, the hazard contents of the sub-enterprise that have passed the project approval and the sub-enterprise hazard reporting are automatically created, and a periodic list is automatically generated through the duration field data. The hazard on-duty inspection list content is used to respond to the human-computer interaction operation with the user, and the node data generation unit is performed to enter data through the terminal through operations such as taking photos and describing problems for a single hazard data. In the process of the above-mentioned data generation unit, the process flow unit can be performed, and the node delegation operation can be performed through the human-computer interaction operation, and the data can be filled in through the second human-computer interaction operation. By connecting the node data generation unit, the data is node-rotated. And the node data generation unit is completed. And the sub-enterprise on-duty inspection work is completed. For example, the executors of the subsidiary's hidden danger inspection work may include but are not limited to: "General Manager of the subsidiary, Vice President of Production of the subsidiary, and Safety Special Team of the subsidiary"; of course, the aforementioned information may be specifically set according to actual use, and is not limited to the aforementioned examples. For example, the executors of the subsidiary's hidden danger inspection work may include but are not limited to: "General Manager of the subsidiary, Vice President of Production of the subsidiary, and Safety Special Team of the subsidiary"; of course, the aforementioned information may be specifically set according to actual use, and is not limited to the aforementioned examples.
[0101] After completing the construction work of the subsidiary company's hidden dangers, the project hidden danger management and rectification work can be carried out. The specific operations are as follows:
[0102] The project-level safety hazard inspection and rectification module is used for the content that has problems and needs to be rectified during the hazard inspection of the subsidiary enterprise, through the data acquisition unit, through the server terminal, to obtain the content of the hazard inspection of the subsidiary enterprise and the rectification requirements, through the rectification list generation unit, the obtained content is automatically created, and the deadline rectification list is automatically generated through the rectification deadline field data. Through the process unit, the rectification list generation unit is rationally allocated, and the rectification list content after allocation is used to respond to the human-computer interaction operation with the user, and the node data generation unit is performed to take pictures, fill in and other operations through human-computer interaction, and data is entered through the terminal. After the above-mentioned node data generation unit is completed, the rectification review unit is performed, and the node content of the node data generation unit for completing the data generation is confirmed and reviewed through human-computer interaction, and when the safety hazard rectification list data result is approved, the rectification review unit is circulated through the process unit, and the hazard rectification personnel initiated by the subsidiary enterprise are reviewed and the safety hazard rectification action is completed. For example, the content and methods of rectification work may include but are not limited to "site photos after rectification, site videos after rectification and rectification instructions, etc."; of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned examples. For example, the executors of the rectification work content may include but are not limited to "project managers and responsible persons of rectification units, etc."; of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned examples.
[0103] After the hidden danger management rectification is completed, the subsidiary-level hidden danger inspection action can be considered closed.
[0104] After the enterprise hidden danger project is approved, the enterprise hidden danger management shift inspection work can be carried out. The specific operations are as follows:
[0105] The enterprise-level safety hazard on-duty inspection submodule is used for the enterprise to conduct leadership on-duty inspections on all fatal and super-fatal hazard contents. Through the data acquisition unit, the hazard contents that have been approved for the enterprise hazard project are obtained through the server terminal. Through the list generation unit, the hazard contents that have been approved for the enterprise hazard project are automatically created, and a periodic list is automatically generated through the duration field data. The hazard on-duty inspection list content is used to respond to the human-computer interaction operation with the user, and the node data generation unit is performed to enter the data of a single hazard data through operations such as taking photos and describing the problem through the terminal. During the above data generation unit process, the process flow unit can be performed, and the node delegation operation can be performed through the human-computer interaction operation, and the data can be filled in through the second human-computer interaction operation. By connecting the node data generation unit, the data is node-rotated. And the work of the node data generation unit is completed. And the enterprise on-duty inspection work is completed. For example, the executors of the enterprise hidden danger inspection work may include but are not limited to: "the general manager of the enterprise, the vice president of production of the enterprise and the enterprise safety team, etc."; of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned example. For example, the executors of the enterprise hidden danger inspection work may include but are not limited to: "the general manager of the enterprise, the vice president of production of the enterprise and the enterprise safety team, etc."; of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned example.
[0106] After completing the on-duty inspection of enterprise hidden dangers, the project hidden danger management and rectification work can be carried out. The specific operations are as follows:
[0107] The project-level safety hazard inspection and rectification module is used for the content that has problems and needs to be rectified during the enterprise's hazard inspection process. Through the data acquisition unit, through the server terminal, the content of the enterprise's hazard inspection has been completed and there are rectification requirements. Through the rectification list generation unit, the acquired content is automatically created, and the deadline rectification list is automatically generated through the rectification deadline field data. Through the process unit, the rectification list generation unit is rationally allocated. When the allocated rectification list content is used to respond to the human-computer interaction operation with the user, the node data generation unit is performed, and the operations such as taking pictures and filling in are performed through human-computer interaction, and data entry is performed through the terminal. After the above-mentioned node data generation unit is completed, the rectification review unit is performed. Through the node data generation unit, the node content that has completed the data generation is confirmed and reviewed through human-computer interaction. When the safety hazard rectification list data result is approved, the rectification review unit is circulated through the process unit, and the enterprise initiates the hazard rectification personnel to review and complete the safety hazard rectification action. For example, the content and methods of rectification work may include but are not limited to "site photos after rectification, site videos after rectification and rectification instructions, etc." Of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned examples. For example, the executors of the rectification work content may include but are not limited to "project managers, responsible persons of rectification units." Of course, the aforementioned information can be specifically set according to actual use, and is not limited to the aforementioned examples.
[0108] After completing the hidden danger management rectification, the enterprise-level hidden danger inspection action can be considered closed.
[0109] In summary, the digital management system for construction site safety hazards provided by this embodiment has the following technical effects:
[0110] (1) This embodiment provides a new digital management and control solution for realizing the integrated safety hazard situation at the construction site, namely, it includes a construction site safety hazard database module, a safety hazard review list processing module, a safety hazard project establishment list processing module, a safety hazard reporting list processing module, a safety hazard management preparation module, a safety hazard management inspection module and a safety hazard on-duty inspection module. Through their functional limitation and collaboration, the standardization of on-site safety hazard management actions can be formulated, and through information technology, all the safety hazard management contents can be connected in series, which is conducive to the real-time and refined control of the on-site hazard content, and can better assist on-site safety supervision and management, and then form a whole process traceability of the hazard content from review to project establishment, reporting, management preparation, inspection and on-duty inspection and rectification, and form a structured management mode of "one hazard one process" and "one hazard one file", so as to solve the problems of information asymmetry, inability to trace problems, inability to realize process-based approval, inability to realize automatic generation of inspections and effective management and closed-loop management of on-duty inspections in the existing construction engineering safety management solutions, and is very suitable for large-scale application and promotion in the field of safety hazards in the construction stage;
[0111] (2) It can also be connected through the enterprise hierarchical structure to help enterprise senior management to intuitively understand the hidden dangers of the project and assist them in completing relevant hidden danger management actions;
[0112] (3) It can also be deeply matched with on-site safety hazard management. By establishing a safety hazard database, the project hazards under different business formats can be classified into different categories;
[0113] (4) It is also possible to formulate project hidden danger management standards, assign people, positions and responsibilities for all hidden dangers, and achieve integrated process management;
[0114] (5) It can also standardize the materials and prerequisites required for the hidden danger process according to different hidden danger contents, forming a structured management model of "one hidden danger, one file";
[0115] (6) Different inspection methods and cycles can also be formulated for different hidden dangers on site to reduce the risk of hidden dangers on site and increase the coverage rate of hidden danger inspections;
[0116] (7) For the enterprise leadership level, by summarizing hidden danger data, multi-dimensional data analysis can be conducted on different projects to improve the closed-loop management of hidden dangers.
[0117] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the protection scope of the present invention. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A digital management system for construction site safety hazards, characterized in that: Included are: The construction site safety hazard database module is used to obtain and store the construction site safety hazard data content; A safety hazard review list processing module is communicatively connected to the construction site safety hazard database module, and is used to obtain the content of the construction site safety hazard data, and respond to the first human-computer interaction operation of the user to form safety hazard review list data based on the content of the construction site safety hazard data; a safety hazard project establishment list processing module, which is communicatively connected to the safety hazard review list processing module, and is used to obtain the safety hazard review list data that has passed the review, and respond to a fifth human-computer interaction operation of the user, and form safety hazard project establishment list data based on the safety hazard review list data that has passed the review; a safety hazard reporting list processing module, which is communicatively connected to the safety hazard project establishment list processing module, and is used to obtain the safety hazard project establishment list data that has passed the project establishment review, and to respond to a ninth human-computer interaction operation of the user, and to form safety hazard reporting list data based on the safety hazard project establishment list data that has passed the project establishment review; a safety hazard management preparation module, which is communicatively connected to the safety hazard reporting list processing module, and is used to obtain the safety hazard reporting list data that has passed the reporting review, and to respond to the thirteenth human-computer interaction operation of the user, and to form safety hazard management preparation data based on the safety hazard reporting list data that has passed the reporting review; a safety hazard management inspection module, which is respectively communicatively connected to the safety hazard project establishment list processing module, the safety hazard reporting list processing module and / or the safety hazard management preparation module, and is used to obtain the safety hazard project establishment list data that has passed the project establishment review, the safety hazard reporting list data that has passed the reporting review and / or the safety hazard management preparation data that has passed the confirmation review, and respond to the nineteenth human-computer interaction operation of the user, and form periodic safety management inspection list data based on the acquired data; The safety hazard on-duty inspection module is respectively communicatively connected to the safety hazard project list processing module, the safety hazard reporting list processing module and / or the safety hazard management preparation module, and is used to obtain the safety hazard project list data that has passed the project establishment review, the safety hazard reporting list data that has passed the reporting review and / or the safety hazard management preparation data that has passed the confirmation review, and respond to the user's twenty-fifth human-computer interaction operation, and form periodic safety hazard on-duty inspection list data based on the acquired data.
2. The digital management system for construction site safety hazards according to claim 1, characterized in that: The construction site safety hazard database module includes a database basic parameter production unit and / or a data import generation unit; The database basic parameter production unit is used to obtain basic information of the construction site safety hazard database, and to classify and freely combine the obtained basic information to form initialized construction site safety hazard data content; The data import generation unit is used to parse the data in the import table, and automatically classify and freely combine the parsed data to automatically form the initialized construction site safety hazard data content.
3. The digital management system for construction site safety hazards according to claim 1, characterized in that: The safety hazard review list processing module includes a first data acquisition unit, a review list generation unit and a review list confirmation unit; The first data acquisition unit is communicatively connected to the construction site safety hazard database module, and is used to respond to a second human-computer interaction operation of a user to select the construction site safety hazard data content that meets the project requirements; The review list generating unit is communicatively connected to the first data acquiring unit, and is used to respond to a third human-computer interaction operation of a user, and generate safety hazard review list data based on the safety hazard data content of the construction site that is selected and meets the project requirements; The review list confirmation unit is communicatively connected to the review list generation unit, and is used to respond to a fourth human-computer interaction operation of the user, review the safety hazard review list data, and obtain a first review result.
4. The digital management system for construction site safety hazards according to claim 1, characterized in that: The safety hazard project list processing module includes a second data acquisition unit, a project list generation unit and a project list confirmation unit; The second data acquisition unit is communicatively connected to the safety hazard review list processing module, and is used to respond to the safety hazard review list data selected by the user through a sixth human-computer interaction operation; The project establishment list generating unit is communicatively connected to the second data acquiring unit, and is used to respond to a seventh human-computer interaction operation of the user, and generate safety hazard project establishment list data based on the safety hazard review list data that is selected and passed the review; The project list confirmation unit is communicatively connected to the project list generation unit, and is used to respond to the user's eighth human-computer interaction operation, review the safety hazard project list data, and obtain a second review result.
5. The digital management system for construction site safety hazards according to claim 1, characterized in that: The safety hazard reporting list processing module includes a third data acquisition unit, a reporting list generating unit and a reporting list confirming unit; The third data acquisition unit is communicatively connected to the safety hazard project list processing module, and is used to respond to the user's tenth human-computer interaction operation to select the safety hazard project list data that has passed the project review; The reporting list generating unit is communicatively connected to the third data acquiring unit, and is used to respond to an eleventh human-computer interaction operation of the user, and generate safety hazard reporting list data based on the safety hazard project list data selected and passed the project establishment review; The reporting list confirmation unit is communicatively connected to the reporting list generation unit, and is used to respond to the twelfth human-computer interaction operation of the user, review the safety hazard reporting list data, and obtain a third review result.
6. The digital management system for construction site safety hazards according to claim 1, characterized in that: The safety hazard management preparation module includes a fourth data acquisition unit, a preparation data generation unit, a node data upload unit, a first process flow unit and an uploaded data review unit; The fourth data acquisition unit is communicatively connected to the safety hazard reporting list processing module, and is used to respond to the fourteenth human-computer interaction operation of the user to obtain the safety hazard reporting list data of different hazard levels and passed the reporting review; The preparation data generating unit is communicatively connected to the fourth data acquiring unit, and is used to respond to the fifteenth human-computer interaction operation of the user, and generate safety hazard management preparation data of different hazard levels based on the safety hazard reporting list data of different hazard levels and passed the reporting review; The node data uploading unit is communicatively connected to the preparation data generating unit, and is used to respond to the sixteenth human-computer interaction operation of the user, and upload the data required by each process node based on the safety hazard management preparation data of different hazard levels; The first process transfer unit is communicatively connected to the node data upload unit, and is used to respond to the seventeenth human-computer interaction operation of the user during the data upload process, perform a node delegation operation, so as to upload the data through the node data upload unit, and perform node return of the data, so as to complete the work of the node data upload unit; The uploaded data review unit is communicatively connected to the first process flow unit, and is used to respond to the user's eighteenth human-computer interaction operation, confirm and review the returned node content, and obtain a fourth review result.
7. The digital management system for construction site safety hazards according to claim 1, characterized in that: The safety hazard management inspection module includes a fifth data acquisition unit, an inspection list generation unit, a first node data generation unit, a second process flow unit, a first input data review unit, a first rectification list generation unit, a second node data generation unit and a first rectification review unit; The fifth data acquisition unit is respectively connected to the safety hazard project establishment list processing module, the safety hazard reporting list processing module and / or the safety hazard management preparation module, and is used to acquire the safety hazard project establishment list data that has passed the project establishment review, the safety hazard reporting list data that has passed the reporting review and / or the safety hazard management preparation data that has passed the confirmation review; The inspection list generation unit is communicatively connected to the fifth data acquisition unit, and is used to automatically create the inspection list based on the acquired data, and automatically generate periodic safety management inspection list data within the duration range through the duration field data; The first node data generating unit is communicatively connected to the inspection list generating unit and is used to perform data entry operation on each node data in response to the user's twentieth human-machine operation based on the safety management inspection list data; The second process flow unit is communicatively connected to the first node data generation unit, and is used to respond to the twenty-first human-computer interaction operation of the user during the process of node data entry, perform a node delegation operation, so as to enter data through the first node data generation unit, and perform node return of the entered data, so as to complete the work of the first node data generation unit; The first input data review unit is communicatively connected to the second process flow unit, and is used to respond to the twenty-second human-computer interaction operation of the user, confirm and review the returned input data, and obtain a fifth review result; The first rectification list generating unit is respectively connected to the inspection list generating unit and the first input data review unit for generating first rectification list data based on the safety management inspection list data that needs to be rectified after review and confirmation; The second node data generating unit is communicatively connected to the first rectification list generating unit, and is used to perform a secondary data entry operation on each node data in response to a twenty-third human-machine operation of a user based on the first rectification list data; The first rectification and review unit is communicatively connected to the second node data generating unit, and is used to respond to the user's twenty-fourth human-machine operation to confirm and review the node content that has completed the secondary data entry, and obtain a sixth review result.
8. The digital management system for construction site safety hazards as claimed in claim 7, characterized in that: The safety hazard on-duty inspection module includes a sixth data acquisition unit, an inspection list generation unit, a third node data generation unit, a third process flow unit, a second input data review unit, a second rectification list generation unit, a fourth node data generation unit and a second rectification review unit; The sixth data acquisition unit is respectively connected to the safety hazard project establishment list processing module, the safety hazard reporting list processing module and / or the safety hazard management preparation module, and is used to acquire the safety hazard project establishment list data that has passed the project establishment review, the safety hazard reporting list data that has passed the reporting review and / or the safety hazard management preparation data that has passed the confirmation review; The checklist generation unit is communicatively connected to the sixth data acquisition unit, and is used to automatically create a checklist based on the acquired data, and automatically generate periodic safety hazard on-duty checklist data within the duration range through the duration field data; The third node data generating unit is communicatively connected to the checklist generating unit and is used to perform data entry operation on each node data in response to the user's twenty-sixth human-machine operation based on the safety hazard shift checklist data; The third process flow unit is communicatively connected to the third node data generation unit, and is used to respond to the twenty-seventh human-computer interaction operation of the user during the process of node data entry, perform a node delegation operation, so as to enter data through the third node data generation unit, and perform node return of the entered data, so as to complete the work of the third node data generation unit; The second input data review unit is communicatively connected to the third process flow unit, and is used to respond to the twenty-eighth human-computer interaction operation of the user, confirm and review the returned input data, and obtain a seventh review result; The second rectification list generating unit is respectively connected to the inspection list generating unit and the second input data review unit for generating second rectification list data based on the safety hazard on-duty inspection list data that is reviewed and confirmed to need rectification; The fourth node data generating unit is communicatively connected to the second rectification list generating unit, and is used to perform a secondary data entry operation on each node data in response to a twenty-ninth human-machine operation of the user based on the second rectification list data; The second rectification and review unit is communicatively connected to the fourth node data generation unit, and is used to respond to the user's thirtieth human-machine operation to confirm and review the node content that has completed the secondary data entry, and obtain an eighth review result.
9. The digital management system for construction site safety hazards as claimed in claim 8, characterized in that: The safety hazard on-duty inspection module also includes multiple enterprise-level units; The multi-enterprise hierarchical unit is communicatively connected to the inspection list generation unit and is used to obtain the organizational structure of the construction enterprise so that the inspection list generation unit can generate corresponding safety hazard shift inspection list data for different architectural levels.
10. The digital management system for construction site safety hazards according to claim 1, characterized in that: The safety hazard on-duty inspection module includes a project-level safety hazard on-duty inspection submodule for leaders to inspect safety hazard contents of all levels, a sub-enterprise-level safety hazard on-duty inspection submodule for leaders to inspect safety hazard contents of level one and above, and an enterprise-level safety hazard on-duty inspection submodule for leaders to inspect safety hazard contents of level fatal and above; The construction site safety hazard digital management system also includes a project-level safety hazard inspection and rectification module, wherein the project-level safety hazard inspection and rectification module is communicatively connected to the sub-enterprise-level safety hazard shift inspection sub-module and the enterprise-level safety hazard shift inspection sub-module, respectively, for obtaining the data to be rectified created by the sub-enterprise-level safety hazard shift inspection sub-module and the enterprise-level safety hazard shift inspection sub-module during the safety hazard shift inspection process, and responding to the user's thirty-first human-computer interaction operation, to form safety hazard rectification data based on the data to be rectified.
Citation Information
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Construction site potential safety hazard data analysis method and system
CN122472533A