Method, system, medium and equipment for monitoring and supervising water and soil conservation data of production and construction project
By using a data monitoring method for soil and water conservation in production and construction projects, acquiring user-end data, and matching verification instructions, the problem of a single on-site inspection method was solved, achieving full-process and all-round supervision and improving the efficiency and accuracy of supervision.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- SHANGHAI INVESTIGATION DESIGN & RES INST CO LTD
- Filing Date
- 2025-02-21
- Publication Date
- 2026-04-28
AI Technical Summary
The existing technology for water and soil conservation supervision of production and construction projects is inefficient, the on-site inspection methods are limited, and it is impossible to achieve full-process and all-round supervision. Furthermore, communication between departments is not timely, resulting in supervision loopholes.
This paper provides a method for monitoring water and soil conservation data in production and construction projects. By acquiring project verification data from survey users, the method outputs the data to management users for review instruction matching, including passing the first review, passing the second review, and failing the second review. The method processes the data from different users separately and outputs a verification pass notice or enforcement order, thereby achieving full-process and comprehensive supervision.
A complete on-site inspection process has been established, which has enabled comprehensive, precise and efficient on-site supervision, ensuring that supervision results are promptly issued and rectified, reducing supervision loopholes and meeting the requirements of soil and water conservation work in the new era.
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Figure CN120355062B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the technical field of data supervision, and in particular relates to a method, system, medium and equipment for monitoring soil and water conservation data in production and construction projects. Background Technology
[0002] Currently, in order to further improve the water and soil conservation supervision mechanism for production and construction projects, and to implement normalized supervision throughout the entire lifecycle of pre-project, during-project, and post-project activities, water administrative departments at all levels have become an important means to supervise the implementation of water and soil conservation work in production and construction projects.
[0003] Commonly used supervision methods include on-site supervision, written supervision, remote sensing supervision, and "Internet+" supervision. On-site supervision, as one of the main methods of water and soil conservation supervision for production projects, has been used for a long time, but a complete inspection process has not yet been summarized. Moreover, the traditional on-site inspection method of "people, vehicles, and cameras" is relatively simple and difficult to supervise the water and soil erosion prevention and control of production and construction projects in a comprehensive manner. In addition, the lack of timely communication between departments during the supervision process has also led to low efficiency in water and soil conservation supervision and the existence of supervision loopholes, which cannot meet the requirements of water and soil conservation work in the new era. Summary of the Invention
[0004] In view of the shortcomings of the prior art described above, the purpose of this invention is to provide a method, system, medium and equipment for monitoring water and soil conservation data in production and construction projects, so as to solve the problem of low efficiency in monitoring water and soil conservation in production and construction projects in the prior art.
[0005] In a first aspect, the present invention provides a method for monitoring soil and water conservation data in production and construction projects, the method comprising the following steps:
[0006] Obtain project verification data from the survey user end, including preparation data and on-site verification data for current production and construction projects;
[0007] The project verification data is output to the management user terminal and the review instructions fed back by the management user terminal are obtained. The review instructions include first review passed, second review passed, and second review failed.
[0008] Based on the aforementioned review instructions, data processing is performed on different user terminals, wherein...
[0009] When the review instruction is the first review passed and / or the second review passed, the matching construction user terminal outputs a verification pass notice and simultaneously uploads the current production construction project to the preset supervision system;
[0010] When the review instruction indicates that the second review fails, the law enforcement user terminal outputs an enforcement order, and the law enforcement feedback data from the law enforcement user terminal is obtained and output to the management user terminal.
[0011] In one possible implementation of this application, the acquisition of project verification data from the survey user terminal includes preparation data and on-site verification data for the current production and construction project, specifically including:
[0012] Obtain the preparation data of the current production and construction project input by the survey user terminal, wherein the preparation data includes a list of verification projects and an acceptance verification route;
[0013] The system acquires on-site verification data of the current production and construction project input by the survey user. The on-site verification data includes on-site verification materials, on-site meeting data, and on-site survey results. The on-site verification materials include soil and water conservation plans, soil and water conservation monitoring reports, soil and water conservation supervision reports, and acceptance reports. The on-site meeting data includes construction report data, construction report data, supervision report data, and acceptance report data. The on-site survey results include UAV aerial photography data, project site record data, and remote sensing interpretation and modeling data.
[0014] In one possible implementation of this application, the step of outputting the project verification data to the management user terminal and obtaining the review instruction from the management user terminal specifically includes:
[0015] Based on the project verification data, a verification report is prepared and output to the management user terminal;
[0016] The review feedback data obtained from the management user terminal is analyzed for keywords to derive the review instruction, wherein,
[0017] The first and second reviews were passed based on the keywords used in the review process.
[0018] The second review failed because the keyword "failed the first review".
[0019] In one possible implementation of this application, the step of compiling a verification report based on the project verification data and outputting the verification report to the management user terminal specifically includes:
[0020] The verification results of the soil and water conservation parameters were calculated based on the verification report, wherein,
[0021] The critical values of the approved soil and water conservation plan data are calculated based on the scope of responsibility for prevention, the volume of excavation and filling, the amount of topsoil stripping, and the area of vegetation measures.
[0022] Calculate the approved location and upper limit of the amount of waste disposal site based on the location and quantity of waste disposal.
[0023] In one possible implementation of this application, obtaining the first and second review approvals based on the review approval keyword specifically includes:
[0024] The verification report item sheet, based on the review feedback data, distinguishes between "first review passed" and "second review passed," whereby...
[0025] If the keyword indicating approval is detected and the number of items checked is within the preset value, the approval instruction is determined to be a successful approval.
[0026] If the number of items checked is not equal to the preset value of the project when the keyword "review passed" is detected, the review instruction is determined to be a second review passed. The preset value of the project is dynamically associated with the current production and construction project.
[0027] In one possible implementation of this application, when the review instruction is the first review passed and / or the second review passed, the corresponding construction user terminal is matched based on the current construction project, and the verification pass notice is output to the construction user terminal. At the same time, the associated data related to the current production construction project is uploaded to the preset supervision system. If the first review fails, the method further includes sending a rectification notice to the survey user terminal to respond to the second review process.
[0028] In one possible implementation of this application, when the review instruction indicates that the second review fails, the water affairs law enforcement corresponding to the current production and construction project is matched to obtain the law enforcement user terminal, and the law enforcement order is output to the law enforcement user terminal. In this case, after obtaining the law enforcement feedback data from the law enforcement user terminal, the rectification report in the law enforcement feedback data is output to the management user terminal.
[0029] Secondly, the present invention provides a water and soil conservation data monitoring system for production and construction projects, the system comprising:
[0030] The acquisition module is used to acquire project verification data from the survey user terminal. The project verification data includes preparation data and on-site verification data of the current production and construction project.
[0031] The review module is used to output the project verification data to the management user terminal and obtain the review instructions fed back by the management user terminal, wherein the review instructions include first review passed, second review passed, and second review failed;
[0032] The matching module is used to match different user terminals for data processing based on the review instruction. When the review instruction indicates that the first review is passed and / or the second review is passed, the matching construction user terminal outputs a verification pass notice and simultaneously uploads the current production and construction project to the preset supervision system. When the review instruction indicates that the second review is failed, the matching enforcement user terminal outputs an enforcement order, obtains the enforcement feedback data from the enforcement user terminal, and outputs the enforcement feedback data to the management user terminal.
[0033] Thirdly, the present invention provides an electronic device, the electronic device comprising: a processor and a memory;
[0034] The memory is used to store computer programs;
[0035] The processor is used to execute the computer program stored in the memory, so that the electronic device performs the above-described method for monitoring water and soil conservation data in production and construction projects.
[0036] Fourthly, the present invention provides a computer-readable storage medium having a computer program stored thereon, which, when executed by an electronic device, implements the above-described method for monitoring water and soil conservation data in production and construction projects.
[0037] As described above, the method, system, medium, and equipment for monitoring soil and water conservation data in production and construction projects according to the present invention have the following beneficial effects:
[0038] (1) A complete on-site inspection process has been formed, which can express the entire process of on-site inspection / verification of the project from start to finish in a comprehensive, accurate and efficient manner. It can effectively achieve the purpose of on-site inspection / verification of project supervision and realize the comprehensiveness of on-site supervision.
[0039] (2) When conducting surveys, users can use drones to take aerial photos of the engineering area in vector format. This allows them to obtain digital results such as orthophoto maps, fully digital 3D topographic maps, and maps of the project area. These include various geographic information such as topography, features, length, area, and volume, which enriches the methods of on-site supervision. This combines new technologies and methods with traditional on-site inspection methods, which is of great significance for meeting the requirements of soil and water conservation work in the new era and achieves precision in on-site supervision.
[0040] (3) It is conducive to the timely implementation of supervision work and the timely issuance of supervision results, and timely follow-up and rectification in the later stage. It can effectively alleviate the problem that the entire process of project supervision involves a long cycle and the timeliness of the application of supervision results, and realize the efficiency of on-site supervision.
[0041] (4) It explains the different handling methods for compliant items, compliant items after secondary review and rectification, and non-compliant items after secondary review and rectification during the on-site inspection / post-inspection process. This is conducive to achieving full coverage of on-site inspection / post-inspection items and the entire inspection process, thereby realizing comprehensive water and soil conservation supervision of production and construction projects. Attached Figure Description
[0042] Figure 1 The diagram shows a scenario of the electronic device of the present invention in one embodiment;
[0043] Figure 2 The diagram shows a step-by-step illustration of the method for monitoring water and soil conservation data in production and construction projects according to an embodiment of the present invention.
[0044] Figure 3 This is a schematic diagram illustrating the work content of the survey user terminal in one embodiment of the water and soil conservation data monitoring method for production and construction projects of the present invention.
[0045] Figure 4 The diagram shows a step-by-step illustration of the method for monitoring water and soil conservation data in production and construction projects according to an embodiment of the present invention.
[0046] Figure 5 The diagram shown is a flowchart of one embodiment of the method for monitoring water and soil conservation data in production and construction projects according to the present invention.
[0047] Figure 6 The diagram shown is a structural schematic of the water and soil conservation data monitoring system for production and construction projects according to an embodiment of the present invention.
[0048] Figure 7 The diagram shown is a structural schematic of an electronic device according to an embodiment of the present invention. Detailed Implementation
[0049] The following specific examples illustrate the implementation of the present invention. Those skilled in the art can easily understand other advantages and effects of the present invention from the content disclosed in this specification. The present invention can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of the present invention. It should be noted that, unless otherwise specified, the following embodiments and features described therein can be combined with each other.
[0050] It should be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of the present invention. Therefore, the drawings only show the components related to the present invention and are not drawn according to the actual number, shape and size of the components in the actual implementation. In the actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.
[0051] Specifically, given that a complete, end-to-end inspection process for on-site supervision has not yet been summarized and that existing on-site inspection methods are relatively simplistic and cannot meet the requirements of soil and water conservation work in the new era, this invention, based on practical application and combined with new-era on-site supervision technologies, proposes a method for monitoring soil and water conservation data in production and construction projects. This method includes four stages: preliminary preparation, on-site verification, results summarization, feedback and review, and issuance and uploading of inspection approval notices. These stages correspond to user terminals for surveys, management, construction, and enforcement, respectively. Figure 1 As shown, this is a scenario application diagram of the present invention. In this invention, by acquiring and transmitting data from different user terminals during the four stages of production and construction, the entire process of on-site inspection / verification of the project from start to finish can be comprehensively, accurately, and efficiently expressed, which can effectively achieve the purpose of on-site inspection / verification of project supervision in the new era.
[0052] The technical solutions of the present invention will now be described in detail with reference to the accompanying drawings.
[0053] Specifically, please refer to Figure 2 In one embodiment of the invention, the method for monitoring soil and water conservation data in production and construction projects of the present invention includes the following steps:
[0054] Step S202: Obtain project verification data from the survey user terminal. The project verification data includes preparation data and on-site verification data for the current production and construction project.
[0055] Step S204: Output the project verification data to the management user terminal and obtain the review instruction fed back by the management user terminal, wherein the review instruction includes first review passed, second review passed, and second review failed;
[0056] Step S206: Based on the review instruction, different user terminals are matched for data processing. When the review instruction is the first review passed and / or the second review passed, the matching construction user terminal outputs a verification pass notice and simultaneously uploads the current production construction project to the preset supervision system.
[0057] Step S208: Based on the review instruction, different user terminals are matched for data processing. When the review instruction indicates that the second review has failed, the law enforcement user terminal is matched to output an enforcement order, and the law enforcement feedback data of the law enforcement user terminal is obtained and output to the management user terminal.
[0058] It should be noted that for production and construction projects, the actions taken at different stages of production and construction and at different user terminals vary. Therefore, improving the efficiency of traditional supervision has become a major challenge. In this embodiment, a method for supervising water and soil conservation data in production and construction projects is proposed. The electronic device used in this embodiment serves as the execution subject. By conducting unified and comprehensive supervision of different stages and different user terminals, supervision loopholes can be reduced, and timely information exchange between departments can be ensured, thereby improving supervision efficiency.
[0059] Specifically, this includes obtaining project verification data from the survey user terminal and sending the data to the management user terminal for review. The system can then obtain review instructions from the management user terminal for subsequent operations. A successful review on the first attempt corresponds to obtaining a review instruction from the management user terminal. Conversely, a failed review on the first attempt results in obtaining a rectification notice from the management user terminal and sending it to the survey user terminal to initiate a second review process. A successful second review corresponds to obtaining a review instruction for a second successful review, while a failed second review corresponds to obtaining a review instruction for a second failed review.
[0060] Furthermore, based on the review instruction, different user terminals are matched for data processing. When the review instruction indicates that the first review is passed and / or the second review is passed, the corresponding construction user terminal is matched to output the corresponding verification pass notice and simultaneously upload the current production and construction project to the preset supervision system. When the review instruction indicates that the second review is not passed, the enforcement user terminal is matched to output an enforcement order and obtain the enforcement feedback data from the enforcement user terminal, and output the enforcement feedback data to the management user terminal.
[0061] Furthermore, in one embodiment of the invention, the acquisition of project verification data from the survey user terminal, the project verification data including preparation data and on-site verification data of the current production and construction project, specifically includes:
[0062] Obtain the preparation data of the current production and construction project input by the survey user terminal, wherein the preparation data includes a list of verification projects and an acceptance verification route;
[0063] The system acquires on-site verification data of the current production and construction project input by the survey user. The on-site verification data includes on-site verification materials, on-site meeting data, and on-site survey results. The on-site verification materials include soil and water conservation plans, soil and water conservation monitoring reports, soil and water conservation supervision reports, and acceptance reports. The on-site meeting data includes construction report data, construction report data, supervision report data, and acceptance report data. The on-site survey results include UAV aerial photography data, project site record data, and remote sensing interpretation and modeling data.
[0064] It should be noted that, in this embodiment, the survey user terminal is mainly responsible for the preliminary preparation stage and the on-site inspection / verification stage, such as... Figure 3 As shown, this is a schematic diagram of the work content on the survey user's end. Therefore, the input data obtained from the survey user's end corresponds to the preparation data and on-site verification data of the current production and construction project. Specifically, as shown... Figure 3 As shown, in the preliminary preparation phase, the survey user mainly screens the overall project, compiles a list of necessary inspection / verification items, issues on-site inspection / acceptance verification notices, and plans the on-site inspection / acceptance verification route. Therefore, the corresponding preparation data includes the inspection item list, the acceptance verification route, and the verification notices. The selection principle for the on-site inspection / verification item list in the preliminary preparation phase is as follows:
[0065] (1) The ratio of on-site inspection items to acceptance verification items should generally be controlled to be no less than 10% of the total number of items to the number of accepted items;
[0066] (2) Prioritize projects that are currently under construction, followed by completed projects, and lastly, projects that are suspended or have not yet started.
[0067] (3) Projects for which water conservation work was not implemented in a timely manner;
[0068] (4) Projects where cooperation has been lacking during inspections or communications over the years;
[0069] (5) Production and construction projects involving environmental protection inspection letters;
[0070] (6) Projects that have been under construction for many years but have not been inspected on-site in previous years (and have not been verified within 12 months after acceptance);
[0071] (7) Try to take into account projects involving different types, different construction units, different compilation units, different monitoring units and different acceptance units;
[0072] For areas with a large overall project volume, on-site inspections should be carried out in batches, with each batch limited to 10-20 items.
[0073] Furthermore, during the on-site inspection / verification phase, such as Figure 3 As shown, the main tasks of the survey user end include three parts: reviewing relevant water and soil conservation materials for the project, holding on-site meetings and discussions, and conducting on-site field surveys. Through reviewing relevant materials and holding on-site meetings and discussions, the basic situation of the project and the occurrence of water and soil conservation in this stage are understood. Then, in combination with new technologies and methods, on-site field surveys and inspections are conducted to understand the actual occurrence of water and soil conservation at the project site. Therefore, the on-site verification data obtained includes on-site verification materials, on-site meeting data, and on-site survey results.
[0074] Specifically, during the on-site inspection / verification phase, the survey users reviewed the following documents: soil and water conservation plans, soil and water conservation monitoring reports (implementation plans, quarterly reports, annual reports, monitoring summary reports, etc.), soil and water conservation supervision reports (implementation details, monthly supervision reports, and supervision summary reports, etc.), acceptance reports (acceptance appraisal certificates, acceptance summary reports, etc.), and related procedures (construction permits, land use permits, temporary discharge permits, waste disposal permits, soil and water conservation compensation payment status, etc.). Therefore, the on-site verification documents obtained include soil and water conservation plans, soil and water conservation monitoring reports, soil and water conservation supervision reports, and acceptance reports, which correspond to a portion of the content uploaded by the survey users.
[0075] Furthermore, during the on-site inspection / verification phase, the survey users' work included the following: reports from the construction unit on the overall project situation and the formulation of the project's soil and water conservation system; reports from the construction unit on the overall construction progress, construction plan, and implementation of soil and water conservation measures; reports from the supervision unit on the implementation of soil and water conservation measures during construction and the progress of the supervision work on soil and water conservation; and reports from the acceptance unit on the work plan and progress of the special acceptance of soil and water conservation facilities. On-site inspection record forms and attendance sheets were filled out simultaneously. Therefore, the data obtained from these on-site meetings includes construction report data, construction report data, supervision report data, and acceptance report data, which corresponds to a portion of the content uploaded by the survey users.
[0076] Furthermore, during the on-site inspection / verification phase of the survey user terminals, the on-site survey work included observing the scope of responsibility for prevention and control of the project, topsoil stripping and utilization, spoil disposal site protection, greening implementation, and the implementation of other measures. A preliminary assessment was made to determine whether the on-site situation was consistent with the data provided during document review and meetings. The actual on-site situation was recorded simultaneously for further verification and validation. The obtained on-site survey results included drone aerial photos and videos, project on-site record sheets, remote sensing interpretation, and modeling results. After sorting, the corresponding data were obtained. Therefore, the obtained on-site survey results include drone aerial data, project on-site record data, and remote sensing interpretation and modeling data, which correspond to a portion of the content uploaded by the survey user terminals.
[0077] Furthermore, in one embodiment of the invention, the step of outputting the project verification data to the management user terminal and obtaining the review instruction fed back by the management user terminal specifically includes:
[0078] Based on the project verification data, a verification report is prepared and output to the management user terminal;
[0079] The review feedback data obtained from the management user terminal is analyzed for keywords to derive the review instruction, wherein,
[0080] The first and second reviews were passed based on the keywords used in the review process.
[0081] The second review failed because the keyword "failed the first review".
[0082] It should be noted that, in this embodiment, a verification report is first compiled based on the project verification data and output to the management user terminal. After reviewing the project verification data, the management user terminal uploads a review instruction. Therefore, the review feedback data from the management user terminal is obtained and analyzed for keywords to obtain the review instruction. Based on the keywords for passing the review, a first-time review passed and a second-time review passed are obtained. The number of verification project sheets corresponding to the first-time review passed and the second-time review passed differs. Therefore, the specific type of review passed can be distinguished by the number of verification project sheets combined with the current production and construction project. Based on the keywords for failing the review, a second-time review failed is obtained. The second-time review failed is forwarded to a new enforcement user terminal, while the management user terminal will issue a rectification notice for the first-time review failed.
[0083] Furthermore, in one embodiment of the invention, as Figure 4 As shown, the process of compiling a verification report based on the project verification data and outputting the verification report to the management user terminal specifically includes the following steps:
[0084] Step S402: Calculate the verification results of soil and water conservation parameters based on the verification report, wherein...
[0085] Step S404: Calculate the critical value of the approved soil and water conservation plan data based on the scope of responsibility for prevention, the volume of excavation and filling, the amount of topsoil stripping, and the area of vegetation measures;
[0086] Step S406: Calculate the approved location and upper limit of the waste disposal volume for the soil and water conservation plan based on the location and volume of the waste disposal site.
[0087] It should be noted that, in this embodiment, when compiling the verification report and outputting it to the management user terminal, different data thresholds and upper limits for waste disposal are calculated to assist the management user terminal in its review. Specifically, the data thresholds for the approved soil and water conservation plan are calculated based on the scope of responsibility, the volume of excavated and filled earthwork, the amount of topsoil stripping, and the area of vegetation measures. Specifically, the data threshold for the approved soil and water conservation plan corresponding to the scope of responsibility is: X 防治 (1+30%); The critical value of the approved soil and water conservation plan corresponding to the excavation and filling volume is: X 挖填方 (1+30%); The critical value of the approved soil and water conservation plan corresponding to the topsoil stripping amount is: X 表土 (1-30%); The critical value of the approved soil and water conservation plan corresponding to the area of vegetation measures is: X植物 (1-30%), where X represents the value corresponding to different subscripts of the approved soil and water conservation plan, and the location of the approved soil and water conservation plan and the upper limit of the amount of waste disposal correspond to whether the location has changed or whether the target value of the amount of waste disposal involves the upgrading of the level. Furthermore, in actual application, it is also necessary to mark and explain the implementation status of temporary measures. The explanation includes the completeness of the temporary drainage, covering measures, car washing pool, three-stage sedimentation tank and other temporary measures, as well as the maintenance status during the implementation of the project.
[0088] Furthermore, in one embodiment of the invention, as Figure 5 As shown, the process of obtaining first-time and second-time approvals based on keywords for review specifically includes:
[0089] The verification report item sheet, based on the review feedback data, distinguishes between "first review passed" and "second review passed," whereby...
[0090] If the keyword indicating approval is detected and the number of items checked is within the preset value, the approval instruction is determined to be a successful approval.
[0091] If the number of items checked is not equal to the preset value of the project when the keyword "review passed" is detected, the review instruction is determined to be a second review passed. The preset value of the project is dynamically associated with the current production and construction project.
[0092] It should be noted that, in this embodiment, the method of distinguishing between a first-time review pass and a second-time review pass when receiving review feedback data from the management user terminal is specifically described. Specifically, the set of first-time and second-time review passes is obtained based on the keyword "review passed," and the specific type is distinguished by checking the number of item orders. Different production and construction projects correspond to different numbers of item orders; therefore, the corresponding preset value for the project is a value dynamically associated with the current production and construction project, represented by the number of item orders corresponding to a first-time review pass. If the "review passed" keyword is detected and the number of item orders is checked to be the preset value, the review instruction is determined to be a first-time review pass; if the "review passed" keyword is detected and the number of item orders is not checked to be the preset value, the review instruction is determined to be a second-time review pass.
[0093] Furthermore, in one embodiment of the invention, when the review instruction is the first review passed and / or the second review passed, the corresponding construction user terminal is matched based on the current construction project, and the verification pass notice is output to the construction user terminal. At the same time, the associated data related to the current production construction project is uploaded to the preset supervision system. If the first review fails, the method further includes sending a rectification notice to the survey user terminal to respond to the second review process.
[0094] It should be noted that, in this embodiment, after the review is passed, the inspection pass notification is issued and uploaded. At this time, the construction user terminal needs to be matched to issue the inspection pass notification. At the same time as issuing the notification, the relevant data related to the current production and construction project also needs to be uploaded to the preset supervision system so as to facilitate data traceability in the later stage.
[0095] Furthermore, in one embodiment of the invention, when the review instruction indicates that the second review fails, the water affairs law enforcement corresponding to the current production and construction project is matched to obtain the law enforcement user terminal, and the law enforcement order is output to the law enforcement user terminal. In this case, after obtaining the law enforcement feedback data from the law enforcement user terminal, the rectification report in the law enforcement feedback data is output to the management user terminal.
[0096] It should be noted that in this embodiment, when the second review fails, a new user terminal is introduced, namely the law enforcement user terminal. When the review instruction indicates that the second review has failed, the law enforcement user terminal is obtained by matching the water affairs law enforcement corresponding to the current production and construction project, and the law enforcement order is output to the law enforcement user terminal. The law enforcement order is used by the law enforcement user terminal to carry out water affairs law enforcement. After the water affairs law enforcement is completed, the law enforcement feedback data fed back by the law enforcement user terminal is obtained, and the rectification report in the law enforcement feedback data is output to the management user terminal for verification.
[0097] This application also provides a water and soil conservation data monitoring system for production and construction projects. The water and soil conservation data monitoring system for production and construction projects can implement the water and soil conservation data monitoring method for production and construction projects described in this application. However, the implementation device of the water and soil conservation data monitoring method for production and construction projects described in this application includes, but is not limited to, the structure of the water and soil conservation data monitoring system for production and construction projects listed in this embodiment. All structural modifications and substitutions of the prior art made based on the principles of this application are included within the protection scope of this application.
[0098] Please see Figure 6 In one embodiment, this embodiment provides a water and soil conservation data monitoring system 60 for production and construction projects, the system comprising:
[0099] Module 61 is used to acquire project verification data from the survey user terminal. The project verification data includes preparation data and on-site verification data of the current production and construction project.
[0100] The review module 62 is used to output the project verification data to the management user terminal and obtain the review instructions fed back by the management user terminal, wherein the review instructions include first review passed, second review passed, and second review failed;
[0101] The matching module 63 is used to match different user terminals for data processing based on the review instruction. When the review instruction is that the first review is passed and / or the second review is passed, the matching construction user terminal outputs a verification pass notice and simultaneously uploads the current production and construction project to the preset supervision system. When the review instruction is that the second review is not passed, the matching enforcement user terminal outputs an enforcement order, obtains the enforcement feedback data from the enforcement user terminal, and outputs the enforcement feedback data to the management user terminal.
[0102] Since the specific implementation of this embodiment corresponds to the aforementioned method embodiment, the same details will not be repeated here, and those skilled in the art should also understand this. Figure 6 The division of the modules in the embodiments is only a logical functional division. In actual implementation, they can be fully or partially integrated into one or more physical entities. These modules can be fully implemented in software through processing element calls, fully implemented in hardware, or some modules can be implemented in software through processing element calls and some modules can be implemented in hardware.
[0103] In the embodiments provided by this invention, it should be understood that the disclosed systems, apparatuses, or methods can be implemented in other ways. For example, the apparatus embodiments described above are merely illustrative. For instance, the division of modules / units is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple modules or units may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be through some interfaces; the indirect coupling or communication connection of apparatuses or modules or units may be electrical, mechanical, or other forms.
[0104] The modules / units described as separate components may or may not be physically separate. The components shown as modules / units may or may not be physical modules; that is, they may be located in one place or distributed across multiple network units. Some or all of the modules / units can be selected to achieve the objectives of the embodiments of the present invention, depending on actual needs. For example, the functional modules / units in the various embodiments of the present invention may be integrated into one processing module, or each module / unit may exist physically separately, or two or more modules / units may be integrated into one module / unit.
[0105] Those skilled in the art will further recognize that the units and algorithm steps of the various examples described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, computer software, or a combination of both. To clearly illustrate the interchangeability of hardware and software, the components and steps of the various examples have been generally described in terms of functionality in the foregoing description. Whether these functions are implemented in hardware or software depends on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods to implement the described functions for each specific application, but such implementations should not be considered beyond the scope of this invention.
[0106] This invention also provides a computer-readable storage medium. Those skilled in the art will understand that all or part of the steps in the methods of the above embodiments can be implemented by a program instructing a processor. The program can be stored in a computer-readable storage medium, which is a non-transitory medium, such as random access memory, read-only memory, flash memory, hard disk, solid-state drive, magnetic tape, floppy disk, optical disk, and any combination thereof. The storage medium can be any available medium accessible to a computer or a data storage device such as a server or data center that integrates one or more available media. This available medium can be a magnetic medium (e.g., floppy disk, hard disk, magnetic tape), an optical medium (e.g., digital video disc (DVD)), or a semiconductor medium (e.g., solid-state drive (SSD)).
[0107] This invention also provides an electronic device. The electronic device includes a processor and a memory.
[0108] The memory is used to store computer programs.
[0109] The memory includes various media capable of storing program code, such as ROM, RAM, magnetic disk, USB flash drive, memory card, or optical disk.
[0110] The processor is connected to the memory and is used to execute the computer program stored in the memory, so that the electronic device performs the above-described method for monitoring water and soil conservation data in production and construction projects.
[0111] Preferably, the processor can be a general-purpose processor, including a central processing unit (CPU), a network processor (NP), etc.; it can also be a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components.
[0112] like Figure 7 As shown, the electronic device of the present invention is embodied in the form of a general-purpose computing device. The components of the electronic device may include, but are not limited to: one or more processors or processing units 71, a memory 72, and a bus 73 connecting different system components (including the memory 72 and the processing unit 71).
[0113] Bus 73 represents one or more of several bus architectures, including a memory bus or memory controller, a peripheral bus, a graphics acceleration port, a processor, or a local bus using any of the various bus architectures. Examples of these architectures include, but are not limited to, the Industry Standard Architecture (ISA) bus, the Micro Channel Architecture (MAC) bus, the Enhanced ISA bus, the Video Electronics Standards Association (VESA) local bus, and the Peripheral Component Interconnect (PCI) bus.
[0114] Electronic devices typically include a variety of computer-readable media. These media can be any available media that can be accessed by the electronic device, including volatile and non-volatile media, and removable and non-removable media.
[0115] Memory 72 may include computer system readable media in the form of volatile memory, such as random access memory (RAM) 721 and / or cache memory 722. The electronic device may further include other removable / non-removable, volatile / non-volatile computer system storage media. By way of example only, storage system 723 may be used to read and write non-removable, non-volatile magnetic media (…). Figure 7 Not shown; usually referred to as a "hard drive"). Although Figure 7Not shown, a disk drive for reading and writing to a removable non-volatile disk (e.g., a "floppy disk") and an optical disk drive for reading and writing to a removable non-volatile optical disk (e.g., a CD-ROM, DVD-ROM, or other optical media) may be provided. In these cases, each drive may be connected to bus 73 via one or more data media interfaces. Memory 72 may include at least one program product having a set (e.g., at least one) of program modules configured to perform the functions of the embodiments of the present invention.
[0116] A program / utility 724 having a set (at least one) of program modules 7241 may be stored, for example, in memory 72. Such program modules 7241 include, but are not limited to, an operating system, one or more application programs, other program modules, and program data. Each or some combination of these examples may include an implementation of a network environment. Program modules 7241 typically perform the functions and / or methods described in the embodiments of the present invention.
[0117] The electronic device can also communicate with one or more external devices (e.g., keyboard, pointing device, display, etc.), one or more devices that enable a user to interact with the electronic device, and / or any device that enables the electronic device to communicate with one or more other computing devices (e.g., network interface card, modem, etc.). This communication can be performed through input / output (I / O) interface 74. Furthermore, the electronic device can also communicate with one or more networks (e.g., local area network (LAN), wide area network (WAN), and / or public networks, such as the Internet) through network adapter 75. Figure 7 As shown, network adapter 75 communicates with other modules of the electronic device via bus 73. It should be understood that, although not shown in the figure, other hardware and / or software modules may be used in conjunction with the electronic device, including but not limited to: microcode, device drivers, redundant processing units, external disk drive arrays, RAID systems, tape drives, and data backup storage systems.
[0118] The above embodiments are merely illustrative of the principles and effects of the present invention and are not intended to limit the invention. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of the present invention. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in the present invention should still be covered by the claims of the present invention.
Claims
1. A method for monitoring soil and water conservation data in production and construction projects, characterized in that, include: Acquire project verification data from the survey user terminal. This project verification data includes preparation data and on-site verification data for current production and construction projects. Specifically, this includes: acquiring preparation data for current production and construction projects input from the survey user terminal, where the preparation data includes a verification project list and acceptance verification route; acquiring on-site verification data for current production and construction projects input from the survey user terminal, where the on-site verification data includes on-site verification materials, on-site meeting data, and on-site survey results. The on-site verification materials include soil and water conservation plans, soil and water conservation monitoring reports, soil and water conservation supervision reports, and acceptance reports. The on-site meeting data includes construction report data, construction report data, supervision report data, and acceptance report data. The on-site survey results include UAV aerial photography data, project on-site record data, and remote sensing interpretation and modeling data. The process of outputting the project verification data to the management user terminal and obtaining the review instructions from the management user terminal specifically includes: compiling a verification report based on the project verification data and outputting the verification report to the management user terminal; obtaining the review feedback data from the management user terminal and performing keyword analysis to obtain the review instructions, wherein, based on the keywords for passing the review, a first review passed and a second review passed are obtained; based on the keywords for failing the review, a second review failed is obtained; wherein, the process of compiling a verification report based on the project verification data and outputting the verification report to the management user terminal specifically includes: calculating the verification results of soil and water conservation parameters based on the verification report, wherein, based on the scope of prevention responsibility, the volume of excavation and filling earth and stone, the amount of topsoil stripping, and the area of vegetation measures, the approval of the soil and water conservation plan is calculated. The data threshold is calculated; the approved location and upper limit of the waste disposal volume of the soil and water conservation plan are calculated based on the location and volume of the waste disposal site; the first and second review approvals are obtained based on the review approval keywords, specifically including: distinguishing the first and second review approvals based on the verification report item list of the review feedback data, wherein if the number of verification item lists is equal to the project preset value when the review approval keyword is identified, the review instruction is determined to be a first review approval; if the number of verification item lists is not equal to the project preset value when the review approval keyword is identified, the review instruction is determined to be a second review approval, wherein the project preset value is dynamically associated with the current production and construction project; wherein the review instruction includes first review approval, second review approval, and second review failure; Based on the aforementioned review instructions, data processing is performed on different user terminals, wherein... When the review instruction is the first review passed and / or the second review passed, the matching construction user terminal outputs a verification pass notice and simultaneously uploads the current production construction project to the preset supervision system; When the review instruction indicates that the second review fails, the law enforcement user terminal outputs an enforcement order, and the law enforcement feedback data from the law enforcement user terminal is obtained and output to the management user terminal.
2. The method for monitoring water and soil conservation data in production and construction projects according to claim 1, characterized in that, When the review instruction is that the first review is passed and / or the second review is passed, the corresponding construction user terminal is matched based on the current construction project, and the verification pass notice is output to the construction user terminal. At the same time, the associated data related to the current production construction project is uploaded to the preset supervision system. If the first review fails, the method also includes sending a rectification notice to the survey user terminal to respond to the second review process.
3. The method for monitoring soil and water conservation data in production and construction projects according to claim 1, characterized in that, When the review instruction indicates that the second review fails, the water affairs law enforcement corresponding to the current production and construction project is matched to obtain the law enforcement user terminal, and the law enforcement order is output to the law enforcement user terminal. In addition, when the law enforcement feedback data is obtained from the law enforcement user terminal, the rectification report in the law enforcement feedback data is output to the management user terminal.
4. A data monitoring system for soil and water conservation in production and construction projects, characterized in that, include: The acquisition module is used to acquire project verification data from the survey user terminal. This project verification data includes preparation data and on-site verification data for the current production and construction project. Specifically, it includes: acquiring preparation data for the current production and construction project input by the survey user terminal, wherein the preparation data includes a verification project list and acceptance verification route; acquiring on-site verification data for the current production and construction project input by the survey user terminal, wherein the on-site verification data includes on-site verification materials, on-site meeting data, and on-site survey results. The on-site verification materials include soil and water conservation plans, soil and water conservation monitoring reports, soil and water conservation supervision reports, and acceptance reports. The on-site meeting data includes construction report data, construction report data, supervision report data, and acceptance report data. The on-site survey results include UAV aerial photography data, project on-site record data, and remote sensing interpretation and modeling data. The review module is used to output the project verification data to the management user terminal and obtain the review instructions from the management user terminal. Specifically, it includes: compiling a review report based on the project verification data and outputting the review report to the management user terminal; obtaining the review feedback data from the management user terminal and performing keyword analysis to obtain the review instructions, wherein, based on keywords indicating successful review, it obtains a first-time review pass and a second-time review pass; based on keywords indicating failed review, it obtains a second-time review failure. Specifically, compiling the review report based on the project verification data and outputting the review report to the management user terminal includes: calculating the verification results of soil and water conservation parameters based on the review report, wherein the calculation of soil and water conservation parameters is based on the scope of prevention responsibility, the volume of excavation and filling, the amount of topsoil stripping, and the area of vegetation measures. The data thresholds for the approved plan are used; the upper limits of the approved location and amount of waste disposal sites for soil and water conservation are calculated based on the location and amount of waste disposal sites; the process of obtaining first-time and second-time approvals based on review approval keywords specifically includes: distinguishing between first-time and second-time approvals based on the verification report item list of the review feedback data, wherein if the number of verification item lists is equal to the project preset value when the review approval keyword is identified, the review instruction is determined to be a first-time approval; if the number of verification item lists is not equal to the project preset value when the review approval keyword is identified, the review instruction is determined to be a second-time approval, wherein the project preset value is dynamically associated with the current production and construction project; wherein the review instruction includes first-time approval, second-time approval, and second-time disapproval; The matching module is used to match different user terminals for data processing based on the review instruction. When the review instruction indicates that the first review is passed and / or the second review is passed, the matching construction user terminal outputs a verification pass notice and simultaneously uploads the current production and construction project to the preset supervision system. When the review instruction indicates that the second review is failed, the matching enforcement user terminal outputs an enforcement order, obtains the enforcement feedback data from the enforcement user terminal, and outputs the enforcement feedback data to the management user terminal.
5. A computer-readable storage medium having a computer program stored thereon, characterized in that, When executed by the processor, the program implements the water and soil conservation data monitoring method for production and construction projects as described in any one of claims 1 to 3.
6. An electronic device, characterized in that, The electronic device includes a processor and a memory; wherein the memory is used to store a computer program, and the processor is used to execute the computer program stored in the memory, so that the electronic device performs the water and soil conservation data monitoring method for production and construction projects as described in any one of claims 1 to 3.
Citation Information
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