A geological drilling work overall management system

CN122840424APending Publication Date: 2026-09-29EXPLORATION TECH RES INST OF CHINESE ACADEMY OF GEOLOGICAL SCI
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Patent Information

Application Number
CN202611035648.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-07-13
Publication Date
2026-09-29

AI Technical Summary

Technical Problem

[0004]综上所述,现有的与钻探工程相关的系统只是实现了局部数据的采集、存储和分析等,无法实现大体量钻探工程的统筹分配、质量管理、数据汇聚、应用分析、专家技术决策、钻探队伍保障等综合管理服务平台系统

Benefits of technology

本申请提供了一种地质钻探工作统筹管理系统,包括:钻探队伍库,用于存储钻探队伍的资质信息;钻探专家库,用于存储钻探专家的信息;任务统筹功能模块,用于根据钻探需求订单从所述钻探队伍库中寻找匹配的钻探队伍,并在钻探过程中从所述钻探专家库中搜寻匹配的专家提供指导;质量控制模块,用于对钻探过程进行监督管理并收集钻探数据;成果应用模块,用于对钻探过程进行显示和分析。本申请实现了钻探工程的统筹和综合管理,有力支撑新一轮找矿突破战略行动钻探质量控制和大数据的集成,为钻探工程数字化和信息化建设提供了有效的手段和技术支撑。

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Abstract

The application discloses a geological drilling work overall management system and relates to the field of geological drilling management. The system comprises a drilling team library for storing the qualification information of drilling teams; a drilling expert library for storing the information of drilling experts; a task overall function module for searching for matched drilling teams from the drilling team library according to drilling demand orders and searching for matched experts from the drilling expert library for providing guidance in the drilling process; a quality control module for supervising and managing the drilling process and collecting drilling data; and an achievement application module for displaying and analyzing the drilling process. The application realizes the overall and comprehensive management of drilling projects, effectively supports the integration of drilling quality control and big data in a new round of prospecting breakthrough strategic action, and provides effective means and technical support for the digitalization and informatization construction of drilling projects.
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Description

Technical Field

[0001] This application relates to the field of geological drilling management, and in particular to a comprehensive management system for geological drilling operations. Background Technology

[0002] The new round of strategic action for mineral exploration breakthroughs involves a large amount of drilling work, a wide geographical distribution, and numerous drilling units, requiring a new engineering organization model. To ensure the implementation of high-quality drilling projects, efficient and high-quality management across the entire chain is needed. Implementing large-scale, high-quality drilling projects is challenging. There is an urgent need for a method to support the overall coordination and quality management of drilling work, and to improve the integration and application of drilling big data.

[0003] Software systems related to drilling engineering mainly focus on data acquisition and database construction. For example, the coal mine drilling equipment parameter database system realizes equipment management, parameter management, and drilling process parameter optimization; the railway geological drilling data acquisition and management system realizes the acquisition and storage of drilling data along the railway line on mobile devices, as well as the real-time transmission of data and the input of information such as borehole opening and borehole closing; the oil drilling logging system realizes the real-time monitoring and storage of drilling parameters; and there are also systems for acquiring and analyzing the working conditions of related downhole tools and instruments.

[0004] In summary, existing systems related to drilling projects only achieve local data collection, storage, and analysis, and cannot realize a comprehensive management service platform system for large-scale drilling projects, including overall allocation, quality management, data aggregation, application analysis, expert technical decision-making, and drilling team support. Summary of the Invention

[0005] The purpose of this application is to provide a comprehensive management system for geological drilling operations, which can realize the overall planning and management of drilling projects, effectively support the drilling quality control and big data integration of the new round of mineral exploration breakthrough strategic action, and provide effective means and technical support for the digitalization and informatization of drilling projects.

[0006] To achieve the above objectives, this application provides the following solution: A geological drilling work coordination and management system, characterized in that the geological drilling work coordination and management system includes: The drilling team database is used to store the qualification information of drilling teams; A drilling expert database is used to store information about drilling experts. The task coordination module is used to find a matching drilling team from the drilling team database based on drilling demand orders, and to search for matching experts from the drilling expert database to provide guidance during the drilling process. The quality control module is used to supervise and manage the drilling process and collect drilling data; The results application module is used to display and analyze the drilling process.

[0007] In one embodiment of this application, the task coordination function module specifically includes: The query module is used to view the qualification information of drilling teams and the information of drilling experts; The approval center is used to submit drilling demand orders to the management department for review. The drilling team selection module is used to recommend matching drilling teams based on the approved drilling demand orders and the qualification information of the drilling teams, and to send the drilling demand orders to the recommended drilling teams. The order pool is used to store rejected drilling demand orders after recommended drilling teams reject them, and then recommend them to all drilling teams in the drilling team database. The drilling expert selection module is used to search for matching experts from the drilling expert database to provide guidance based on drilling demand orders and the drilling teams that have accepted the orders; The business acceptance statistics query module is used to collect and view the acceptance status of drilling demand orders; the acceptance status includes the qualification information of the drilling team that accepted the order and the drilling requirements corresponding to the order.

[0008] In one embodiment of this application, the quality control module specifically includes: The engineering supervision module is used to establish drilling engineering files and determine construction nodes based on drilling demand orders. At each construction node, the construction information reported by that node is reviewed. The data management module is used to collect construction information for each construction node and build a dataset.

[0009] The construction milestones include determining borehole coordinates, engineering design, selection of construction teams, land acquisition tracking, well site construction tracking, drilling equipment installation tracking, drilling commencement, drilling process supervision, borehole sealing upon completion, field acceptance, information technology acceptance, and results acceptance.

[0010] The drilling project file includes the project name, project manager, project name, borehole number, designed borehole depth, borehole type, borehole location, work area name, main mineral type, and funding source.

[0011] In one embodiment of this application, the result application module specifically includes: A thematic map drawing module is used to draw thematic maps based on the drilling process; the thematic maps include at least borehole columnar sections. The data analysis module is used to automate the analysis of drilling data based on historical or current data from the drilling process, including technical analysis of pure drilling time, maintenance time, water level measurement time, inclination measurement time, coring time, and drilling speed. The knowledge base and AI assistant modules are used to conduct in-depth analysis of historical or current data of the drilling process based on artificial intelligence. This includes research on construction design, drilling tools and drilling technology, accident handling analysis, drilling efficiency, calculation of construction parameters, borehole formation structure analysis, formation well profile processing, post-drilling assessment of wellbore stability and optimization measures.

[0012] In one embodiment of this application, the geological drilling work management system further includes: The project deployment overview module provides an overall overview of all drilling projects in the geological drilling work management system. The displayed content includes the total number of boreholes, the number of drilling projects to be started, the number of completed drilling projects, and the number of drilling projects in progress, all displayed proportionally in a pie chart. The project deployment overview module also provides the project to which each borehole belongs, borehole number, drilling manager, and displays the geographical location of each borehole in the form of a real-time map.

[0013] In one embodiment of this application, the geological drilling work management system further includes: The instant messaging module provides communication functions between the drilling team, drilling experts, and the party sending drilling demand orders. These communication functions include online chat and video conferencing.

[0014] In one embodiment of this application, the task coordination module periodically scores drilling teams and drilling experts, giving priority to drilling teams and experts with high scores, and blacklisting drilling teams and experts with low scores.

[0015] In one embodiment of this application, the task coordination function module is further used to query the coordination status of all drilling tasks in parallel according to the year, region, name of the drilling demand order sender, and name of the drilling team. The drilling task coordination status is displayed in the form of an overview list, bar chart, or line chart, and the task coordination status includes the total drilling workload and the total drilling cost.

[0016] In one embodiment of this application, the drilling expert database is reviewed based on the experts' source, profession, professional title, and project management experience, and the best experts are selected for inclusion in the database. The drilling teams are formally included in the drilling team database after being reviewed and approved by drilling experts based on the nature of the drilling unit, qualifications, drilling equipment, work performance, management level, safety accidents, and construction evaluation.

[0017] According to the specific embodiments provided in this application, the following technical effects are disclosed: This application provides a geological drilling work coordination and management system, including: a drilling team database for storing the qualification information of drilling teams; a drilling expert database for storing the information of drilling experts; a task coordination module for finding matching drilling teams from the drilling team database based on drilling demand orders, and searching for matching experts from the drilling expert database to provide guidance during the drilling process; a quality control module for supervising and managing the drilling process and collecting drilling data; and a results application module for displaying and analyzing the drilling process. This application realizes the overall coordination and comprehensive management of drilling projects, strongly supports the integration of drilling quality control and big data in the new round of mineral exploration breakthrough strategic action, and provides effective means and technical support for the digitalization and informatization of drilling projects. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a schematic diagram of a geological drilling work overall management system according to one embodiment of this application.

[0020] Figure 2 This is a flowchart of construction nodes in an engineering supervision module provided in one embodiment of this application.

[0021] Figure 3 This is a schematic diagram of the structure of a computer device provided in an embodiment of this application. Detailed Implementation

[0022] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0023] To make the above-mentioned objectives, features and advantages of this application more apparent and understandable, the application will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0024] The Geological Drilling Work Coordination and Management System provides a new form and method for the overall allocation and comprehensive management of geological drilling tasks. Traditional geological drilling projects lack online and information-based management, and the resulting data are mostly in paper form, which is not conducive to preservation and data analysis and utilization. This is especially true for large-scale drilling tasks in the new round of mineral exploration breakthrough strategic actions, which lack the means and methods for overall and unified management. Existing systems related to drilling projects only realize the collection, storage, and analysis of local data, and cannot realize a comprehensive management service platform system for large-scale drilling projects, including overall allocation, quality management, data aggregation, application analysis, expert technical decision-making, and drilling team support. This application realizes the overall coordination and comprehensive management of drilling projects, effectively supports the drilling quality control and big data integration of the new round of mineral exploration breakthrough strategic actions, and provides effective means and technical support for the digitalization and informatization of drilling projects.

[0025] like Figure 1 As shown, the geological drilling work overall management system includes: 1. Drilling team database, used to store the qualification information of drilling teams.

[0026] Specifically, the drilling team database establishes an entry and exit mechanism for drilling teams. Teams intending to join the database must truthfully fill in information online, including their organization type, qualifications, drilling equipment and personnel qualifications, work performance, management level, safety accidents, and construction evaluations. After expert review and approval, they are officially added to the database. If a drilling unit experiences serious injury or death, a major disaster, an environmental accident, or a major equipment accident, it is blacklisted and its qualifications are revoked. The system periodically (e.g., annually) reminds drilling team contacts to update their information and establishes selection principles for drilling teams, allowing for online selection of suitable teams for specific projects. Furthermore, the database includes filtering and one-click notification functions, enabling the selection of drilling teams as needed. The database can be searched by team name, contact person, etc.

[0027] The purpose of the drilling team database is to accurately match available drilling teams based on the necessary conditions for implementing a drilling project, such as relevant qualifications, equipment capabilities, and personnel configuration, and by referring to past performance, industry reputation, and safety incidents, thus providing reliable team support for the smooth implementation of the drilling project.

[0028] 2. Drilling expert database, used to store information on drilling experts.

[0029] Specifically, the expert information in the drilling expert database includes the expert's source, specialty, professional title, project management experience, and personal information. After applicants complete the information entry, the system will review and select the best candidates for inclusion in the database, without any restrictions. The system will periodically organize expert recruitment for the database. Qualified experts can apply voluntarily, with inclusion occurring annually or every few years. For urgently needed experts specifically required for drilling projects, real-time review and inclusion in the expert database will be conducted based on actual circumstances. An expert exit mechanism will be established. Experts must conduct rigorous and factual reviews, providing objective and truthful evaluations of the review content, and must not cover up or engage in perfunctory work. Those found to have failed to conduct reviews objectively and truthfully, or to have records of academic misconduct or illegal activities, will be blacklisted from the expert database. In addition, the review expert database also has screening and one-click notification functions, allowing for the selection of review experts as needed.

[0030] The system can filter and search for experts based on their name, major, title, position, research direction, and source (university, company, research institute), thereby matching suitable experts to carry out a specific task.

[0031] The role of the expert database: To address the technical challenges encountered in drilling projects, the needs for quality inspection, field acceptance, and results acceptance, relevant technical experts can be accurately matched from the expert database to provide technical support for drilling projects.

[0032] 3. The task coordination module is used to find a matching drilling team from the drilling team database based on drilling demand orders, and to search for matching experts from the drilling expert database to provide guidance during the drilling process.

[0033] Specifically, the purpose of developing the task coordination function module is to further promote the overall drilling coordination work. Drilling demand units (demanders) issue drilling demands in the drilling work coordination system, and units with drilling work capabilities (service providers) receive drilling tasks, thereby realizing the overall coordination of drilling work and improving the overall drilling capabilities.

[0034] The task coordination module includes a query module, an approval center, an order pool, a drilling team selection module, a drilling expert selection module, and a business acceptance statistics query module.

[0035] The query module mainly includes information on each unit's drilling capacity, drilling equipment, drilling tools, instruments, logging equipment, well control equipment, mud materials, and personnel. Drilling capacity includes the maximum drilling depth and maximum drilling footage that can be undertaken for mechanical core drilling, parametric wells, oil and gas survey wells, engineering exploration wells, and hydrogeological drilling. Drilling equipment information includes core drilling rigs, oil drilling rigs, other types of drilling rigs, and related auxiliary equipment (drill towers, mud pumps, solids control equipment, flushing fluid treatment equipment, air compressors, generators, fracturing equipment, etc.). Drill tools information includes drill pipes, core drilling tools, and bottom hole power drilling tools. Instrument information includes directional drilling instruments and mud performance testing instruments. Personnel information includes technical personnel and drilling technicians. This comprehensive information characterizes the overall drilling capabilities of each unit, providing a basis and data support for the overall allocation of drilling tasks.

[0036] The drilling demand form is filled out by the drilling demanding unit, i.e., the demanding party, with relevant information including project name, work area, borehole type, well type, borehole depth, drilling workload, whether the borehole location has been verified, expected start time, expected end time, and matching funds. After the necessary information is filled out, it is submitted to the system. The system will intelligently recommend drilling units according to priority based on comprehensive information such as the drilling capacity of each unit and the work area (adopting the principle of proximity). After the drilling demanding party selects the undertaking unit, the process will begin.

[0037] The approval center includes initiated, pending, and approved statuses. Different roles have different permissions, can see different approval statuses, and can perform corresponding operations. When the requester submits their requirements, an order is created. After submission within the system, it is reviewed by the requester's project management department, the service provider's project management department, the technical support unit, and the project management department. This completes the approval process.

[0038] The drilling team selection module is used to recommend matching drilling teams based on approved drilling demand orders and the qualification information of the drilling teams, and then send the drilling demand orders to the recommended drilling teams.

[0039] The order pool is where, when a client's order is rejected by a service provider recommended by the system, the order enters the pool and becomes free. All service providers can access the pool and "bid" for the order based on their own circumstances. Furthermore, the original client can "assign" the order again, greatly increasing the probability of a valid order.

[0040] The drilling expert selection module is used to search for matching experts from the drilling expert database to provide guidance based on drilling demand orders and the drilling teams that have accepted the orders.

[0041] The business acceptance statistics query module allows demanders to view the acceptance status of issued drilling task orders based on conditions such as demander project name, service provider project name, and demander. This includes detailed information about the drilling task (consistent with the information submitted in the demand form) and information about the service provider undertaking the task (including service provider name, service provider project name, contact person, etc.).

[0042] In one embodiment of this application, the task coordination function module also includes business query statistics. This function can only be accessed by personnel with specific permissions. This function can query the overall coordination status of all drilling tasks in parallel based on multiple conditions such as year, region, name of the requester, name of the service provider, and any search. The coordination status of drilling tasks can be displayed in the form of an overview list, bar chart, or line graph, including any selectable information such as total drilling workload, total drilling cost, and statistics of the requester's funding. This facilitates an overall understanding of the overall coordination status of drilling workload and provides data support for the next step of work decision-making. At the same time, relevant data in the task coordination can also be exported to form an editable data document for retention or archiving.

[0043] 4. Quality control module, used to supervise and manage the drilling process and collect drilling data.

[0044] The quality control function includes an engineering supervision module and a data management module.

[0045] The engineering supervision module first establishes a drilling project file, including information such as project name, project manager, project name, borehole number, designed borehole depth, borehole type, borehole location, work area name, target mineral type, funding and source, etc. Secondly, the system supervises and manages the entire drilling project flow. At each process node, relevant information needs to be filled in and reviewed by designated personnel. The system will provide prompts according to the process nodes. Full-process supervision of the drilling project includes borehole location determination (borehole coordinates), engineering design tracking (engineering design report and review opinions), selection of construction units (cooperation contract), land acquisition tracking (land acquisition agreement), well site construction tracking (on-site recording), drilling equipment installation tracking (on-site recording), drilling commencement (drilling commencement notice), drilling process supervision (drilling daily report, special situation report, etc.), completion and sealing (completion and sealing notice), field acceptance (field acceptance opinion), information technology acceptance (information technology acceptance opinion), and results acceptance (results acceptance opinion). Full-process supervision of the drilling project is as follows: Figure 2 As shown.

[0046] The data management module collects raw and document data for a specific drilling project. Through system functions, it performs preliminary quality checks and expert review, forming a dataset. Raw drilling data mainly includes drilling shift reports, drilling fluid shift reports, directional measurement data tables, core sampling statistics tables, core sampling registration tables, drilling time records, daily logging reports, hole depth correction records, simplified hydrological observation records, casing pressure test records, cementing operation records, and sealing registration tables. An app has been developed to enable mobile devices to quickly scan, recognize, and extract paper reports, creating editable electronic records and laying the foundation for drilling data integration. Document data mainly includes feasibility reports, implementation plans, engineering designs, quality inspection reports, acceptance reports, and outcome reports, as well as related technical and derivative documents, supporting multiple upload formats. All types of data can be queried based on upload time, project, engineering type, funding source, target mineral type, and data type, and data export is supported, breaking down data barriers and facilitating data sharing.

[0047] 5. Results Application Module, used to display and analyze the drilling process.

[0048] The thematic map drawing module, based on the system's collected raw drilling data and related technical documents, automates the drawing of borehole columnar sections. It also supports manual editing of details such as stratigraphic boundaries and supplementary lithological symbols (e.g., fossils, fault markers), replacing purely manual drawing of borehole columnar sections and significantly improving efficiency and quality. This provides data support for the acceptance of drilling project results. Users can view and download the original data and original columnar sections, and the borehole columnar sections support export in multiple formats, such as CAD and vector graphics. Furthermore, users can query, view, and download based on borehole number, project name, project title, and responsible person information.

[0049] The data analysis module establishes statistical and analytical functions for raw drilling data. Based on the raw drilling data uploaded to the system via the data acquisition function, it conducts economic and technical analyses of drilling, including pure drilling time, maintenance time, water level measurement time, directional drilling time, coring time, drilling speed, and related technical analyses. It displays the proportion of each time type in pie charts and shows the drilling progress of a specific borehole in line graphs, automatically generating borehole structure diagrams. This provides data support for optimizing drilling technology and improving drilling efficiency. Historical or current data for a specific borehole can be queried based on the well number, enabling automated analysis of drilling data.

[0050] The knowledge base and AI assistant modules are used for post-processing applications of data collected from drilling operations. They leverage modern information technologies such as cloud computing, big data, and artificial intelligence to enhance the in-depth analysis and intelligent application of data. Based on drilling, logging, and well logging data, as well as physical core data, post-drilling evaluation and analysis of boreholes are conducted. This includes, but is not limited to, research on construction design, drilling tools and drilling technology, accident handling analysis, drilling efficiency and related parameter calculations, borehole formation structure analysis, formation-to-well profile processing, wellbore stability post-drilling evaluation, and optimization measures. A drilling knowledge base based on a large model is constructed, and a drilling knowledge question-and-answer system is built using open-source AI models to provide preliminary solutions and suggestions for decision-making regarding drilling technical challenges, accident handling, and process design.

[0051] The knowledge base's data foundation includes, but is not limited to, local data such as geological core drilling procedures, geological core drilling tools, and shale gas survey drilling and completion technical procedures, as well as raw data generated from drilling projects, various technical documents (technical reports, quality inspection reports, safety management reports, etc.), and online resources. The knowledge base reserves a local data upload path, making it more professional and providing more accurate answers to questions.

[0052] In one embodiment of this application, the geological drilling work coordination and management system also includes an engineering deployment overview module. This module provides a comprehensive overview of all drilling projects on a single map, mainly displaying the total number of boreholes, the number to be started, the number completed, and the number in progress, displayed proportionally in a pie chart. The borehole list displays detailed information for all boreholes, including their project affiliation, borehole number, and responsible person. The borehole distribution map displays the geographical location of all boreholes in real-time map format, which can be displayed by province, year, etc. It integrates artificial intelligence, voice interaction, and large-scale model technology to construct a zero-operation, lightweight intelligent interaction system. Users can conveniently complete map information queries, target positioning, and data retrieval using natural language question-and-answer methods, without needing to master complex map operation skills. After users submit queries or positioning requests via voice or text, the AI ​​assistant can quickly understand the semantic intent and automatically complete corresponding operations such as highlighting, location positioning, information retrieval, and result feedback on the "one map" interface, realizing the transformation from "manual operation" to "intelligent interaction." This optimization significantly reduces the usage threshold and learning cost, improving the convenience, timeliness, and intelligence level of engineering deployment information queries. This function allows users to issue commands via language or text using an AI assistant to obtain desired information, such as detailed information about a borehole (hole location, project name, project to which it belongs, responsible unit, funding), current project progress, completion status, and prediction of completion time. For completed projects, users can view the completion results and innovative achievements.

[0053] In one embodiment of this application, the geological drilling work coordination and management system also includes an instant messaging module, providing an address book function on the system basis, which is divided into technical personnel, approval personnel, and business personnel. When users encounter technical problems such as system bugs such as failed data submission, or problems related to user operating habits, they can contact technical personnel through the instant messaging function. Users submit screenshots, and technical personnel investigate the cause or resolve and record the problem if it is a user's operating habit. When users encounter approval issues, they can contact the reviewers through instant messaging to inquire about approval issues, correction information, precautions, and other relevant information. Reviewers can also confirm the review content through the instant messaging function. When users encounter business issues, they can contact relevant business personnel through instant messaging to inquire about business-related issues. Other personnel can also communicate online through instant messaging.

[0054] In addition, it can organize real-time video conferences, mainly for intractable accidents or other urgent problems encountered during the drilling process. Relevant experts can be quickly invited to form a video conference to quickly and efficiently formulate solutions and ensure the safe and efficient implementation of the drilling project.

[0055] The task coordination module in the geological drilling work management system of this application serves the early stages of drilling project implementation, scientifically and rationally allocating drilling tasks and corresponding funding to capable units. The drilling project-related data in the project deployment overview module, quality control module, and results application module are interconnected and shared, enabling data interaction between the various functional modules. Firstly, project supervision and data collection are implemented in the quality control module to establish a drilling project dataset, which is then shared with the project deployment overview module to achieve a comprehensive overview of the drilling project. The results application module can also utilize the aforementioned project data for in-depth analysis, generating results for application. The drilling expert database provides expert decision-making support for drilling project implementation, and the drilling team database provides reliable team support. Instant messaging improves communication efficiency between various roles and provides rapid video conferencing for decision-making on technical issues and challenges, thereby ensuring the smooth implementation of the drilling project and achieving comprehensive management of the drilling project.

[0056] In one exemplary embodiment, a computer device is provided, which may be a server or a terminal, and its internal structure diagram may be as follows. Figure 3As shown, this computer device includes a processor, memory, input / output (I / O) interfaces, and a communication interface. The processor, memory, and I / O interfaces are connected via a system bus, and the communication interface is also connected to the system bus via the I / O interfaces. The processor provides computational and control capabilities. The memory includes non-volatile storage media and internal memory. The non-volatile storage media stores the operating system, computer programs, and databases. The internal memory provides the environment for the operating system and computer programs stored in the non-volatile storage media to run. The I / O interfaces are used for exchanging information between the processor and external devices. The communication interface is used for communicating with external terminals via a network connection.

[0057] Those skilled in the art will understand that Figure 3 The structure shown is merely a block diagram of a portion of the structure related to the present application and does not constitute a limitation on the computer device to which the present application is applied. Specific computer devices may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.

[0058] In one exemplary embodiment, a computer device is also provided, including a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to implement the steps in the above-described method embodiments.

[0059] In one exemplary embodiment, a computer-readable storage medium is provided storing a computer program that, when executed by a processor, implements the steps in the above-described method embodiments.

[0060] In one exemplary embodiment, a computer program product is provided, including a computer program that, when executed by a processor, implements the steps in the above-described method embodiments.

[0061] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data used for analysis, data stored, data displayed, etc.) involved in this application are all information and data authorized by the user or fully authorized by all parties, and the collection, use and processing of the relevant data must comply with relevant regulations.

[0062] Those skilled in the art will understand that all or part of the processes in the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium. When executed, the computer program can include the processes of the embodiments described above. Any references to memory, databases, or other media used in the embodiments provided in this application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory (ReRAM), magnetic random access memory (MRAM), ferroelectric random access memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can take many forms, such as Static Random Access Memory (SRAM) or Dynamic Random Access Memory (DRAM).

[0063] The databases involved in the embodiments provided in this application may include at least one type of relational database and non-relational database. Non-relational databases may include, but are not limited to, distributed databases based on blockchain. The processors involved in the embodiments provided in this application may be, but are not limited to, general-purpose processors, central processing units, graphics processing units, digital signal processors, programmable logic devices, quantum computing-based data processing logic devices, etc.

[0064] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0065] This document uses specific examples to illustrate the principles and implementation methods of this application. The descriptions of the above embodiments are only for the purpose of helping to understand the methods and core ideas of this application. Furthermore, those skilled in the art will recognize that, based on the ideas of this application, there will be changes in the specific implementation methods and application scope. Therefore, the content of this specification should not be construed as a limitation of this application.

Claims

1. A comprehensive management system for geological drilling operations, characterized in that, The geological drilling work overall management system includes: The drilling team database is used to store the qualification information of drilling teams; A drilling expert database is used to store information about drilling experts. The task coordination module is used to find a matching drilling team from the drilling team database based on drilling demand orders, and to search for matching experts from the drilling expert database to provide guidance during the drilling process. The quality control module is used to supervise and manage the drilling process and collect drilling data; The results application module is used to display and analyze the drilling process.

2. The geological drilling work coordination and management system according to claim 1, characterized in that, The task coordination function module specifically includes: The query module is used to view the qualification information of drilling teams and the information of drilling experts; The approval center is used to submit drilling demand orders to the management department for review. The drilling team selection module is used to recommend matching drilling teams based on the approved drilling demand orders and the qualification information of the drilling teams, and to send the drilling demand orders to the recommended drilling teams. The order pool is used to store rejected drilling demand orders after recommended drilling teams reject them, and then recommend them to all drilling teams in the drilling team database. The drilling expert selection module is used to search for matching experts from the drilling expert database to provide guidance based on drilling demand orders and the drilling teams that have accepted the orders; The business acceptance statistics query module is used to collect and view the acceptance status of drilling demand orders; the acceptance status includes the qualification information of the drilling team that accepted the order and the drilling requirements corresponding to the order.

3. The geological drilling work coordination and management system according to claim 1, characterized in that, The quality control module specifically includes: The engineering supervision module is used to establish drilling engineering files and determine construction nodes based on drilling demand orders. At each construction node, the construction information reported by that node is reviewed. The data management module is used to collect construction information for each construction node and build a dataset.

4. The geological drilling work coordination and management system according to claim 3, characterized in that, The construction nodes include determining the borehole location coordinates, engineering design, selection of construction teams, land acquisition tracking, well site construction tracking, drilling equipment installation tracking, drilling commencement, drilling process supervision, borehole sealing upon completion, field acceptance, information-based acceptance, and results acceptance. The drilling project file includes the project name, project manager, project name, borehole number, designed borehole depth, borehole type, borehole location, work area name, main mineral type, and funding source.

5. The geological drilling work coordination and management system according to claim 1, characterized in that, The application module of the results specifically includes: A thematic map drawing module is used to draw thematic maps based on the drilling process; the thematic maps include at least borehole columnar sections. The data analysis module is used to automate the analysis of drilling data based on historical or current data from the drilling process, including technical analysis of pure drilling time, maintenance time, water level measurement time, inclination measurement time, coring time, and drilling speed. The knowledge base and AI assistant modules are used to conduct in-depth analysis of historical or current data of the drilling process based on artificial intelligence. This includes research on construction design, drilling tools and drilling technology, accident handling analysis, drilling efficiency, calculation of construction parameters, borehole formation structure analysis, formation well profile processing, post-drilling assessment of wellbore stability and optimization measures.

6. The geological drilling work coordination and management system according to claim 1, characterized in that, The geological drilling work management system also includes: The project deployment overview module provides an overall overview of all drilling projects in the geological drilling work management system. The displayed content includes the total number of boreholes, the number of drilling projects to be started, the number of completed drilling projects, and the number of drilling projects in progress, all displayed proportionally in a pie chart. The project deployment overview module also provides the project to which each borehole belongs, borehole number, drilling manager, and displays the geographical location of each borehole in the form of a real-time map.

7. The geological drilling work integrated management system according to claim 1, characterized in that, The geological drilling work management system also includes: The instant messaging module provides communication functions between the drilling team, drilling experts, and the party sending drilling demand orders. These communication functions include online chat and video conferencing.

8. The geological drilling work coordination and management system according to claim 1, characterized in that, The task coordination module regularly scores drilling teams and drilling experts, giving priority to those with high scores and blacklisting those with low scores.

9. The geological drilling work coordination and management system according to claim 1, characterized in that, The task coordination module is also used to query the coordination status of all drilling tasks in parallel based on year, region, name of the drilling demand order sender, and name of the drilling team. The task coordination status is displayed in the form of an overview list, bar chart, or line graph, and includes the total drilling workload and total drilling cost.

10. The geological drilling work coordination and management system according to claim 1, characterized in that, The drilling expert database is reviewed based on the experts' source, profession, professional title, and project management experience, and the best experts are selected for inclusion in the database. The drilling teams are formally included in the drilling team database after being reviewed and approved by drilling experts based on their qualifications, drilling equipment, work performance, management level, safety accidents, and construction evaluation.