Physical geological data ex-warehouse method, system and equipment and storage medium

By configuring the outbound operation interface and the automatic warehousing management system in the data information management system, the problems of low efficiency and high error rate in the outbound management of core samples are solved, and efficient and accurate core samples are discharged.

CN120047085APending Publication Date: 2025-05-27GUANGZHOU MARINE GEOLOGICAL SURVEY
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Patent Information

Application Number
CN202510124436.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-26
Publication Date
2025-05-27

AI Technical Summary

Technical Problem

The prior art has low efficiency and high error rate in core sample outbound management, cumbersome manual operation and inconvenient information management.

Method used

By displaying the library operation interface in the data information management system, displaying the physical object list in response to user query instructions, selecting the target physical object for outbound location configuration, generating outbound requests and sending them to the automatic storage management system, realizing automatic outbound geological data.

Benefits of technology

It improves the efficiency of core samples out-of-stock operation, reduces the error rate, and reduces the complexity and possibility of errors of manual operation.

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Abstract

The embodiment of the invention provides a physical geological data ex-warehouse method, system and device and a storage medium, and belongs to the technical field of computers. The method comprises the steps of displaying a warehouse-out operation interface on a data information management system, responding to a first query instruction in a retrieval area, displaying a real object list conforming to the first query instruction in a data display area, then responding to a first selection instruction for the real object list, configuring a warehouse-out position of target real object geological data, and displaying the configured warehouse-out position of the target real object geological data according to the configured warehouse-out position. And generating an ex-warehouse request according to the first identification information of the target physical geological data and the ex-warehouse position, and finally sending the ex-warehouse request to an automatic warehouse management system to perform ex-warehouse operation on the target physical geological data. According to the technical scheme, the ex-warehouse operation interface is configured on the information management system, the ex-warehouse request is directly formed through operation on the interface, data ex-warehouse is achieved through linkage of the request and the automatic warehouse management system, the efficiency of physical geological data ex-warehouse operation is improved, and the error rate is reduced.
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Description

Technical Field

[0001] This application relates to the field of computer technology, and in particular, to a method, system, device, and storage medium for the outbound of physical geological data. Background Art

[0002] Core samples refer to physical geological data such as cores obtained through drilling and core samples formed by splitting the core in half along the long axis of the core at a certain sampling length. After being obtained through drilling, core samples have extremely high scientific research value and are of great significance for mineral resource development and earth system science research. Therefore, it is very important to efficiently store and utilize the physical objects and information of core samples.

[0003] Traditional core sample management is carried out through manual paper registration, and the inbound, transfer, and retrieval of core samples are also carried out manually. The manual paper sample information and warehousing information are not easy to preserve, and during the process of retrieving and outbound of core samples, the workload of manually querying core information and operating the core outbound is large, the efficiency is low, and the error rate is high.

[0004] With the development of information technology and intelligent warehousing technology, the management and inbound / outbound of physical geological data such as core samples can be managed through an information management system and an automatic warehousing system respectively. For example, the core sample information management system manages detailed information such as core numbers, affiliated projects, responsible persons, core sources, longitude and latitude, etc. The automatic warehousing system manages inventory information such as core locations and performs automatic inbound / outbound operations on core samples. In related technologies, when physical geological data needs to be outbound, the physical number can be quickly queried and obtained through the information management system, and then the staff member can inform the administrator of the automatic warehousing system of the queried physical number, and the administrator of the automatic warehousing system operates the automatic warehousing system to achieve the automatic outbound of physical geological data. However, this outbound management method is still low in efficiency and high in error rate. Summary of the Invention

[0005] The main purpose of the embodiments of this application is to propose a method, system, device, and storage medium for the outbound of physical geological data, aiming to improve the efficiency of the outbound operation of physical geological data and reduce the error rate.

[0006] To achieve the above purpose, on the one hand, an embodiment of this application proposes a method for the outbound of physical geological data, including the following steps:

[0007] Display an outbound operation interface on the data information management system, where the outbound operation interface includes a retrieval area and a data display area;

[0008] In response to a first query instruction in the retrieval area, display a list of physical objects that meet the first query instruction in the data display area, where the list of physical objects includes multiple physical geological data;

[0009] In response to a first selection instruction for the physical object list, configure the outbound location of the target physical geological data;

[0010] Generate an outbound request based on the first identification information of the target physical geological data and the outbound location, where the first identification information is the management identification of the target physical geological data on the data information management system;

[0011] Send the outbound request to the automated storage management system to perform an outbound operation on the target physical geological data.

[0012] In some embodiments, the step of displaying a physical object list that meets the first query instruction in the data display area in response to a first query instruction in the retrieval area includes the following steps:

[0013] In response to a first query instruction for the retrieval bar component in the retrieval area, display a project list in the retrieval area, where the first query instruction includes project information;

[0014] In response to a second selection instruction for the project list, display a physical object list under the target project in the data display area.

[0015] In some embodiments, the step of configuring the outbound location of the target physical geological data in response to a first selection instruction for the physical object list includes the following steps:

[0016] In response to a first selection instruction for the physical object list, display an outbound configuration component for the target physical geological data;

[0017] In response to a third selection instruction for the outbound location list in the outbound configuration component, configure the outbound location of the target physical geological data.

[0018] In some embodiments, the step of generating an outbound request based on the first identification information of the target physical geological data and the outbound location includes the following steps:

[0019] In response to a first operation instruction for the first control of the outbound configuration component after configuring the outbound location, display a reminder component for the target physical geological data;

[0020] In response to a second operation instruction for the second control of the reminder component, encapsulate the first identification information of the target physical geological data and the outbound location as an outbound request.

[0021] In some embodiments, the automated storage management system is used to perform the following steps:

[0022] Receive and parse the outbound request to obtain the first identification information and the outbound location;

[0023] Determine the associated second identification information according to the first identification information of the outbound request, where the second identification information is the management identification of the target physical geological data on the automatic warehousing management system;

[0024] Query the storage location of the target physical geological data according to the second identification information;

[0025] Generate an outbound action instruction according to the storage location and the outbound location to drive the warehousing execution system to perform an outbound operation on the target physical geological data.

[0026] In some embodiments, the association relationship between the first identification information and the second identification information is determined through the following steps:

[0027] Display a first inbound operation interface on the automatic warehousing management system, where the first inbound operation interface includes a first configuration component and a second configuration component;

[0028] In response to a third operation instruction for a third control of the first configuration component, collect the first identification information of the target physical geological data;

[0029] In response to a fourth operation instruction for a fourth control of the second configuration component, collect the second identification information of the target physical geological data;

[0030] In response to a fifth operation instruction for a fifth control on the first inbound operation interface, associate and store the first identification information and the second identification information in the automatic warehousing management system.

[0031] In some embodiments, the first identification information includes the serial number information of the physical geological data and the box number information of the box where the physical geological data is located. The association relationship between the serial number information and the box number information of the physical geological data is determined through the following steps:

[0032] Display a second inbound operation interface on the data information management system, where the second inbound operation interface includes a box number association sub-interface;

[0033] In response to a sixth operation instruction for a sixth control on the box number association sub-interface, collect the box number information and display the physical configuration component of the box number information;

[0034] In response to a seventh operation instruction for a seventh control on the physical configuration component, collect the serial number information of at least one physical geological data and display the serial number information in the serial number display area of the physical configuration component;

[0035] In response to an eighth operation instruction for an eighth control on the physical configuration component, the number information and the box number information are associated and stored in the material information management system.

[0036] To achieve the above object, another aspect of the embodiments of the present application provides a physical geological data outbound system, including:

[0037] A first module, configured to display an outbound operation interface on a material information management system, where the outbound operation interface includes a retrieval area and a material display area;

[0038] A second module, configured to, in response to a first query instruction in the retrieval area, display a list of physical objects that meet the first query instruction in the material display area, where the list of physical objects includes a plurality of physical geological data;

[0039] A third module, configured to, in response to a first selection instruction for the list of physical objects, configure an outbound location for a target physical geological data;

[0040] A fourth module, configured to generate an outbound request according to a first identification information of the target physical geological data and the outbound location, where the first identification information is a management identification of the target physical geological data on the material information management system;

[0041] A fifth module, configured to send the outbound request to an automatic warehousing management system to perform an outbound operation on the target physical geological data.

[0042] To achieve the above object, another aspect of the embodiments of the present application provides an electronic device, where the electronic device includes a memory, a processor, a program stored on the memory and executable on the processor, and a data bus for implementing connection communication between the processor and the memory. When the program is executed by the processor, the method described in the above embodiments is implemented.

[0043] To achieve the above object, another aspect of the embodiments of the present application provides a storage medium, where the storage medium is a computer-readable storage medium for computer-readable storage. The storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to implement the method described in the above embodiments.

[0044] The physical geological data outbound method, system, device, and storage medium proposed in this application display an outbound operation interface on the data information management system. The outbound operation interface includes a retrieval area and a data display area. In response to the first query instruction in the retrieval area, a physical list that meets the first query instruction is displayed in the data display area. Then, in response to the first selection instruction for the physical list, the outbound location of the target physical geological data is configured, and an outbound request is generated based on the first identification information of the target physical geological data and the outbound location. The first identification information is the management identification of the target physical geological data on the data information management system. Finally, the outbound request is sent to the automated warehousing management system to perform an outbound operation on the target physical geological data. The technical solution of this application configures an outbound operation interface on the data information management system, directly forms an outbound request through the outbound operation in the information management system, and realizes the outbound of physical geological data by linking the automated warehousing management system through this outbound request, improving the efficiency of the outbound operation of physical geological data and reducing the error rate. BRIEF DESCRIPTION OF THE DRAWINGS

[0045] Figure 1 is a flowchart of the physical geological data outbound method provided by an embodiment of this application;

[0046] Figure 2 is a schematic diagram of the outbound operation interface provided by an embodiment of this application;

[0047] Figure 3 is a schematic diagram of the outbound configuration component provided by an embodiment of this application;

[0048] Figure 4 is a schematic diagram of the outbound configuration component provided by another embodiment of this application;

[0049] Figure 5 is a schematic diagram of the reminder component provided by an embodiment of this application;

[0050] Figure 6 is a schematic diagram of the interaction process of the information management system, automated warehousing management system, and warehouse control system provided by an embodiment of this application;

[0051] Figure 7 is a schematic diagram of the job queue of the automated warehousing management system provided by an embodiment of this application;

[0052] Figure 8 is a schematic diagram of the first inbound operation interface provided by an embodiment of this application;

[0053] Figure 9 is a schematic diagram of the sample inspection sub-interface provided by an embodiment of this application;

[0054] Figure 10 is a schematic diagram of the display of sample detailed information provided by an embodiment of this application;

[0055] Figure 11 It is a schematic diagram of the warehousing order sample management interface provided by an embodiment of the present application;

[0056] Figure 12 It is a schematic diagram of the box number association sub-interface provided by an embodiment of the present application;

[0057] Figure 13 It is a schematic diagram of the physical configuration components provided by an embodiment of the present application;

[0058] Figure 14 It is a schematic diagram of the box number configuration result on the sample inspection sub-interface provided by an embodiment of the present application;

[0059] Figure 15 It is a schematic diagram of the physical geological data warehousing system provided by an embodiment of the present application;

[0060] Figure 16 It is a schematic diagram of the hardware structure of the electronic device provided by an embodiment of the present application. Detailed implementation manners

[0061] In order to make the objectives, technical solutions and advantages of the present application clearer, the present application will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0062] It should be noted that although functional modules are divided in the system and the logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in a different order from the module division in the system or the order in the flowchart. Terms such as "first" and "second" in the specification, claims and the above-mentioned drawings are used to distinguish similar objects and do not necessarily need to describe a specific order or sequence.

[0063] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field to which this application belongs. The terms used herein are only for the purpose of describing the embodiments of this application and are not intended to limit this application.

[0064] First, several nouns involved in the present application are analyzed:

[0065] The data information management system mainly collects, transmits, stores, processes, maintains and uses the physical geological data information. In the embodiments of the present application, the core sample is mainly used as the physical geological data to illustrate this solution. Correspondingly, the data information management system in the embodiments of the present application can be a core sample information management system. The core sample information management system is mainly used to store various information of the collected core samples, including but not limited to information such as collection time, affiliated project, and core length.

[0066] An Automated Warehouse Management System (WMS) is a solution that integrates information technology, mechanical automation, and data analysis, aiming to optimize the operational efficiency of a warehouse. Through the combination of software and hardware technologies, the Automated Warehouse Management System realizes the intelligence of goods storage, management, and distribution within the warehouse. Such a system usually includes functional modules such as inventory management, order processing, goods tracking, and data analysis, which can help enterprises keep track of the inventory status in real time, optimize the utilization of warehouse space, and improve the order processing speed.

[0067] A Warehouse Control System (WCS) is a management control system that lies between an Automated Warehouse Management System (WMS) and a Programmable Logic Controller (PLC). The Warehouse Control System is a software application and can also be regarded as a hardware system used to direct real-time activities within a warehouse and distribution center. It is responsible for keeping all activities in the warehouse running smoothly, maximizing the efficiency of the material handling subsystem, and the efficiency of the warehouse employees themselves. As the "traffic police" of the warehouse / distribution center, the WCS provides a unified interface for various material handling equipment (such as automated warehouses, turntables, conveyor systems, sorters, palletizers, etc.) to ensure that they can work efficiently and coordinately.

[0068] The embodiments of this application provide a method, system, device, and storage medium for the outbound of physical geological data, aiming to improve the efficiency of the outbound operation of physical geological data and reduce the error rate.

[0069] The method, system, device, and storage medium for the outbound of physical geological data provided by the embodiments of this application will be specifically described through the following embodiments. First, the method for the outbound of physical geological data in the embodiments of this application will be described.

[0070] The method for the outbound of physical geological data provided by the embodiments of this application relates to the field of computer technology. The method for the outbound of physical geological data provided by the embodiments of this application can be applied to a terminal, or to a server side, or can be software running on a terminal or a server side. In some embodiments, the terminal can be a smart phone, a tablet computer, a laptop computer, a desktop computer, etc.; the server side can be configured as an independent physical server, or can be configured as a server cluster or a distributed system composed of multiple physical servers, or can be configured as a cloud server providing basic cloud computing services such as cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communications, middleware services, domain name services, security services, CDN, and big data and artificial intelligence platforms; the software can be an application that implements the method for the outbound of physical geological data, etc., but is not limited to the above forms.

[0071] This application can be used in numerous general or specific computer system environments or configurations. For example: personal computers, server computers, handheld or portable devices, tablet devices, multiprocessor systems, microprocessor-based systems, set-top boxes, programmable consumer electronics, network PCs, minicomputers, mainframe computers, distributed computing environments including any of the above systems or devices, and so on. This application can be described in the general context of computer-executable instructions executed by a computer, such as program modules. Generally, program modules include routines, programs, objects, components, data structures, etc. that perform specific tasks or implement specific abstract data types. This application can also be practiced in a distributed computing environment where tasks are performed by remote processing devices connected through a communication network. In a distributed computing environment, program modules can be located in local and remote computer storage media including storage devices.

[0072] The embodiments of this application are applicable to a system formed by a data information management system, an automated warehousing management system, and a warehouse control system. The method for the physical geological data to leave the warehouse in the embodiments of this application is mainly applied to the data information management system among them. By adding the function of the leaving-warehouse operation to the data information management system and encapsulating the operation instruction as a leaving-warehouse request and sending it to the automated warehousing management system, the automated warehousing management system can drive the warehouse control system to perform the leaving-warehouse operation on the core samples based on the information in the leaving-warehouse request, reducing the operations of manually querying the core sample numbers and notifying the warehouse management personnel, improving the leaving-warehouse efficiency of the core samples, and reducing the situations where errors may occur in the manual links.

[0073] Figure 1 It is an optional flowchart of the method for the physical geological data to leave the warehouse provided by the embodiments of this application. Figure 1 The method in can include but is not limited to steps S101 to S105.

[0074] Step S101, display the leaving-warehouse operation interface on the data information management system, where the leaving-warehouse operation interface includes a retrieval area and a data display area;

[0075] Step S102, in response to the first query instruction in the retrieval area, display a physical list that meets the first query instruction in the data display area, where the physical list includes multiple physical geological data;

[0076] Step S103, in response to the first selection instruction for the physical list, configure the leaving-warehouse location of the target physical geological data;

[0077] Step S104: Generate an outbound request based on the first identification information of the target physical geological data and the outbound location, where the first identification information is the management identification of the target physical geological data in the data information management system.

[0078] Step S105: Send the outbound request to the automated warehousing management system to perform an outbound operation on the target physical geological data.

[0079] Steps S101 to S105 illustrated in the embodiments of the present application, by displaying an outbound operation interface on the data information management system, the outbound operation interface includes a retrieval area and a data display area. In response to the first query instruction in the retrieval area, a physical list that meets the first query instruction is displayed in the data display area. Then, in response to the first selection instruction for the physical list, the outbound location of the target physical geological data is configured. An outbound request is generated based on the first identification information of the target physical geological data and the outbound location, where the first identification information is the management identification of the target physical geological data in the data information management system. Finally, the outbound request is sent to the automated warehousing management system to perform an outbound operation on the target physical geological data. In the embodiments of the present application, by configuring an outbound operation interface on the data information management system, an outbound request is directly formed through the outbound operation in the information management system. The physical outbound is realized by linking the automated warehousing management system through this outbound request, improving the efficiency of the outbound operation of physical geological data and reducing the error rate.

[0080] In step S101 of some embodiments, the outbound operation interface is a visual interaction interface of the outbound management function in the data information management system. The outbound operation interface includes a retrieval area and a data display area. The retrieval area is used to input the screening conditions of the physical geological data, and the data display area is used to display the physical geological data that meets the screening conditions to facilitate the user to select the physical geological data to be outbound. Exemplarily, please refer to Figure 2 , Figure 2 is a schematic diagram of the outbound operation interface provided by the embodiments of the present application. On the left side of the front-end interface of the core information management system, various functions such as the transfer of various physical geological data, the warehousing of physical geological data, and the sample outbound management are displayed. In response to the click operation on "Sample Outbound Management", the core information management system displays the outbound operation interface 1010 on the right side, where the outbound operation interface includes a retrieval area 1011 and a data display area 1012.

[0081] In step S102 of some embodiments, the data information management system responds to a first query instruction of the user for the retrieval area, retrieves relevant physical geological data in the database according to the first query instruction, and then presents the retrieved multiple physical geological data in the form of a list in the physical geological data display area to facilitate the user to select the physical geological data to be taken out of the warehouse. Exemplarily, the user can input the box number information in the retrieval area and then click the "Query" button to generate the first query instruction. The system filters all core samples belonging to the box number according to the box number information in the first query instruction, and then forms a sample list according to the filtered core samples. The system presents the sample list in the physical geological data display area.

[0082] In some embodiments, step S102 may include but is not limited to steps S201 to S202:

[0083] Step S201, in response to a first query instruction for the retrieval bar component in the retrieval area, display a project list in the retrieval area, where the first query instruction includes project information;

[0084] Step S202, in response to a second selection instruction for the project list, display a physical list under the target project in the data display area.

[0085] In this embodiment, please continue to refer to Figure 2 , the retrieval area includes a retrieval bar component 1020, which is used to input screening conditions for project information (such as project creation time, project name, voyage, etc.), so that the system filters multiple projects that meet the conditions in the database according to the screening conditions of the project information, and presents the multiple projects in the form of categories in the retrieval area. Further, the system responds to a second selection instruction for the project list 1021 in the retrieval area, filters multiple physical geological data belonging to the target project from the database according to the target project indicated by the second selection instruction, forms a physical list under the target project according to the multiple physical geological data, and displays the physical list 1022 in the data display area.

[0086] Exemplarily, the user inputs project information in the retrieval bar component and clicks the "Query" button to generate the first query instruction. The information management system responds to the first query instruction, filters multiple projects according to the project information in the first query instruction and forms a project list, and displays the project list in the retrieval area. The user clicks on a certain project in the project list to generate a second selection instruction for the project. The information management system responds to the second selection instruction, determines multiple core samples belonging to the target project according to the target project in the second selection instruction and forms a physical list, and displays the physical list in the data display area.

[0087] In this embodiment, considering that the requirement for the release of core samples is usually to release multiple samples under a certain project simultaneously, therefore, in this embodiment, by first retrieving the projects that meet certain project information, and then retrieving all physical geological data under a certain project based on the project as a condition, it is convenient for users to quickly determine multiple physical geological data that meet the release requirements, improving the convenience of the release operation and thus enhancing the release efficiency.

[0088] In step S103 of some embodiments, the data information management system responds to the user's first selection instruction for the physical list in the physical geological data display area, determines the target physical geological data according to the first selection instruction, and further configures the release location of the target physical geological data. Exemplarily, the user can select at least one physical geological data in the physical list in the physical geological data display area, and then input the release location in the text box component at the selected physical geological data, thereby completing the configuration of the release location of the target physical geological data.

[0089] In some embodiments, step S103 may include but is not limited to steps S301 to S302:

[0090] Step S301, in response to the first selection instruction for the physical list, display the release configuration component of the target physical geological data;

[0091] Step S302, in response to the third selection instruction for the release location list in the release configuration component, configure the release location of the target physical geological data.

[0092] In step S301 of some embodiments, please refer to Figure 3 , Figure 3 which is a schematic diagram of the release configuration component provided by the embodiment of the present application. The core information management system responds to the first selection instruction for the physical list in the physical geological data display area, determines the selected target physical geological data according to the first selection instruction, and displays the release configuration component 1030. The release configuration component is used to configure the release location of the target physical geological data. The configuration method of the release location can be in the form of text input of the release location or in the form of selection of the release location. The embodiment of the present application does not make specific limitations.

[0093] In step S302 of some embodiments, please continue to refer to Figure 3 , the release configuration component realizes the release configuration by means of the release location selection method. The core information management system responds to the third selection instruction for the release location list 1031 in the release configuration component, and configures the release location selected by the third selection instruction as the release location of the target physical geological data.

[0094] Exemplarily, please continue to refer to Figure 3, the user checks at least one core sample in the physical list on the outbound operation interface, and then clicks the "Outbound" button in the upper right corner to generate a first selection instruction. In response to the first selection instruction, the information management system displays an outbound configuration component. The user selects an outbound location from the outbound location list of the outbound configuration component and fills it into the text box of the outbound configuration component to generate a third selection instruction. The information management system configures the outbound location of the target core sample according to the at least one target core sample indicated by the first selection instruction and the outbound location indicated by the third selection instruction.

[0095] In the way of outbound location configuration in this embodiment, the outbound location selection method of providing an outbound location list for the user is adopted. Compared with the method of directly inputting the outbound location text by the user, this embodiment can reduce the situation of outbound failure caused by the user inputting a non-existent location or a location with a wrong name, and improve the accuracy of the user's outbound operation.

[0096] In step S104 of some embodiments, in the data information management system, each physical geological data will be assigned a first identification information to facilitate the management of the physical geological data information. If the physical geological data (i.e., core sample) is directly placed on the pallet number in the warehouse during storage, the first identification information refers to the sample number. If the physical geological data (i.e., core sample) is stored, first multiple samples are placed in a box, and then the box is placed on the pallet number in the warehouse, the first identification information includes the sample number and the box number.

[0097] For the case where the automatic warehousing management system takes the core sample as the identification object during inbound and outbound, the information management system generates an outbound request according to the first identification information and the outbound location of the target physical geological data as follows: The information management system directly encapsulates the sample number and the outbound location into an outbound request, so that the automatic warehousing management system determines the associated pallet number according to the sample number and performs an outbound operation on the corresponding pallet. For the case where the automatic warehousing management system takes the box where the physical geological data is located as the identification object during inbound and outbound, the information management system generates an outbound request according to the first identification information and the outbound location of the target physical geological data as follows: The information management system queries the associated box number information according to the number information of the target physical geological data, so as to determine the first identification information, and then according to the box number information in the first identification information, encapsulates the box number information and the outbound location into an outbound request, so that the automatic warehousing management system determines the associated pallet number according to the box number and performs an outbound operation on the corresponding pallet.

[0098] In some embodiments, step S104 may include but is not limited to steps S401 to S402:

[0099] Step S401: In response to a first operation instruction for a first control of the outbound configuration component after the outbound location of the target physical geological data is configured, display a reminder component for the target physical geological data;

[0100] Step S402: In response to a second operation instruction for a second control of the reminder component, encapsulate the first identification information and the outbound location of the target physical geological data into an outbound request.

[0101] In this embodiment, after the outbound location of the target physical geological data is configured, the information management system can further display a reminder component, which is used to remind the user whether to confirm the outbound operation of the target physical geological data. After the user confirms the outbound, the system determines the outbound request according to the first identification information and the outbound location of the target physical geological data.

[0102] Exemplarily, please refer to Figure 4 , after the user selects an outbound location in the outbound configuration component, click the first control 1032 marked with the "OK" component to generate a first operation instruction. The information management system responds to the first operation instruction and displays a reminder component 1040 as shown in Figure 5 . The reminder component includes a reminder text (such as "Are you sure you want to outbound the samples you selected?"), a button control for determining the operation (i.e., the second control 1041), and a button control for canceling the operation. After the user clicks the second control marked with the word "OK", a second operation instruction is generated. The information management system responds to the second operation instruction and confirms the outbound request according to the first identification information and the outbound location of the selected target physical geological data.

[0103] This embodiment can reduce the occurrence of user misoperations by using the reminder component to remind the user whether to continue the current outbound operation.

[0104] In step S105 of some embodiments, the data information management system sends the generated outbound request to the automated storage management system so that the automated storage management system can complete the outbound operation. Taking the data information management system as the core information management system as an example, please refer to Figure 6, after the user checks the core samples to be shipped out and selects the shipping-out location in the core information management system, the core information management system encapsulates the core box number, shipping-out destination, sending time, and index into a shipping-out request according to a preset communication format, and then sends the shipping-out request to the WMS through Interface 1. After receiving the shipping-out request, the WMS parses the request, matches the associated pallet number according to the core box number therein, retrieves the corresponding storage location (such as roadway number and starting layer row) according to the pallet number, intelligently allocates the target physical geological data to the destination layer row in the shipping-out location according to the shipping-out location, and allocates a stacker number to the target physical geological data, and creates a shipping-out task based on this information, and then adds the shipping-out task to the job queue. Exemplarily, the shipping-out task in the job queue is as Figure 7 shown. The WMS schedules the job queue, creates a shipping-out instruction according to the relevant information of the scheduled shipping-out task, and sends the shipping-out instruction to the WCS through Interface 2, where the shipping-out instruction includes information such as stacker number, roadway number, starting layer row, destination layer row, shipping-out destination, pallet number, task number, sending time, index, etc. The WCS drives the equipment to complete the shipping-out action based on the shipping-out instruction, and feeds back the shipping-out completion status to the WMS through Interface 3, and the feedback content includes information such as completion status code, task number, index, etc. The WCS then continues to feed back the shipping-out completion status to the WMS through Interface 4, and the feedback content includes information such as completion status code, index, etc.

[0105] In some embodiments, the automated warehousing management system in step S105 is used to perform the following steps:

[0106] Step S501, receive and parse the shipping-out request to obtain the first identification information and the shipping-out location;

[0107] Step S502, determine the associated second identification information according to the first identification information of the shipping-out request, where the second identification information is the management identification of the target physical geological data on the automated warehousing management system;

[0108] Step S503, query the storage location of the target physical geological data according to the second identification information;

[0109] Step S504, generate a shipping-out action instruction according to the storage location and the shipping-out location to drive the warehousing execution system to perform a shipping-out operation on the target physical geological data.

[0110] In this embodiment, in the stereoscopic warehouse, physical geological data is usually placed on pallets, and the automatic warehousing management system performs inbound and outbound operations and management with pallets as objects. The second identification information may refer to the pallet number. Specifically, after receiving an outbound request, the WMS parses the outbound request, matches the associated pallet number according to the core box number therein, retrieves the corresponding storage location (such as roadway number and starting layer row) according to the pallet number, intelligently allocates the destination layer row in the outbound location for the target physical geological data, and allocates a stacker number for the target physical geological data. An outbound action instruction is generated based on the storage location and the destination location of the outbound location to drive the warehousing execution system to perform an outbound operation on the target physical geological data.

[0111] In some embodiments, the association relationship between the first identification information and the second identification information can be determined through but not limited to the following steps:

[0112] Step S601, display the first inbound operation interface on the automatic warehousing management system, where the first inbound operation interface includes a first configuration component and a second configuration component;

[0113] Step S602, in response to a third operation instruction on the third control of the first configuration component, collect the first identification information of the target physical geological data;

[0114] Step S603, in response to a fourth operation instruction on the fourth control of the second configuration component, collect the second identification information of the target physical geological data;

[0115] Step S604, in response to a fifth operation instruction on the fifth control on the first inbound operation interface, associate and store the first identification information and the second identification information in the automatic warehousing management system.

[0116] In this embodiment, taking the scenario where core samples are put into boxes and then multiple boxes are placed on a pallet when the core samples are warehoused as an example, during the process of placing multiple boxes on the pallet, the staff needs to hold a terminal device to bind the relationship between the first identification information (i.e., box number) and the second identification information (i.e., pallet number), so as to realize storing the association relationship between the first identification information and the second identification information in the automatic warehousing management system. The specific operation process is as follows:

[0117] Please refer to Figure 8 , the user can open the automatic warehousing management system on the handheld terminal and enter the first inbound operation interface 1060. The first inbound operation interface includes a first configuration component 1061 and a second configuration component 1062. The first configuration component is used to collect the box number of the physical geological data, and the second configuration component is used to collect the pallet number of the physical geological data. The collection method can be a keyboard input method or a barcode scanning and recognition method.

[0118] The user clicks the fourth control 1064 in the second configuration component to generate a fourth operation instruction. In response to the fourth operation instruction, the automated warehousing management system activates the scanning device on the handheld terminal to identify the pallet number, and displays the identified pallet number below the words "associated information" in the first inbound operation interface. Then the user clicks the third control 1063 in the first configuration component to generate a third operation instruction. In response to the third operation instruction, the automated warehousing management system activates the scanning device on the handheld terminal to identify the box number, and displays the identified box number at the position corresponding to the identified pallet number below the words "associated information" in the first inbound operation interface. The user clicks the fifth control 1065 for storage on the first inbound operation interface to generate a fifth operation instruction. In response to the fifth operation instruction, the system associates and stores the collected pallet number and box number in the automated warehousing management system, realizing the binding of core box - pallet.

[0119] In some embodiments, before the core samples are warehoused, the relevant information of the core samples needs to be transferred and registered in the core information management system. The specific operation process is as follows:

[0120] Please refer to Figure 9 , the user can open the core information management system on the handheld terminal and enter the sample inspection sub - interface 1080 of the second inbound operation interface. Then click the control marked with "start identification" on the sample inspection interface to generate a barcode scanning instruction. In response to the barcode scanning instruction, the core information management system activates the scanning device on the handheld terminal to collect relevant information such as the sample number, project, voyage, length, etc., and can send the collected sample - related information to the large - screen terminal deployed at the sample warehousing site. As Figure 10 shown, the large - screen terminal displays the collected sample - related information in real time for the staff to check. After the check is completed, the core information management system marks the corresponding sample as scanned. As Figure 11 shown, on the interface of the inbound order sample management information, the core status of the scanned and checked sample shows scanned.

[0121] In some embodiments, the first identification information includes the number information of the physical geological data and the box number information of the box where the physical geological data is located. The association relationship between the number information of the physical geological data and the box number information is determined through the following steps:

[0122] Step S701, display the second inbound operation interface on the data information management system, where the second inbound operation interface includes a box number association sub - interface;

[0123] Step S702, in response to the sixth operation instruction for the sixth control on the box number association sub - interface, collect the box number information and display the physical configuration component of the box number information;

[0124] Step S703: In response to a seventh operation instruction for the seventh control on the physical configuration component, collect the serial number information of at least one physical geological data and display the serial number information in the serial number display area of the physical configuration component;

[0125] Step S704: In response to an eighth operation instruction for the eighth control on the physical configuration component, associate and store the serial number information and the box number information in the data information management system.

[0126] In this embodiment, taking the scenario where when core samples are warehoused, the core samples are loaded into boxes and then multiple boxes are placed on a tray as an example, during the process of loading multiple core samples into boxes, the staff needs to hold a terminal device to bind the sample serial number and the box number, so as to realize storing the associated relationship between the sample serial number and the box number in the core information management system. The specific operation process is as follows:

[0127] Please refer to Figure 12 , the user can open the core information management system on the handheld terminal and enter the box number association sub-interface 1070 of the second warehousing operation interface. The user clicks the sixth control 1071 marked with the word "Start Recognition" in the box number association sub-interface to generate a sixth operation instruction. In response to the sixth operation instruction, the core information management system starts the scanning device on the handheld terminal to identify the box number information and displays the physical configuration component 1072 as shown in Figure 13 . The user clicks the seventh control 1073 marked with the word "Scan" in the physical configuration component to generate a seventh operation instruction. In response to the seventh operation instruction, the core information management system starts the scanning device on the handheld terminal to identify the serial number information of the physical geological data and displays the scanned serial number information in the serial number display area 1074 of the physical configuration component. Based on the content in the serial number display area, the user clicks the eighth control 1075 marked with the word "OK" on the physical configuration component to generate an eighth operation instruction. The system records the serial number information in the serial number display area and the current box number in response to the eighth operation instruction, and displays the current box number and the number of stored samples as shown in Figure 14 . After the user clicks the control marked with the word "Data Transmission", the system associates and stores the recorded serial number information and the corresponding box number information in the database, so as to quickly associate the samples with the boxes they are in during warehousing for subsequent management.

[0128] Please refer to Figure 15 , the embodiment of the present application further provides a physical geological data outbound system, including:

[0129] A first module for displaying an outbound operation interface on the data information management system, where the outbound operation interface includes a retrieval area and a data display area;

[0130] A second module, configured to display a list of physical objects that meet a first query instruction in a data display area in response to the first query instruction in a retrieval area, where the list of physical objects includes a plurality of physical geological data;

[0131] A third module, configured to configure the outbound location of a target physical geological data in response to a first selection instruction for the list of physical objects;

[0132] A fourth module, configured to generate an outbound request according to the first identification information and the outbound location of the target physical geological data, where the first identification information is the management identification of the target physical geological data in a data information management system;

[0133] A fifth module, configured to send the outbound request to an automated storage management system to perform an outbound operation on the target physical geological data.

[0134] It can be understood that the content in the above embodiments of the method for outbound of physical geological data is applicable to the embodiments of this system. The functions specifically implemented by the embodiments of this system are the same as those of the above embodiments of the method for outbound of physical geological data, and the beneficial effects achieved are also the same as those of the above embodiments of the method for outbound of physical geological data.

[0135] An embodiment of this application further provides an electronic device, which includes: a memory, a processor, a program stored on the memory and executable on the processor, and a data bus for realizing connection communication between the processor and the memory. When the program is executed by the processor, the above method for outbound of physical geological data is implemented. The electronic device can be any intelligent terminal including a tablet computer, an in-vehicle computer, etc.

[0136] Please refer to Figure 16 , Figure 16 which shows the hardware structure of an electronic device according to another embodiment. The electronic device includes:

[0137] A processor 1601, which can be implemented in a general way such as a CPU (Central Processing Unit, central processor), a microprocessor, an application specific integrated circuit (ASIC), or one or more integrated circuits, and is configured to execute relevant programs to implement the technical solutions provided by the embodiments of this application;

[0138] The memory 1602 can be implemented in the form of a read-only memory (ROM), a static storage device, a dynamic storage device, or a random access memory (RAM), etc. The memory 1602 can store an operating system and other application programs. When implementing the technical solutions provided in the embodiments of this specification through software or firmware, the relevant program codes are stored in the memory 1602 and are called by the processor 1601 to execute the physical geological data outbound method of the embodiments of this application;

[0139] The input / output interface 1603 is used to implement information input and output;

[0140] The communication interface 1604 is used to implement communication and interaction between this device and other devices. It can achieve communication through a wired method (such as USB, network cable, etc.) or through a wireless method (such as mobile network, WI-FI, Bluetooth, etc.);

[0141] The bus 1605 transmits information between the various components of the device (such as the processor 1601, the memory 1602, the input / output interface 1603, and the communication interface 1604);

[0142] Among them, the processor 1601, the memory 1602, the input / output interface 1603, and the communication interface 1604 achieve communication connections with each other inside the device through the bus 1605.

[0143] The embodiments of this application also provide a storage medium. The storage medium is a computer-readable storage medium for computer-readable storage. The storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to implement the above-mentioned physical geological data outbound method.

[0144] As a non-transitory computer-readable storage medium, the memory can be used to store non-transitory software programs and non-transitory computer-executable programs. In addition, the memory can include high-speed random access memory and can also include non-transitory memory, such as at least one magnetic disk storage device, a flash memory device, or other non-transitory solid-state storage devices. In some embodiments, the memory can optionally include a memory remotely set relative to the processor, and these remote memories can be connected to the processor through a network. Examples of the above networks include but are not limited to the Internet, enterprise intranets, local area networks, mobile communication networks, and combinations thereof.

[0145] The embodiments described in the embodiments of the present application are for more clearly explaining the technical solutions of the embodiments of the present application, and do not constitute a limitation on the technical solutions provided by the embodiments of the present application. Those skilled in the art know that with the evolution of technology and the emergence of new application scenarios, the technical solutions provided by the embodiments of the present application are equally applicable to similar technical problems.

[0146] Those skilled in the art can understand that the technical solutions shown in the figures do not constitute a limitation on the embodiments of the present application, and may include more or fewer steps than those shown, or combine certain steps, or different steps.

[0147] The system embodiments described above are merely illustrative. The units described as separate components may or may not be physically separated, that is, they may be located in one place, or may be distributed to multiple network units. Some or all of the modules can be selected according to actual needs to achieve the purpose of the solution of this embodiment.

[0148] Those of ordinary skill in the art can understand that all or some of the steps in the methods disclosed above, and the functional modules / units in the systems and devices, can be implemented as software, firmware, hardware and their appropriate combinations.

[0149] The terms "first", "second", "third", "fourth", etc. (if any) in the specification of the present application and the above drawings are used to distinguish similar objects, and do not have to be used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present application described here can be implemented in an order other than those illustrated or described here. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device that includes a series of steps or units does not have to be limited to those steps or units clearly listed, but may include other steps or units not clearly listed or inherent to these processes, methods, products or devices.

[0150] It should be understood that in this application, "at least one (item)" means one or more, and "a plurality" means two or more. "And / or" is used to describe the association relationship of associated objects, indicating that three relationships can exist. For example, "A and / or B" can mean: only A exists, only B exists, and both A and B exist at the same time. Among them, A and B can be singular or plural. The character " / " generally indicates that the associated objects before and after are in an "or" relationship. "At least one (item) of the following" or its similar expressions refer to any combination of these items, including any combination of single items (items) or plural items (items). For example, at least one (item) of a, b, or c can mean: a, b, c, "a and b", "a and c", "b and c", or "a and b and c", where a, b, c can be single or multiple.

[0151] In several embodiments provided in this application, it should be understood that the disclosed systems and methods can be implemented in other ways. For example, the system embodiments described above are only illustrative. For example, the above division of units is only a logical function division. In actual implementation, there may be other division methods. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the displayed or discussed coupling or direct coupling or communication connection between each other can be through some interfaces. The indirect coupling or communication connection of systems or units can be in electrical, mechanical or other forms.

[0152] The units described above as separate components may or may not be physically separated. The components displayed as units may or may not be physical units, that is, they can be located in one place, or they can be distributed to multiple network units. Some or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.

[0153] In addition, each functional unit in various embodiments of this application can be integrated in a processing unit, or each unit can exist physically alone, or two or more units can be integrated in one unit. The above integrated units can be implemented in the form of hardware or in the form of software functional units.

[0154] When the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of this application, in essence, or the part that makes a contribution to the prior art, or all or part of this technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes multiple instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the methods of various embodiments of this application. The aforementioned storage medium includes: various media that can store programs, such as USB flash drives, mobile hard disks, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical discs.

[0155] The preferred embodiments of the embodiments of this application have been described above with reference to the accompanying drawings, but this does not limit the scope of the rights of the embodiments of this application. Any modifications, equivalent replacements, and improvements made by those skilled in the art without departing from the scope and essence of the embodiments of this application shall be within the scope of the rights of the embodiments of this application.

Claims

1. A method for releasing physical geological data from a database, characterized in that: The following steps are involved: Displaying a warehouse-out operation interface on the data information management system, wherein the warehouse-out operation interface includes a search area and a data display area; In response to a first query instruction in the search area, displaying a list of physical objects that meet the first query instruction in the data display area, wherein the list of physical objects includes a plurality of physical geological data; In response to a first selection instruction for the physical object list, configuring a storage location for the target physical geological data; Generate a delivery request according to the first identification information of the target physical geological data and the delivery location, wherein the first identification information is a management identification of the target physical geological data in the data information management system; The outbound request is sent to the automatic warehouse management system to perform an outbound operation on the target physical geological data.

2. The method for extracting physical geological data from a database according to claim 1, characterized in that: In response to the first query instruction in the search area, displaying a list of physical objects that meet the first query instruction in the data display area includes the following steps: In response to a first query instruction for a search bar component in the search area, displaying a list of items in the search area, wherein the first query instruction includes item information; In response to a second selection instruction for the item list, a list of physical objects under the target item is displayed in the data display area.

3. The method for extracting physical geological data from a database according to claim 1, characterized in that: The step of configuring the outbound location of the target physical geological data in response to the first selection instruction of the physical object list comprises the following steps: In response to a first selection instruction of the physical object list, displaying a storage configuration component of the target physical geological data; In response to a third selection instruction for the outbound location list in the outbound configuration component, the outbound location of the target physical geological data is configured.

4. The method for extracting physical geological data from a database according to claim 3, characterized in that: The step of generating a delivery request according to the first identification information of the target physical geological data and the delivery location comprises the following steps: In response to a first operation instruction of a first control of the outbound configuration component after the outbound position is configured, a reminder component for displaying target physical geological data; In response to a second operation instruction of a second control of the reminder component, the first identification information of the target physical geological data and the outbound location are encapsulated as an outbound request.

5. The method for extracting physical geological data from a database according to claim 1, characterized in that: The automatic warehouse management system is used to perform the following steps: Receiving and parsing the outbound request to obtain first identification information and an outbound location; Determining associated second identification information according to the first identification information of the outbound request, wherein the second identification information is a management identification of the target physical geological data on the automatic warehouse management system; Querying the storage location of the target physical geological data according to the second identification information; Generate a warehouse-out action instruction according to the storage location and the warehouse-out location to drive the warehouse execution system to perform a warehouse-out operation on the target physical geological data.

6. The method for releasing physical geological data from the database according to claim 5, characterized in that: The association relationship between the first identification information and the second identification information is determined by the following steps: Displaying a first warehousing operation interface on the automatic warehouse management system, wherein the first warehousing operation interface includes a first configuration component and a second configuration component; In response to a third operation instruction of a third control of the first configuration component, collecting first identification information of the target physical geological data; In response to a fourth operation instruction of a fourth control of the second configuration component, collecting second identification information of the target physical geological data; In response to a fifth operation instruction on a fifth control on the first warehousing operation interface, the first identification information and the second identification information are associated and stored in the automatic warehousing management system.

7. The method for extracting physical geological data from a database according to claim 1, characterized in that: The first identification information includes the serial number information of the physical geological data and the box number information of the box where the physical geological data is located. The correlation between the serial number information of the physical geological data and the box number information is determined by the following steps: Displaying a second warehousing operation interface on the data information management system, wherein the second warehousing operation interface includes a box number association sub-interface; In response to a sixth operation instruction on a sixth control on the box number association sub-interface, a physical configuration component for collecting box number information and displaying the box number information; In response to a seventh operation instruction of a seventh control on the physical configuration component, collecting serial number information of at least one physical geological data and displaying the serial number information in a serial number display area of ​​the physical configuration component; In response to an eighth operation instruction of an eighth control on the physical configuration component, the numbering information and the box number information are associated and stored in the data information management system.

8. A physical geological data outbound system, characterized in that: include: The first module is used to display the outbound operation interface on the data information management system, wherein the outbound operation interface includes a search area and a data display area; A second module is used to respond to a first query instruction in the search area and display a list of physical objects that meet the first query instruction in the data display area, wherein the list of physical objects includes a plurality of physical geological data; A third module is used to configure the outbound location of the target physical geological data in response to the first selection instruction of the physical object list; A fourth module is used to generate a delivery request according to the first identification information of the target physical geological data and the delivery location, wherein the first identification information is a management identification of the target physical geological data in the data information management system; The fifth module is used to send the outbound request to the automatic warehouse management system to perform outbound operations on the target physical geological data.

9. An electronic device, characterized in that: The electronic device includes a memory, a processor, a program stored in the memory and executable on the processor, and a data bus for realizing connection and communication between the processor and the memory. When the program is executed by the processor, the steps of the method described in any one of claims 1 to 7 are realized.

10. A storage medium, the storage medium being a computer-readable storage medium, used for computer-readable storage, characterized in that: The storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to implement the steps of any one of claims 1 to 7.

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