Anode bed diagnostic system, method, electronic equipment and medium

Through the anode bed diagnostic system, the measurement module and the intelligent water injection module are used to automatically detect and maintain the anode bed, which solves the problem of time-consuming and labor-intensive manual detection in the existing technology, reduces detection and maintenance costs, and improves detection efficiency.

CN117265541BActive Publication Date: 2025-10-14PIPECHINA SOUTH CHINA CO
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Patent Information

Application Number
CN202311144564.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-06
Publication Date
2025-10-14
Estimated Expiration
2043-09-06

AI Technical Summary

Technical Problem

In the prior art, the detection of anode ground beds is usually performed manually, which is time-consuming, labor-intensive, and has high maintenance costs. In the prior art, the detection of anode ground beds is usually performed manually, which is time-consuming, labor-intensive, and has high maintenance costs.

Method used

An anode ground bed diagnostic system is provided, which includes a measurement module, a diagnostic module and an intelligent water injection module. The grounding resistance value is remotely obtained through the measurement module. The diagnostic module determines whether the anode ground bed is operating normally and automatically performs water injection through the intelligent water injection module until the grounding resistance value meets the preset conditions.

Benefits of technology

It realizes automatic detection and maintenance of anode beds without manual on-site detection, reduces detection and maintenance costs, and improves detection efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to an anode ground bed diagnosis system, a method, an electronic device and a medium, the system comprising a measurement module, a diagnosis module and an intelligent water injection module, wherein the diagnosis module is connected with the measurement module and the intelligent water injection module respectively. Through the measurement module, the ground resistance value of the anode ground bed can be obtained, so that whether the anode ground bed normally operates can be judged according to whether the ground resistance value meets preset conditions, and the whole process does not need on-site maintenance detection of staff, thereby saving time and effort.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of anode bed protection, and in particular to an anode bed diagnosis system and method, an electronic device and a medium. BACKGROUND

[0002] As an important part of the impressed current cathodic protection system, the service life of the anode bed is directly related to the normal operation of the cathodic protection system. According to regulations, the grounding resistance of the anode bed needs to be tested and maintained once every quarter to ensure that the grounding resistance is within the specified range.

[0003] Currently, the detection of the anode bed is usually manual maintenance, and personnel are sent to the site to measure the grounding resistance value every quarter, which is time-consuming and labor-intensive and has a high maintenance cost. SUMMARY

[0004] In order to overcome the problem that the detection of the anode bed is usually manual maintenance and time-consuming and labor-intensive, the present application provides an anode bed diagnosis system and method, an electronic device and a medium.

[0005] In a first aspect, in order to solve the above technical problems, the present application provides an anode bed diagnosis system, comprising a measurement module, a diagnosis module and an intelligent water injection module, the diagnosis module being connected to the measurement module and the intelligent water injection module;

[0006] The measurement module is configured to obtain a first grounding resistance value of the anode bed.

[0007] The diagnosis module is configured to determine whether the first grounding resistance value meets a preset condition, and if the first grounding resistance value meets the preset condition, the anode bed is diagnosed as operating normally, and if the first grounding resistance value does not meet the preset condition, the anode bed is determined as not operating normally, and a control command is sent to the intelligent water injection module.

[0008] The water injection module is configured to inject water into the anode bed according to the control command until the first grounding resistance value meets the preset condition.

[0009] In a second aspect, the present application provides an anode bed diagnosis method, comprising:

[0010] Obtaining a first grounding resistance value of the anode bed.

[0011] Determining whether the first grounding resistance value meets a preset condition, and if the first grounding resistance value meets the preset condition, the anode bed is diagnosed as operating normally, and if the first grounding resistance value does not meet the preset condition, the anode bed is determined as not operating normally, and a control command is sent to the intelligent water injection module.

[0012] Injecting water into the anode bed according to the control command until the first grounding resistance value meets the preset condition.

[0013] In a third aspect, the present invention further provides an electronic device comprising a memory, a processor, and a program stored in the memory and running on the processor, wherein the processor implements the steps of an anode bed diagnostic method when executing the program.

[0014] In a fourth aspect, the present invention further provides a computer-readable storage medium, in which instructions are stored. When the instructions are executed on a terminal device, the terminal device executes the steps of an anode bed diagnostic method.

[0015] The beneficial effects of the present invention are as follows: through the measuring module, the first grounding resistance value can be remotely obtained, and based on whether the first grounding resistance value meets the preset conditions, the diagnostic module can directly determine whether the anode ground bed is operating normally. If the anode ground bed is not operating normally, the anode ground bed can be directly injected with water through the intelligent water injection system, so that the first grounding resistance value meets the preset conditions and the normal operation of the anode ground bed is restored. This application does not require the assignment of staff to conduct regular on-site inspections, which solves the problem that the inspection of the anode ground bed is usually manual maintenance, which is time-consuming and labor-intensive. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the present invention is further described below with reference to the accompanying drawings and embodiments.

[0017] Figure 1 Schematic diagram of the structure of an anode bed diagnostic system according to an embodiment of the present invention;

[0018] Figure 2 A schematic structural diagram of an anode bed diagnostic system in another working state according to an embodiment of the present invention;

[0019] Figure 3 Schematic diagram of a flow chart of an anode bed diagnostic method according to an embodiment of the present invention. DETAILED DESCRIPTION

[0020] The following examples are provided to further explain and supplement the present invention and do not constitute any limitation to the present invention.

[0021] like Figure 1 As shown, an anode bed diagnostic system according to an embodiment of the present invention includes a measurement module, a diagnosis module and an intelligent water injection module, wherein the diagnosis module is connected to the measurement module and the intelligent water injection module respectively;

[0022] A measuring module, configured to obtain a first grounding resistance value of the anode bed;

[0023] The diagnosis module is configured to determine whether the first grounding resistance value meets a preset condition. If the first grounding resistance value meets the preset condition, it is diagnosed that the anode ground bed is operating normally. If the first grounding resistance value does not meet the preset condition, it is determined that the anode ground bed is not operating normally, and a control command is sent to the intelligent water injection module.

[0024] The water injection module is configured to inject water into the anode ground bed according to the control command until the first grounding resistance value meets the preset condition.

[0025] In this embodiment, the first grounding resistance value can be remotely obtained by the measurement module. According to whether the first grounding resistance value meets the preset condition, the diagnosis module can directly determine whether the anode ground bed is operating normally. If the anode ground bed is not operating normally, the intelligent water injection system can directly inject water into the anode ground bed to make the first grounding resistance value meet the preset condition and restore the normal operation of the anode ground bed. The present application does not need to assign staff to detect the site regularly, and solves the problem of time-consuming and laborious manual maintenance of the anode ground bed.

[0026] Optionally, the preset condition is that if the first grounding resistance value is less than or equal to 4Ω, it is determined that the anode ground bed is operating normally. If the first grounding resistance value is greater than 4Ω, it is determined that the anode ground bed is not operating normally, and a control command is sent to the intelligent water injection module.

[0027] When the first grounding resistance value is greater than 4Ω, it indicates that the anode ground bed has a high temperature, which may even affect the normal operation of the cathode protection system. Therefore, water injection is needed to cool down the anode ground bed and restore normal operation.

[0028] Optionally, as shown in FIG. 1, Figure 2 The measurement module is further configured to obtain a second grounding resistance value after a preset time of water injection of the anode ground bed if the first grounding resistance value does not meet the preset condition. The diagnosis module is further configured to determine that the anode ground bed is operating normally if the second grounding resistance value is less than or equal to 4Ω, and determine that the anode ground bed needs to be replaced if the second grounding resistance value is greater than 4Ω.

[0029] The preset time can be set according to actual conditions. If the second grounding resistance value after the preset time is still greater than 4Ω, it indicates that the anode ground bed has been damaged due to continuous high temperature and cannot be restored to normal operation. Therefore, a new anode ground bed needs to be replaced.

[0030] Optionally, the diagnosis module can be a computer, a mobile phone or a server. Different devices can be used as the diagnosis module according to actual conditions to meet more application scenarios.

[0031] Optionally, the measurement module can be a grounding resistance tester. An appropriate model of grounding resistance tester can be selected according to actual conditions.

[0032] Optionally, the water injection module can be a water pump and a PVC water injection pipe, and the PVC water injection pipe is directly arranged above the pre-packaged shallow buried anode bed, and the water pump injects water from the water pool to the position of the anode bed through the PVC water injection pipe after receiving the control command.

[0033] As shown in Figure 3 The anode bed diagnosis method provided by the embodiment of the application comprises the following steps:

[0034] S1, obtaining a first grounding resistance value of the anode bed;

[0035] S2, judging whether the first grounding resistance value meets a preset condition, if the first grounding resistance value meets the preset condition, diagnosing that the anode bed is in normal operation, if the first grounding resistance value does not meet the preset condition, judging that the anode bed is not in normal operation, and sending a control command to an intelligent water injection module;

[0036] S3, injecting water into the anode bed according to the control command until the first grounding resistance value meets the preset condition.

[0037] Optionally, the step of judging whether the first grounding resistance value meets the preset condition comprises the following steps:

[0038] If the first grounding resistance value is less than or equal to 4Ω, it is judged that the anode bed is in normal operation, if the first grounding resistance value is greater than 4Ω, it is judged that the anode bed is not in normal operation, and a control command is sent to the intelligent water injection module.

[0039] Optionally, the method further comprises the following steps:

[0040] If the first grounding resistance value does not meet the preset condition, obtaining a second grounding resistance value of the anode bed after a preset water injection time;

[0041] If the second grounding resistance value is less than or equal to 4Ω, it is judged that the anode bed is in normal operation, if the second grounding resistance value is greater than 4Ω, it is judged that the anode bed needs to be replaced.

[0042] The electronic device provided by the embodiment of the application comprises a memory, a processor and a program stored in the memory and running on the processor, and the processor implements part or all of the steps of the method for detecting track safety provided by the above embodiment when executing the program.

[0043] A computer readable storage medium, characterized in that the computer readable storage medium stores instructions, when the instructions run on a terminal device, the terminal device executes the steps of an anode bed diagnosis method.

[0044] The processor can include one or more, for example: the processor unit can include an application processor, a modem processor, a graphics processor, an image signal processor, a controller, a memory, a video codec, a digital signal processor, a baseband processor, and / or a neural network processor, etc. Among them, different processing can be independent devices, or can be integrated in one or more processors.

[0045] The memory is any hardware capable of storing information; the memory can include random access memory and can also include read only memory. The storage unit can be used to store instructions, programs, codes, code sets or instruction sets. The storage unit can include a program storage area and a data storage area.

[0046] The readable storage medium can be an electronic memory such as flash memory, EEPROM, EPROM, hard disk or ROM. Alternatively, the readable storage medium includes a non-transitory computer readable medium. The readable storage medium has storage space for program code to execute any of the above methods. These program codes can be read from or written to one or more computer program products.

[0047] The program code is stored on the computer readable storage medium and can be loaded onto or transmitted to the data processing hardware system for information processing by the processor unit. The program code and the computer readable storage medium form a computer program product, and the computer readable storage medium is not only used to store the program code but also to transmit the program code.

[0048] The program code is transmitted to the data processing hardware system using the computer readable medium, for example, the computer readable signal medium can be at least one of electromagnetic signals, optical signals or any other suitable type of signals, and the signals can be transmitted through at least one communication link, such as wireless communication link, optical fiber cable, coaxial cable, wire or any other suitable type of communication link.

[0049] Those skilled in the art know that the present application can be implemented as an apparatus, a method or a computer program product. Therefore, the present disclosure can be embodied in the form of a complete hardware, a complete software (including firmware, resident software, microcode, etc.), and a combination of hardware and software, which are generally referred to as "circuitry", "module" or "device" herein. In addition, in some embodiments, the present application can also be implemented as a computer program product in the form of one or more computer readable media, which includes computer readable program code. The computer readable storage medium may, for example, be but not limited to an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor device, device or means, or any combination of the above.

[0050] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Also, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. Furthermore, the person skilled in the art can combine and combine the different embodiments or examples described in the present specification and the features of the different embodiments or examples, without contradiction.

[0051] Although the embodiments of the present application have been shown and described above, it is understood that the above-described embodiments are exemplary and are not to be construed as limiting the present application, and the person skilled in the art can make changes, modifications, replacements and variations to the above-described embodiments within the scope of the present application.

Claims

1. An anode bed diagnostic system, characterized in that: It includes a measuring module, a diagnostic module and an intelligent water injection module, wherein the diagnostic module is connected to the measuring module and the intelligent water injection module respectively; The measuring module is used to obtain a first grounding resistance value of the anode bed; the diagnostic module is configured to determine whether the first grounding resistance value satisfies a preset condition; if so, diagnose that the anode ground bed is operating normally; and if not, determine that the anode ground bed is not operating normally and send a control command to the intelligent water injection module; The water injection module is configured to inject water into the anode ground bed according to the control command until the first grounding resistance value meets the preset condition; The preset conditions are: If the first grounding resistance value is less than or equal to 4Ω, it is determined that the anode ground bed is operating normally; if the first grounding resistance value is greater than 4Ω, it is determined that the anode ground bed is not operating normally, and a control command is sent to the intelligent water injection module; The measuring module is further configured to: If the first grounding resistance value does not meet the preset condition, obtaining a second grounding resistance value after the anode bed is filled with water for a preset time; The diagnostic module is further configured to: If the second resistance value is less than or equal to 4Ω, it is determined that the anode bed has resumed normal operation. If the second resistance value is greater than 4Ω, it is determined that the anode bed needs to be replaced.

2. The anode bed diagnostic system according to claim 1, characterized in that: The diagnostic module is a computer, a mobile phone or a server.

3. The anode bed diagnostic system according to claim 1, characterized in that: The measuring module is a ground resistance tester.

4. A method for diagnosing an anode bed, characterized in that: An anode bed diagnostic system according to any one of claims 1 to 3, comprising: obtaining a first grounding resistance value of the anode ground bed; determining whether the first grounding resistance value satisfies a preset condition; if so, diagnosing that the anode ground bed is operating normally; and if not, determining that the anode ground bed is not operating normally, and sending a control command to an intelligent water injection module; injecting water into the anode ground bed according to the control command until the first grounding resistance value meets the preset condition; The determining whether the first grounding resistance value meets a preset condition includes: If the first grounding resistance value is less than or equal to 4Ω, it is determined that the anode ground bed is operating normally; if the first grounding resistance value is greater than 4Ω, it is determined that the anode ground bed is not operating normally, and a control command is sent to the intelligent water injection module; Also includes: If the first grounding resistance value does not meet the preset condition, obtaining a second grounding resistance value after the anode bed is filled with water for a preset time; If the second resistance value is less than or equal to 4Ω, it is determined that the anode bed has resumed normal operation. If the second resistance value is greater than 4Ω, it is determined that the anode bed needs to be replaced.

5. An electronic device comprising a memory, a processor, and a program stored in the memory and running on the processor, characterized in that: When the processor executes the program, the steps of the anode bed diagnostic method according to claim 4 are implemented.

6. A computer-readable storage medium, characterized in that The computer-readable storage medium stores instructions, and when the instructions are executed on a terminal device, the terminal device executes the steps of the anode bed diagnostic method according to claim 4.

Citation Information

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