Archiving type geological data archive data storage system and method

By designing an archived geological data archive data storage system, the problem of relying on manual operations on geological data submission and management is solved, and efficient data management and query utilization is achieved.

CN120492559APending Publication Date: 2025-08-15GUANGDONG PROVINCE LAND & RESOURCES ARCHIVES
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Patent Information

Application Number
CN202510643338.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-19
Publication Date
2025-08-15

AI Technical Summary

Technical Problem

In the prior art, the submission and management of geological data mainly relies on manual operations, resulting in large labor costs and difficult to query and use, and imperfect management.

Method used

Design an archived geological data archive data storage system, including geological data recessation module, geological data storage module, virtual 3D warehouse module and digital core image library module, combining information technology, database technology and three-dimensional modeling technology to realize online reporting, approval, data import and export, multi-method query and display.

Benefits of technology

It realizes efficient management and utilization of geological data, facilitates the query and display of data, reduces the consumption of human resources, and improves the perfection of management.

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Abstract

The invention relates to the technical field of archive data storage, in particular to an archive type geological data archive data storage system and method, and the system comprises a geological data collection module, a geological data storage module, a geological data utilization module, a virtual 3D storehouse module, a digital core image library module, and a provincial geological data database management system. According to the archiving type geological data archive data storage system and method, the information technology, the database technology, the network technology and the three-dimensional modeling technology are fully utilized, online submission, online examination and approval, data export, data import, manual input and receipt printing of a geological data list are achieved, and digitization of related document data, picture data and photos of geological data is achieved; multi-method query and online display of geological data are realized, the process of utilizing the geological data is applied, establishment of a 3D model of a geological data warehouse and a digital core image library is realized, and management and utilization of the geological data are facilitated.
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Description

Technical Field

[0001] The present invention relates to the technical field of archive data storage, and in particular to an archival geological data archive data storage system and method. Background Art

[0002] Geological data is one of the most valuable basic data obtained from geological work, and has always been highly valued by geological survey and mining departments at home and abroad. The submission and management of geological data has just started in Guangdong Province and even the whole country, and many places are still not perfect.

[0003] At present, the approval and management of submitted information are basically completed manually, and the management of submitted information is still using primitive office tools such as Excel spreadsheets, which is both labor-intensive and difficult to provide to the public for query and use.

[0004] Therefore, we urgently need to provide an archival geological data archive data storage system and method. Summary of the Invention

[0005] The object of the present invention is to provide an archival geological data storage system and method to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an archival geological data archive data storage system and method, including a geological data submission module, a geological data storage module, a geological data utilization module, a virtual 3D warehouse module, a digital core image library module and a provincial geological data database management system.

[0007] The geological data submission module includes a geological data list entry module, which includes an online submission function, a data entry function, a submission approval function, a data export function, a data query function, a data backup function and a statistical analysis function.

[0008] The geological data management module includes data entry function, data query function, data display function, data export function and statistical analysis function.

[0009] The virtual 3D warehouse module includes roaming function, navigation function, query function, measurement function, output function and editing function.

[0010] The digital core image library module includes data digitization, core library construction, information network services and digital core library utilization.

[0011] The provincial geological data database management system includes a geological data processing tool set, a geological data results quality inspection module, a geological data database construction management module, a geological data data display module, a geological data service release module, a geological data analysis, mining and visualization module, a geological data sub-database management module, and a geological data operation and maintenance management module.

[0012] Preferably, the business data tables include a geological data catalog table, a geological data catalog list receipt, a geological data table to be submitted, a geological data submission and acceptance table, a geological data transfer table, a geological data acceptance certificate, a core and specimen photo table, a core and specimen preservation table, a geological data utilization application form, a core geological information table, a core image management information table, a project basic information table, storage warehouse information, a geological data information table, and a geological data information table.

[0013] Preferably, the system structure includes an infrastructure support layer, a data layer, a service layer, and an application layer.

[0014] Preferably, the infrastructure support layer is the underlying foundation supporting the construction and operation of the geological data management system, and the infrastructure support layer includes: data servers, WEB servers, personal PCs, geological data warehouses, etc.

[0015] Preferably, the data layer stores all the data of the system operation, and the data adopts a centralized storage strategy.

[0016] Preferably, the service layer mainly provides data, application and security services to meet system needs.

[0017] Preferably, the application layer provides a visual operating system and realizes integration with hardware facilities to meet various user needs.

[0018] Preferably, the geological data processing tool set includes geological data OCR recognition, geological data metadata collection, geological data case association, geological data graphics and entity association, geological data graphics and attribute cleaning, geological data file space mapping, geological data spatialization and thematic mapping tools, the geological data results quality inspection module includes geological data basic quality inspection, geological data data inspection plan configuration and geological data inspection task management information, the geological data database management module includes geological data storage management, geological data cataloging management, geological data data modeling, geological data data storage plan management, geological data data integration storage, geological data data extraction and geological data update, the geological data data display module It includes integrated display of geological data, special display of important and hot geological areas, geological data query and retrieval, and statistical analysis of geological data. The geological data service release module includes geological data service release, geological data application service release, and geological data service management. The geological data analysis, mining, and visualization module includes dynamic data source access information, analysis and mining model construction information, visualization component library management information, and visualization scene design and management information. The geological data sub-library management module includes data statistics, cargo location information management, data entry registration, data entry sorting registration, entry and exit registration management, and entry and exit statistics. The geological data operation and maintenance management module includes user management, log management, dictionary management, online status, and backup and recovery.

[0019] Preferably, a method for storing archival geological data includes the following steps:

[0020] S1: The submitter logs into the system and fills in the submission information online according to the requirements of the geological data catalogue table, and submits it after completing.

[0021] S2: The system administrator checks whether the data submitted by the submitter meets the regulatory requirements. If it does not meet the requirements, it will be sent back to the submitter for modification. The submitter will then resubmit the data after modification until it meets the requirements.

[0022] S3: Enter into the system after meeting the requirements.

[0023] S4: The system administrator creates a new submission project.

[0024] S5: Enter the data submitted by the remitter. Automatic entry, closing entry and batch entry are supported here.

[0025] S6: Check and modify the data.

[0026] S7: Submitters who do not need to submit must enter the geological data storage or burial location into the system, and the system will print a submission receipt. Currently, there are two receipt formats: general format and regional geological survey project format. The system can automatically determine the type of submission project and generate the corresponding receipt. Submitters who do not need to submit must enter the geological data storage or burial location into the system, and the system will print a submission receipt.

[0027] S8: After on-site acceptance and submission of qualified geological data, a submission contract is signed, a 3D warehouse is generated, and storage is carried out. The system generates a transfer list and provincial file number, and enters the sub-warehouse name, column number, and row number.

[0028] S9: The system generates a storage report based on the entered geological profile, brief description of main results, and storage status of geological data.

[0029] S10: Submission is completed and the system generates a geological data acceptance certificate.

[0030] S11: Through the data entry module, text data, graphic data, photos, storage warehouse names, and 3D modeling images related to geological data are sorted and stored according to the file number.

[0031] Compared with the prior art, the present invention has the following beneficial effects:

[0032] 1. The archival geological data archive data storage system and method fully utilize information technology, database technology, network technology, and three-dimensional modeling technology to realize online submission, online approval, data export, data import, manual entry, and receipt printing of geological data lists, digitization of relevant documents, pictures, and photos of geological data, multi-method query and online display of qualification information, and the process of applying for the use of geological data. It realizes the establishment of a 3D model of the geological data warehouse and a digital core image library, facilitates the management and utilization of geological data, and solves the problem mentioned in the background technology that it is difficult to provide to the public for query and utilization. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. 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 creative work.

[0034] Figure 1 This is a schematic diagram of the structure of the geological data list entry module of the present invention;

[0035] Figure 2 This is a schematic diagram of the structure of the geological data storage module of the present invention;

[0036] Figure 3 This is a schematic diagram of the 3D virtual warehouse module structure of the present invention;

[0037] Figure 4 This is a schematic diagram of the digital core image library construction module structure of the present invention;

[0038] Figure 5 A flow chart for the geological data submission of the present invention;

[0039] Figure 6 It is a flowchart of document filing of the present invention;

[0040] Figure 7 The geological data receiving flow chart of the present invention is as follows;

[0041] Figure 8 A flow chart of the application submission process for the present invention;

[0042] Figure 9 The geological data receiving flow chart of the present invention is as follows;

[0043] Figure 10 This is the general diagram of the geological data database management system of the present invention. DETAILED DESCRIPTION

[0044] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0045] In the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," "connect," "fixed," etc. should be understood broadly. For example, they may refer to fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.

[0046] See also Figures 1-9 The present invention provides a technical solution: an archival geological data archive data storage system, including a geological data submission module, a geological data storage module, a geological data utilization module, a virtual 3D warehouse module, a digital core image library module and a provincial geological data database management system.

[0047] The geological data submission module includes a geological data list entry module, which includes an online submission function, a data entry function, a submission approval function, a data export function, a data query function, a data backup function and a statistical analysis function.

[0048] The geological data management module includes data entry function, data query function, data display function, data export function and statistical analysis function.

[0049] The virtual 3D warehouse module includes roaming function, navigation function, query function, measurement function, output function and editing function.

[0050] The digital core image library module includes data digitization, core library construction, information network services and digital core library utilization.

[0051] The geological data processing tool set includes geological data OCR recognition, providing OCR image and file recognition functions, geological data metadata collection, and metadata reading tools. It supports the extraction of file-level archival metadata and file-level title lists in accordance with the requirements for metadata organization of geological data archives in the collection, geological data case association, based on the common fields of file data and file data, to achieve one-to-one association matching of the extracted file-level archival metadata and file-level title lists, geological data graphics and entity association, based on the common fields of geological data graphic metadata and entity metadata, to achieve one-to-one association matching of graphic data and entity data, geological data graphics and attribute cleaning, providing geological data graphics and attribute data cleaning information functions, geological data file space mapping, reading geological data file data, generating spatial ranges for the coordinates of each geological data file, and obtaining the mapping construction of each geological data file. Library spatial information, geological data spatialization, reading geological data, spatial processing of geological data, thematic mapping tools, thematic mapping tools realize the functions of mapping template management, symbol library management, thematic map production, and thematic map output to meet the needs of unified management of geological data in Guangdong Province. The geological data results quality inspection module includes basic quality inspection of geological data, management of quality inspection rules, configuration rule creation, editing, and deletion functions, and the ability to enter keywords for query and retrieval to achieve fast search. Geological data data inspection plan configuration provides geological data inspection plan configuration capabilities and supports geological data spatial data, metadata and other data, geological drilling data and other types of data inspection plans. Design, including quality inspection model design, inspection item design, quality model design, inspection plan design, geological data inspection task management information, execution of geological data inspection tasks, support for task progress, result viewing, support for editing and deletion operations, the geological data database management module includes geological data storage management, support for file geological data data type, spatial type, relational type and tile type geological data storage management, geological data catalog management will be geological data archive file level as a unit through manual cataloging or catalog automatic import two ways to create geological archive file level directory, geological data modeling, through metadata model, file structure model, data type model, mosaic data set model, vector data The creation and storage management of the dataset model and tile dataset model, the management of geological data storage scheme, the creation of corresponding database construction schemes according to the characteristics of different types of geological data in the province, the configuration of storage data types, the rapid storage of various types of geological data, the integration of geological data into the database, the batch automatic integration of processed collection geological data into the database, mainly including geological data catalog data, graphic data, data, geological data extraction, geological data metadata, file data, spatial data extraction, geological data update, vector, raster and other spatial data, file data, metadata update, the geological data display module includes geological data integration display,It realizes the association display of spatial data and maps, chart file information of original geological, result geological and geological data of the same project and region, thematic display of important and hot geological areas, geological data query and retrieval, and statistical analysis of geological data, and statistics of the total amount of stored original geological data, result geological data and geological data, and the total number of data records. The geological data service publishing module includes geological data service publishing, geological data application service publishing and geological data service management, provides geological data service production functions, realizes rapid access and browsing of geological data graphic data and keyword query, addition, modification, deletion, and batch deletion operations of graphic data. The published data services rely on the Guangdong Province Natural Resources Integrated Management and Service Platform to provide external services. The geological data analysis, mining and visualization module includes dynamic access information of data sources, which is accessed in the form of direct connection, including spatial data and attribute data. Supports creating, editing, deleting, and entering keywords for querying; displays field information such as data name, data type, connection parameters, access status, analyzes and mines model construction information, quickly and flexibly builds processes through a graphical interface, and configures and adjusts modeling parameters according to its own business needs. It provides a directory of various map and chart visualization components for users to directly drag and drop visualization components into the data model, associates them with the data processing process, and supports scientific management of components. It also provides visualization scene design and management information, scene library management functions, and supports editing and previewing of visualization scenes. The geological data sub-library management module includes data statistics, which mainly performs data statistics on existing collections. Row classification statistics and space statistics, etc.; storage location information management, view the geological data placed in different storage locations, different storage locations with free space, allocate storage locations and encode the free space; data entry registration, read data entry registration information, users can register the information of submitted storage data; data entry sorting registration, data entry sorting registration mainly encodes the received data and enters attribute information; storage entry and exit registration management and storage entry and exit statistics, read data exit registration information, users fill in the information required for exit data; the geological data operation and maintenance management module includes user management, realizes user information storage, authority allocation and management, supports adding, editing, querying, authorization, password reset, deletion, role association and other operations. It can adapt to page display, provide page change function, realize paging display; support quick search query to locate users, conveniently view users' basic information and authority configuration; log management, keyword search, export, and backup operations on system logs. Record system login time, login information, dictionary management, keyword search, editing, and deletion of dictionaries and dictionary contents, unified management of dictionary libraries, online status, display and record detailed information of users logged in in the same network segment, backup and recovery,Provides backup management functions. Supports backup and export of selected data, keyword search, deletion, and batch deletion operations.

[0052] The business data table includes the geological data catalog table, the geological data related information that needs to be entered when the project is submitted, the geological data catalog list receipt, the relevant information sent to the submitter if it is approved and does not need to be submitted, the geological data table to be submitted, the geological data related information that needs to be submitted and sent to the submitter if it is approved and needs to be submitted, the geological data submission receipt table, the relevant information on the receipt of the submitted geological data, the geological data transfer table, the information on the confirmation of the quantity of geological data when the land and resources archives transfers the geological data to the entrusted custodian, the geological data acceptance certificate, and the geological data acceptance certificate after the geological data is accepted. Relevant information sent to the submitter, core and specimen photo table, data table for storing photos of cores, specimens, etc., core and specimen preservation table, storage location of cores and specimens in the warehouse, geological data utilization application form, data table to be filled out when applying for geological data utilization, core geological information table, relevant geological information of cores, core image management information table, scanned images of stored cores, project basic information table for storing basic information entered into the project, storage warehouse information for storing warehouse information, geological data information table, geological data information of drilling projects, geological data information table, geological data information of regional survey projects.

[0053] The system structure includes infrastructure support layer, data layer, service layer and application layer. The infrastructure support layer is the underlying foundation for the construction and operation of the geological data management system. The infrastructure support layer includes: data server, WEB server, personal PC, geological data warehouse, etc. The data layer stores all the data of the system operation, and the data adopts a centralized storage strategy. The service layer mainly provides data, application and security services to meet the needs of the system. The application layer provides a visual operating system and realizes integration with hardware facilities to meet the needs of various users.

[0054] A method for storing archival geological data includes the following steps:

[0055] S1: The submitter logs into the system and fills in the submission information online according to the requirements of the geological data catalogue table, and submits it after completing.

[0056] S2: The system administrator checks whether the data submitted by the submitter meets the regulatory requirements. If it does not meet the requirements, it will be sent back to the submitter for modification. The submitter will then resubmit the data after modification until it meets the requirements.

[0057] S3: Enter into the system after meeting the requirements.

[0058] S4: The system administrator creates a new submission project.

[0059] S5: Enter the data submitted by the remitter. Automatic entry, closing entry and batch entry are supported here.

[0060] The digitization of physical geological data involves collecting physical image information through scanning, analysis, photography, and other means. A professional core scanning and analysis system is used to collect information on the core surface, generating images. These images are then stored in an image database through a graphic data management system. This, combined with the entry of relevant core address information (rock name, lithology description, test data, etc.), forms a comprehensive core graphic image library, enabling statistical analysis and comprehensive management of this information. Core users can browse, query, and observe the entire borehole core image on a computer, identifying key horizons for observation. This reduces the enormous workload associated with direct physical observation.

[0061] Core scanning work content:

[0062] Select Scan Method

[0063] Scanning methods include translational scanning and rolling scanning. Translational scanning mainly collects image information of the core surface, and can be performed on both intact and broken cores. Rolling scanning collects image information of the outer surface of cylindrical cores, and this scanning method can only be performed when the core is intact.

[0064] Image Scanning

[0065] Set the scanning parameters and scan with one grid of the core box as a unit. The scanned image is stored in JPG format and saved separately by mining area and drill hole.

[0066] Scanning image processing and warehousing

[0067] After cropping and splicing the translational scan images, combined with geological information such as rock name, lithology description, and test data, a comprehensive histogram is generated. The processed core images are entered into the core image management database by borehole name, section, and depth. After splicing the rolling scan images, 3D reconstruction can be performed to restore the core image, enabling 360° rotational observation. Users can rotate and zoom in on specific areas for detailed observation.

[0068] S6: Check and modify the data.

[0069] S7: Submitters who do not need to submit must enter the geological data storage or burial location into the system, and the system will print a submission receipt. Currently, there are two receipt formats: general format and regional geological survey project format. The system can automatically determine the type of submission project and generate the corresponding receipt. Submitters who do not need to submit must enter the geological data storage or burial location into the system, and the system will print a submission receipt.

[0070] S8: After on-site acceptance and submission of qualified geological data, a submission contract is signed, a 3D warehouse is generated, and storage is carried out. The system generates a transfer list and provincial file number, and enters the sub-warehouse name, column number, and row number.

[0071] An XML-based data exchange system is used to export and import data from the underlying database. It can be divided into two functional modules: data export and data import. These modules are loosely coupled and can be independently designed and configured. The arrows in the diagram represent data flow. The middle layer of data exchange uses XML data, and XML data documents are transmitted over the network via a web server. Both the data import and export modules can be deployed simultaneously on one end, enabling simultaneous data export and import operations, thus building a data exchange platform.

[0072] The data export module is implemented on the DS, or data source. Upon receiving an XML data request from the remote data import module, the web server initiates the data export function. Based on the XML data request, the data export module queries and converts data from a data source, such as a database or data file, exports the XML data document, and then sends it to the DT via the web server.

[0073] The data import module is implemented on the DT (data sink). It sends a data request to the DS at the appropriate time, initiating the data exchange process. It monitors the network port. If the XML document is not received within a certain time limit, it re-requests the data. If it is received correctly, it saves the XML document. The data import module parses the XML document and determines whether it conforms to the standard data exchange format. If so, it imports the data into the corresponding database or data file. Otherwise, it re-sends the XML data request.

[0074] During data exchange, the data format, data type, and validity must be verified. In addition to verifying the data type, you should also consider setting filters in the corresponding export and import modules to verify the validity of the data content.

[0075] The establishment of a 3D virtual warehouse model allows reviewers to directly check the status of existing warehouse data during the daily submission of physical geological data to determine whether the physical geological data submitted is representative, etc. to decide the approval result; after approval, the administrator can directly determine the storage location of the geological data through the model; through automatic association and update of the model after storage in the warehouse, reviewers can directly query the storage status of the geological data they submitted in real time.

[0076] The creation of a 3D virtual warehouse model makes the daily management of physical geological data more convenient. Whether for daily review or presentation to other departments, the actual state of the physical geological data can be intuitively viewed in the office without having to go to the site. If problems arise with the data in the warehouse, managers can directly view the model and quickly develop solutions.

[0077] The establishment of a 3D virtual warehouse model makes the social use of physical geological data more convenient and intuitive. After applying for use, users can directly view the physical geological data in the virtual warehouse, including viewing photos and other information. When users need to borrow the data, the management staff can immediately check the status of the data to provide a basis for approving the loan. After the loan is approved, users can check the storage location of the data and generate a path to facilitate the user to retrieve it from the warehouse. After the loan is completed and returned, the administrator can directly modify the status of the data to facilitate the previous information to be found the next time the loan is used.

[0078] S9: The system generates a storage report based on the entered geological profile, brief description of main results, and storage status of geological data.

[0079] S10: Submission is completed and the system generates a geological data acceptance certificate.

[0080] S11: Through the data entry module, text data, graphic data, photos, storage warehouse names, and 3D modeling images related to geological data are sorted and stored according to the file number.

[0081] When in use, the submitter logs into the system and fills in the submission information online according to the requirements of the geological data catalog table. After completing the filling, submit it. The system administrator checks whether the data submitted by the submitter meets the specification requirements. If it does not meet the requirements, it will be sent back to the submitter for modification. After modification, it will be resubmitted until it meets the requirements. After meeting the requirements, it will be entered into the system. The system administrator creates a new submission project, checks and modifies the data submitted by the submitter, and then enters it. Submitters who do not need to submit must enter the storage location or burial location of the geological data in the system, and the system prints out a submission receipt. Currently, there are two receipt formats: general format and regional geological survey project. The system can make its own judgment based on the category of the submitted project and generate the corresponding receipt. The submitter who does not need to submit the data must enter the storage location or burial location of the geological data in the system. The system prints out the submission receipt. After on-site acceptance and the submitted geological data are qualified, the submission contract is signed and the data is put into storage. The system generates a transfer list and provincial file number, enters the branch library name, column number, and row number, and the submission is completed. The system generates a geological data acceptance certificate, and organizes and stores the text data, graphic data, photos, storage warehouse names, and 3D modeling images related to the geological data according to the file number through the data entry module.

[0082] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a..." does not exclude the presence of additional identical elements in the process, method, article, or device comprising the element.

[0083] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. An archival geological data storage system, characterized by: It includes geological data submission module, geological data storage module, geological data utilization module, virtual 3D warehouse module, digital core image library module and provincial geological data database management system; The geological data submission module includes a geological data list entry module, which includes an online submission function, a data entry function, a submission approval function, a data export function, a data query function, a data backup function and a statistical analysis function; The geological data management module includes data entry function, data query function, data display function, data export function and statistical analysis function; The virtual 3D warehouse module includes roaming function, navigation function, query function, measurement function, output function and editing function; The digital core image library module includes data digitization, core library construction, information network services and digital core library utilization; The provincial geological data database management system includes a geological data processing tool set, a geological data results quality inspection module, a geological data database construction management module, a geological data data display module, a geological data service release module, a geological data analysis, mining and visualization module, a geological data sub-database management module, and a geological data operation and maintenance management module.

2. The archival geological data storage system according to claim 1, characterized in that: The business data tables include geological data catalog table, geological data catalog list receipt, geological data to be submitted table, geological data submission and acceptance table, geological data transfer table, geological data acceptance certificate, core and specimen photo table, core and specimen preservation table, geological data utilization application form, core geological information table, core image management information table, project basic information table, storage warehouse information, geological data information table, and geological data information table.

3. The archival geological data storage system according to claim 1, characterized in that: The system structure includes an infrastructure support layer, a data layer, a service layer, and an application layer.

4. The archival geological data storage system according to claim 1, characterized in that: The infrastructure support layer is the underlying foundation for the construction and operation of the geological data management system. The infrastructure support layer includes: data servers, WEB servers, personal PCs, geological data warehouses, etc.

5. The archival geological data storage system according to claim 1, characterized in that: The data layer stores all the data of the system operation, and the data adopts a centralized storage strategy.

6. The archival geological data storage system according to claim 1, characterized in that: The service layer mainly provides data, application and security services to meet system needs.

7. The archival geological data storage system according to claim 1, characterized in that: The application layer provides a visual operating system and integrates with hardware facilities to meet the needs of various users.

8. The archival geological data storage system according to claim 1, characterized in that: The geological data processing tool set includes geological data OCR recognition, geological data metadata collection, geological data case association, geological data graphics and entity association, geological data graphics and attribute cleaning, geological data file (volume) space mapping, geological data spatialization and thematic mapping tools. The geological data results quality inspection module includes geological data basic quality inspection, geological data data inspection plan configuration and geological data inspection task management information. The geological data database management module includes geological data storage management, geological data cataloging management, geological data data modeling, geological data data storage plan management, geological data data integration storage, geological data data extraction and geological data update. The geological data data display module includes geological data storage management, geological data cataloging management, geological data data modeling, geological data data storage plan management, geological data data integration storage, geological data data extraction and geological data update. It includes integrated display of geological data, special display of important and hot geological areas, geological data query and retrieval, and statistical analysis of geological data. The geological data service release module includes geological data service release, geological data application service release, and geological data service management. The geological data analysis, mining, and visualization module includes dynamic data source access information, analysis and mining model construction information, visualization component library management information, and visualization scene design and management information. The geological data sub-library management module includes data statistics, cargo location information management, data entry registration, data entry sorting registration, entry and exit registration management, and entry and exit statistics. The geological data operation and maintenance management module includes user management, log management, dictionary management, online status, and backup and recovery.

9. A method for storing archival geological data, characterized in that: The following steps are involved: S1: The submitter logs into the system and fills in the submission information online according to the requirements of the geological data catalogue, and submits it after completing the filling; S2: The system administrator checks whether the data submitted by the submitter meets the regulatory requirements. If it does not meet the requirements, it will be sent back to the submitter for revision. The submitter will then resubmit the data after revision until it meets the requirements. S3: Enter the system after meeting the requirements; S4: System administrator creates a new submission project; S5: Enter the data submitted by the remitter. This supports automatic entry, closing entry, and batch entry. S6: Check and modify the data; S7: Submitters who do not need to submit must enter the storage location or burial location of the geological data in the system, and the system will print out a submission receipt. Currently, there are two receipt formats: general format and regional geological survey project format. The system can automatically determine the type of submission project and generate the corresponding receipt. Submitters who do not need to submit must enter the storage location or burial location of the geological data in the system, and the system will print out a submission receipt. S8: After on-site acceptance and the submitted geological data are qualified, a submission contract is signed, a 3D warehouse is generated, and storage is carried out. The system generates a transfer list and provincial file number, and enters the sub-warehouse name, column number, and row number; S9: The system generates a storage report based on the input geological profile, brief description of main results, and storage status of geological data; S10: After the submission is completed, the system generates a geological data acceptance certificate; S11: Through the data entry module, text data, graphic data, photos, storage warehouse names, and 3D modeling images related to geological data are sorted and stored according to file numbers.