Water leakage detection method and device based on water leakage detection equipment, electronic equipment and storage medium

Through the combination of the water collection structure and the water level measurement structure, a leakage warning signal is generated and sent, which solves the problem of low accuracy in water leakage detection in distribution rooms and electric well rooms, and achieves timely early warning and accurate detection.

CN120274956AActive Publication Date: 2025-07-08HUIZHOU POWER SUPPLY BUREAU OF GUANGDONG POWER GRID CO LTD
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Patent Information

Application Number
CN202510292635.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2025-07-08
Estimated Expiration
2045-03-12

AI Technical Summary

Technical Problem

In the prior art, the leakage detection accuracy of distribution rooms and electric well rooms is low, resulting in water leakage not being discovered in time, bus duct burning and power outage are long, complaint risk is high, and it is difficult to accurately judge the leakage location.

Method used

The water collecting structure and water level measurement structure are used based on the leakage detection equipment, including water level sensors, conductive strips and electronic equipment. The water collecting structure is discharged when the water level reaches the dangerous warning water level through the water level sensor to generate a warning signal, and a first warning signal is generated based on the conductive strip. If the leakage speed exceeds the threshold, a second warning signal is generated and sent to the monitoring equipment.

Benefits of technology

Improve the accuracy of leakage detection, promptly remind operation and maintenance personnel and property management personnel to avoid the expansion of accidents and ensure the safety of power facilities.

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Abstract

The embodiment of the invention provides a water leakage detection method and device based on water leakage detection equipment, electronic equipment and a storage medium. Relates to the power grid technology field. The water leakage detection equipment comprises a water collecting structure and a water level measuring structure; the water level measuring structure comprises a water level sensor, a conductive strip and electronic equipment; the method comprises the steps that in the water accumulation process that the actual water level of leakage water reaches the preset danger warning water level, if it is detected through a water level sensor that the actual water level of the leakage water reaches the preset danger warning water level, the leakage water is discharged out of a water collection structure; and generating a first warning signal according to the emptied water collecting structure and the conductive strip. And in the water accumulation process, if the water leakage speed of the leakage water detected by the water level sensor is greater than or equal to the preset water leakage threshold value, a second warning signal is generated. And sending the first warning signal and / or the second warning signal to preset monitoring equipment. The method is used for achieving the effect of improving the detection accuracy of water leakage generated by the power distribution room and the electric well room.
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Description

Technical Field

[0001] The present application relates to the technical field of power grids, and particularly to a method, device, electronic device, and storage medium for detecting water seepage and leakage based on a water seepage and leakage detection device. Background Art

[0002] Currently, with the rapid economic development, there are more and more high-rise communities, and water leakage in distribution rooms and electrical well rooms occurs frequently. At present, the distribution room can only be monitored through inspections, and it is easy to overlook the ceiling situation. Timely detection of water leakage in the distribution room depends on the qualifications and inspection habits of operation and maintenance personnel. The electrical well room is usually looked after by the property, and the electrical skills of electricians in each community vary. Failure to detect water ingress and leakage in the electrical well room in a timely manner leads to the burning of bus ducts, long power outages, and high complaint risks, resulting in inaccurate judgment when there is suspected water leakage at positions such as the ceiling.

[0003] Therefore, there is an urgent need for a method that can accurately determine whether water seepage and leakage occur at positions such as the ceiling. Summary of the Invention

[0004] Embodiments of the present application provide a method, device, electronic device, and storage medium for detecting water seepage and leakage based on a water seepage and leakage detection device, so as to achieve the effect of improving the detection accuracy of water seepage and leakage in distribution rooms and electrical well rooms.

[0005] In a first aspect, embodiments of the present application provide a method for detecting water seepage and leakage based on a water seepage and leakage detection device. The water seepage and leakage detection device includes a water collection structure and a water level measurement structure. The water level measurement structure includes a water level sensor, a conductive strip, and an electronic device. The method is applied to the electronic device and includes:

[0006] During the water accumulation process when the actual water level of the water seepage and leakage reaches a preset dangerous warning water level, if it is detected by the water level sensor that the actual water level of the water seepage and leakage reaches the preset dangerous warning water level, the water seepage and leakage is drained from the water collection structure; and a first warning signal is generated according to the emptied water collection structure and the conductive strip;

[0007] During the water accumulation process, if it is detected by the water level sensor that the leakage rate of the water seepage and leakage is greater than or equal to a preset leakage threshold, a second warning signal is generated;

[0008] The first warning signal and / or the second warning signal is sent to a preset monitoring device.

[0009] In a possible implementation manner, the water collection structure includes a first structure and a second structure, and the first structure is connected to the second structure. The first structure is a polyhedron with one open side, and the one open side faces the gap where water seepage and leakage occur. The second structure is a cylinder;

[0010] The water level measurement structure includes at least one water level sensor; the water level sensor is located inside the cylinder, and the height of the water level sensor inside is a custom height.

[0011] In a possible implementation, the water level measurement structure includes at least one water level sensor; a first water level sensor is provided at the preset dangerous warning water level.

[0012] During the water accumulation process when the actual water level of the seepage water reaches the preset dangerous warning water level, if it is detected by the water level sensor that the actual water level of the seepage water reaches the preset dangerous warning water level, discharging the seepage water from the water collection structure includes:

[0013] During the water accumulation process when the actual water level of the seepage water reaches the preset dangerous warning water level, if it is detected by the first water level sensor that the actual water level of the seepage water reaches the preset dangerous warning water level, discharging the seepage water from the water collection structure.

[0014] In a possible implementation, the conductive strip includes an anode conductive strip and a cathode conductive strip; the water level measurement structure includes a power source.

[0015] The positive electrode of the power source is connected to the anode conductive strip, and the anode conductive strip is located inside the cylinder; the negative electrode of the power source is connected to the cathode conductive strip, and the cathode conductive strip is located inside the cylinder.

[0016] Generating a first warning signal according to the emptied water collection structure and the conductive strip includes:

[0017] Generating a first warning signal according to the emptied water collection structure, the anode conductive strip, and the cathode conductive strip.

[0018] In a possible implementation, the water level measurement structure includes a first water level sensor and a second water level sensor; the first water level sensor is located at the preset dangerous warning water level, and the second water level sensor is located at a preset distance below the dangerous warning water level.

[0019] During the water accumulation process, if it is detected by the water level sensor that the leakage rate of the seepage water is greater than or equal to a preset leakage threshold, generating a second warning signal includes:

[0020] During the water accumulation process, if it is detected by the second water level sensor that the actual water level of the seepage water reaches the preset distance, and it is detected by the first water level sensor that the actual water level of the seepage water reaches the dangerous warning water level, determining the time difference between the actual water level rising from the preset distance to the dangerous warning water level.

[0021] Determine the water leakage speed according to the time difference, the first preset resistance value corresponding to the preset distance, and the second preset resistance value corresponding to the dangerous warning water level;

[0022] If it is determined that the water leakage speed of the seepage water is greater than or equal to a preset water leakage threshold, generate a second warning signal.

[0023] In a possible implementation manner, if it is determined that the water leakage speed of the seepage water is greater than or equal to a preset water leakage threshold, generating a second warning signal includes:

[0024] Compare and process the water leakage speed of the seepage water with a preset water leakage threshold; wherein, the water leakage threshold includes thresholds of multiple warning levels;

[0025] If it is determined that the water leakage speed of the seepage water is greater than or equal to the threshold of any warning level, generate a second warning signal according to the warning level corresponding to the threshold that is greater than or equal to.

[0026] In a possible implementation manner, the method further includes:

[0027] Based on the first warning signal and / or the second warning signal, control a preset buzzer to give an alarm.

[0028] In a second aspect, an embodiment of the present application provides a seepage water detection device based on a seepage water detection device. The seepage water detection device includes a water collection structure and a water level measurement structure. The water level measurement structure includes a water level sensor, a conductive bar, and an electronic device; the device includes:

[0029] A drainage module, configured to drain the seepage water out of the water collection structure if it is detected by the water level sensor that the actual water level of the seepage water reaches a preset dangerous warning water level during the water accumulation process of the seepage water reaching the preset dangerous warning water level;

[0030] A first generation module, configured to generate a first warning signal according to the emptied water collection structure and the conductive bar;

[0031] A second generation module, configured to generate a second warning signal if it is detected by the water level sensor that the water leakage speed of the seepage water is greater than or equal to a preset water leakage threshold during the water accumulation process;

[0032] A sending module, configured to send the first warning signal and / or the second warning signal to a preset monitoring device.

[0033] In a possible implementation, the water collection structure includes a first structure and a second structure, and the first structure is connected to the second structure; the first structure is a polyhedron with one open side, and the one open side faces the gap where water leakage occurs; the second structure is a cylinder;

[0034] The water level measurement structure includes at least one water level sensor; the water level sensor is located inside the cylinder, and the height of the water level sensor inside is a custom height.

[0035] In a possible implementation, the water level measurement structure includes at least one water level sensor; a first water level sensor is provided at the preset dangerous warning water level;

[0036] The drainage module is specifically used for:

[0037] During the water accumulation process when the actual water level of the water leakage reaches the preset dangerous warning water level, if it is detected by the first water level sensor that the actual water level of the water leakage reaches the preset dangerous warning water level, the water leakage is drained out of the water collection structure.

[0038] In a possible implementation, the conductive bar includes an anode conductive bar and a cathode conductive bar; the water level measurement structure includes a power supply;

[0039] The positive electrode of the power supply is connected to the anode conductive bar, and the anode conductive bar is located inside the cylinder; the negative electrode of the power supply is connected to the cathode conductive bar, and the cathode conductive bar is located inside the cylinder;

[0040] The first generation module is specifically used for:

[0041] Generate a first warning signal according to the emptied water collection structure, the anode conductive bar, and the cathode conductive bar.

[0042] In a possible implementation, the water level measurement structure includes a first water level sensor and a second water level sensor; the first water level sensor is located at the preset dangerous warning water level, and the second water level sensor is located at a preset distance below the dangerous warning water level;

[0043] The second generation module includes:

[0044] A first determination unit, configured to, during the water accumulation process, if it is detected by the second water level sensor that the actual water level of the water leakage reaches the preset distance, and it is detected by the first water level sensor that the actual water level of the water leakage reaches the dangerous warning water level, determine the time difference between the actual water level rising from the preset distance to the dangerous warning water level;

[0045] A second determination unit, configured to determine a water leakage rate according to the time difference, a first preset resistance value corresponding to the preset distance, and a second preset resistance value corresponding to the dangerous warning water level;

[0046] A third determination unit, configured to generate a second warning signal if it is determined that the water leakage rate of the seepage water is greater than or equal to a preset water leakage threshold.

[0047] In a possible implementation manner, the third determination unit is specifically configured to:

[0048] Compare and process the water leakage rate of the seepage water with a preset water leakage threshold; wherein, the water leakage threshold includes thresholds of multiple warning levels;

[0049] If it is determined that the water leakage rate of the seepage water is greater than or equal to the threshold of any warning level, generate a second warning signal according to the warning level corresponding to the threshold that is greater than or equal to.

[0050] In a possible implementation manner, the device is further specifically configured to:

[0051] Based on the first warning signal and / or the second warning signal, control a preset buzzer to give an alarm.

[0052] In a third aspect, an embodiment of the present application provides an electronic device, including: a memory, a processor;

[0053] The memory stores computer execution instructions;

[0054] The processor executes the computer execution instructions stored in the memory, so that the processor executes various possible implementation manners of the first aspect as above.

[0055] In a fourth aspect, an embodiment of the present application provides a computer-readable storage medium, in which computer execution instructions are stored, and when the computer execution instructions are executed by a processor, they are used to implement various possible implementation manners of the first aspect as above.

[0056] In a fifth aspect, an embodiment of the present application provides a computer program product, including a computer program, and when the computer program is executed by a processor, it implements various possible implementation manners of the first aspect as above.

[0057] The leakage detection method, device, electronic device, and storage medium based on a leakage detection device provided by an embodiment of the present application. The leakage detection device includes a water collection structure and a water level measurement structure. The water level measurement structure includes a water level sensor, a conductive strip, and an electronic device. During the water accumulation process when the actual water level of the leakage reaches a preset dangerous warning water level, if it is detected by the water level sensor that the actual water level of the leakage reaches the preset dangerous warning water level, the leakage water is discharged from the water collection structure; and a first warning signal is generated based on the emptied water collection structure and the conductive strip. During the water accumulation process, if it is detected by the water level sensor that the leakage rate of the leakage is greater than or equal to a preset leakage threshold, a second warning signal is generated. The first warning signal and / or the second warning signal is sent to a preset monitoring device. In this solution, the water level measurement structure measures the water level of the water collection structure. If there is a leakage situation, a first warning signal and / or a second warning signal is generated, and immediately the first warning signal and / or the second warning signal is sent to the preset monitoring device. Furthermore, the maintenance personnel who pay attention to the monitoring device can quickly obtain a defect warning based on the received warning signal, which is convenient for the property management or the household to quickly access when hearing the buzzer alarm, avoiding the occurrence and expansion of accidents, so as to achieve the effect of improving the detection accuracy of water leakage in the distribution room and the electrical shaft room. BRIEF DESCRIPTION OF THE DRAWINGS

[0058] The accompanying drawings herein are incorporated into the specification and form a part of the specification, showing embodiments consistent with the present application and used together with the specification to explain the principles of the present application.

[0059] Figure 1 Schematic flowchart of a leakage detection method based on a leakage detection device provided by an embodiment of the present application Figure 1 ;

[0060] Figure 2 Top view structure diagram of a leakage detection device provided by an embodiment of the present application;

[0061] Figure 3 Front view structure diagram of a leakage detection device provided by an embodiment of the present application;

[0062] Figure 4 Schematic flowchart of another leakage detection method based on a leakage detection device provided by an embodiment of the present application Figure 2 ;

[0063] Figure 5 Cross-sectional view of a leakage detection device provided by an embodiment of the present application;

[0064] Figure 6 Scene schematic diagram of a leakage detection method based on a leakage detection device provided by an embodiment of the present application Figure 3 ;

[0065] Figure 7 A structural schematic diagram of a water seepage detection device based on a water seepage detection device provided by an embodiment of the present application;

[0066] Figure 8 Another structural schematic diagram of a water seepage detection device based on a water seepage detection device provided by an embodiment of the present application;

[0067] Figure 9 A structural schematic diagram of an electronic device provided by an embodiment of the present application.

[0068] Through the above-mentioned drawings, the specific embodiments of the present application have been shown, and there will be more detailed descriptions hereinafter. These drawings and textual descriptions are not intended to limit the scope of the concept of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. Detailed implementation manners

[0069] Here, the exemplary embodiments will be described in detail, and the examples are shown in the drawings. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The implementation manners described in the following exemplary embodiments do not represent all implementation manners consistent with the present application. On the contrary, they are merely examples of devices and methods consistent with some aspects of the present application as detailed in the appended claims.

[0070] Currently, with the rapid economic development, there are more and more high-rise communities, and water leakage in distribution rooms and electrical shaft rooms occurs frequently. At present, the distribution room can only be monitored by inspections, and it is easy to overlook the ceiling situation. Discovering water leakage in the distribution room in a timely manner depends on the qualifications and inspection habits of the operation and maintenance personnel. The electrical shaft room is usually looked after by the property, and the levels of electricians in each community vary. The failure to discover water ingress and leakage in the electrical shaft room in a timely manner leads to the burning of bus ducts, long power outages, and high complaint risks, resulting in the inability to accurately judge when there is suspected water leakage at positions such as the ceiling. Therefore, there is an urgent need for a method that can accurately determine whether water seepage occurs at positions such as the ceiling.

[0071] Combined with the above scenarios, in the prior art, there is a technical problem that the detection accuracy of water seepage in distribution rooms and electrical shaft rooms is relatively low.

[0072] The water seepage detection method based on a water seepage detection device provided by the present application solves the technical problem that the detection accuracy of water seepage in distribution rooms and electrical shaft rooms is relatively low.

[0073] The technical solution of the present application and how the technical solution of the present application solves the above technical problems will be described in detail below with specific embodiments. The following several specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of the present application will be described below with reference to the accompanying drawings.

[0074] Figure 1 Flow schematic of a leakage detection method based on a leakage detection device provided by the present application Figure 1 , the leakage detection device includes a water collection structure and a water level measurement structure, the water level measurement structure includes a water level sensor, a conductive bar, and an electronic device; the method is applied to the electronic device; as Figure 1 shown, the method includes:

[0075] S101. During the water accumulation process when the actual water level of the leakage reaches the preset dangerous warning water level, if it is detected by the water level sensor that the actual water level of the leakage reaches the preset dangerous warning water level, the leakage water is discharged from the water collection structure; and a first warning signal is generated according to the emptied water collection structure and the conductive bar.

[0076] Exemplarily, the execution subject of this embodiment can be an electronic device, or a terminal device, or a leakage detection device or equipment based on the leakage detection device, or other devices or equipment that can execute this embodiment, and there is no limitation thereto. In this embodiment, the execution subject is introduced as an electronic device.

[0077] First, the leakage detection device includes a water collection structure and a water level measurement structure. Among them, the water collection structure includes a first structure and a second structure, the first structure is connected and communicated with the second structure; the first structure is a polyhedron with one side open, and the open side faces the gap where the leakage occurs; the second structure is a cylinder. The water level measurement structure includes at least one water level sensor, a conductive bar, and an electronic device. The water level sensor is fixed inside the cylinder, and the height inside is a custom height, and there is no limitation thereto; the water level sensor is used to detect whether the actual water level of the leakage reaches the position where the water level sensor is located. The preset dangerous warning water level is located inside the cylinder and is a user-defined water level, and there is no limitation thereto.

[0078] In this step, a water level sensor is provided at a preset dangerous warning water level. During the process of water accumulation when the actual water level of the seepage water reaches the preset dangerous warning water level, if it is detected by the water level sensor that the actual water level of the seepage water reaches the preset dangerous warning water level, the preset drain opening is controlled to be opened, and the seepage water is discharged from the water collection structure through the drain opening. Among them, the preset drain opening is at least one, and the position of the preset drain opening can be the bottom of a cylinder, etc., which is not limited here. Then, according to the emptied water collection structure and the conductive bar located in the cylinder, a first warning signal is generated, and the first warning signal is used to indicate that the actual water level has reached the preset dangerous warning water level.

[0079] For example, Figure 2 is a top view structure diagram of a seepage water detection device provided by an embodiment of the present application. As Figure 2 shown, it includes a rectangular water collection structure, a cylinder with a water collection bottom, and a rectangular opening on one side. The water collection structure creates a low position through a slope and a groove, and uses gravity to collect the seepage water into the cylinder (i.e., the measurement box) in the water collection structure; the water collection structure can be made square, long strip-shaped or adjusted according to the crack situation to ensure that the leakage of the roof ceiling does not leak, and also plays a role in protecting and shielding the equipment operating with electricity below. When the water collected by the water collection structure reaches the preset dangerous warning water level, the drain opening is opened to discharge the accumulated water outside the power distribution room, and at the same time, the counter records the number of drainage times. Figure 3 is a front view structure diagram of a seepage water detection device provided by an embodiment of the present application. As Figure 3 shown, it includes the front view cross-section of the water collection structure and the front view cross-section of the cylinder.

[0080] S102. During the water accumulation process, if it is detected by the water level sensor that the leakage speed of the seepage water is greater than or equal to a preset leakage threshold, a second warning signal is generated.

[0081] Exemplarily, inside a cylinder, in order to monitor the actual water level in real time, a first water level sensor 1 may be provided at a preset dangerous warning water level, and a first preset resistance value 1 may be set when the actual water level reaches the dangerous warning water level. Water level sensors may also be installed at multiple other water levels. For example, a second water level sensor 2 may be installed at a preset distance below the dangerous warning water level, and a second preset resistance value 2 may be set when the actual water level reaches the first preset distance. During the water accumulation process, if it is detected by the second water level sensor 2 that the actual water level has risen to the first preset distance, and it is detected by the first water level sensor 1 that the actual water level has risen to the dangerous warning water level, then based on the first preset resistance value 1, the second preset resistance value 2, and the time difference between when the actual water level rises from the preset distance to the dangerous warning water level, the leakage rate of the water leakage is determined. If the leakage rate of the water leakage detected by the water level sensor is greater than or equal to a preset leakage threshold, a second warning signal is generated, and the second warning signal is used to indicate that the leakage rate of the water leakage has reached the preset leakage rate threshold.

[0082] S103. Send the first warning signal and / or the second warning signal to a preset monitoring device.

[0083] Exemplarily, the first warning signal and / or the second warning signal are sent to a preset monitoring device, thereby timely reminding the user that water leakage has occurred.

[0084] The water leakage detection method based on a water leakage detection device provided in an embodiment of the present application, the water leakage detection device includes a water collection structure and a water level measurement structure, and the water level measurement structure includes a water level sensor, a conductive strip, and an electronic device; during the water accumulation process when the actual water level of the water leakage reaches a preset dangerous warning water level, if it is detected by the water level sensor that the actual water level of the water leakage reaches the preset dangerous warning water level, the water leakage is discharged from the water collection structure; and based on the emptied water collection structure and the conductive strip, a first warning signal is generated. During the water accumulation process, if it is detected by the water level sensor that the leakage rate of the water leakage is greater than or equal to a preset leakage threshold, a second warning signal is generated. The first warning signal and / or the second warning signal are sent to a preset monitoring device. In this solution, the water level measurement structure measures the water level of the water collection structure. If there is a water leakage situation, a first warning signal and / or a second warning signal are generated, and immediately the first warning signal and / or the second warning signal are sent to a preset monitoring device. Then, the maintenance personnel who pay attention to the monitoring device can quickly obtain a defect warning based on the received warning signal, facilitating the property management or the household to quickly access when hearing the buzzer alarm, avoiding the occurrence and expansion of accidents, so as to achieve the effect of improving the detection accuracy of water leakage in the distribution room and the electrical shaft room.

[0085] Figure 4 Flow schematic of a water leakage detection method based on a water leakage detection device provided by the present applicationFigure 2 , as Figure 4 shown, based on the Figure 1 embodiment, a detailed description of the water seepage detection method based on the water seepage detection device is provided. The method includes:

[0086] S201. During the water accumulation process when the actual water level of the water seepage reaches the preset dangerous warning water level, if it is detected by the water level sensor that the actual water level of the water seepage reaches the preset dangerous warning water level, the water seepage is discharged from the water collection structure.

[0087] In an example, the water collection structure includes a first structure and a second structure, and the first structure is connected to the second structure; the first structure is a polyhedron with one open side, and the open side faces the gap where water seepage occurs; the second structure is a cylinder; the water level measurement structure includes at least one water level sensor; the water level sensor is located inside the cylinder, and the height inside is a custom height.

[0088] In an example, the water level measurement structure includes at least one water level sensor; a first water level sensor is provided at the preset dangerous warning water level; S201 includes: during the water accumulation process when the actual water level of the water seepage reaches the preset dangerous warning water level, if it is detected by the first water level sensor that the actual water level of the water seepage reaches the preset dangerous warning water level, the water seepage is discharged from the water collection structure.

[0089] Exemplarily, this step can refer to Figure 1 step 101 in, which will not be elaborated here.

[0090] S202. Generate a first warning signal according to the emptied water collection structure and the conductive bar.

[0091] In an example, the conductive bar includes an anode conductive bar and a cathode conductive bar; the water level measurement structure includes a power supply; the positive pole of the power supply is connected to the anode conductive bar, and the anode conductive bar is located inside the cylinder; the cathode of the power supply is connected to the cathode conductive bar, and the cathode conductive bar is located inside the cylinder; S202 includes: generate a first warning signal according to the emptied water collection structure, the anode conductive bar, and the cathode conductive bar.

[0092] Exemplarily, Figure 5 is a sectional view of a water seepage detection device provided by an embodiment of the present application. As Figure 5As shown in the figure, it includes a sectional view of a cylinder; the conductive bars include an anode conductive bar and a cathode conductive bar. Both the anode conductive bar and the cathode conductive bar are located inside the cylinder. The inside can be the inner side or the bottom of the cylinder, and the anode conductive bar and the cathode conductive bar can be at the same horizontal height or at different heights, which is not limited. The water level measurement structure is provided with a power supply. The positive electrode of the power supply is connected to the anode conductive bar, and the negative electrode of the power supply is connected to the cathode conductive bar. The power supply can be an energy supply device such as a battery, which is not limited. For example, in order to make the detection of seepage water more accurate, the negative and positive electrodes for water level measurement, that is, the anode conductive bar and the cathode conductive bar, can be set at the bottom of the cylinder of the water collection structure to facilitate the first warning of finding a small amount of leakage; then the height distance between the electrode and the bottom can be adjusted manually, and an alarm will be issued again when the water level rises to a certain position; the highest position can be adjusted to the dangerous warning water level. In case of a leakage situation, the water level line of the seepage water in the cylinder of the water level measurement structure rises to the preset dangerous warning water level. At this time, the circuit is conducted, triggering an alarm, and information is transmitted through the communication circuit, and at the same time, the buzzer alarms.

[0093] In this step, the device is powered by the power supply. The anode conductive bar, the cathode conductive bar, the seepage water, the power supply, etc. form a circuit. When there is no seepage water, the circuit is open. When there is seepage water, the seepage water collected in the water collection structure can conduct the positive and negative electrodes of the power supply to form a circuit, sending out a leakage signal. Therefore, a first warning signal, that is, a leakage signal, can be generated according to the emptied water collection structure, the anode conductive bar, and the cathode conductive bar. For example, as Figure 5 shown, taking one end of the cathode conductive bar being located at the preset dangerous warning water level inside the cylinder and the anode conductive bar being located above the preset dangerous warning water level as an example, in case of a leakage situation, since the water level line of the seepage water in the cylinder of the water level measurement structure rises to the preset dangerous warning water level, at this time the circuit is conducted, triggering an alarm, and information is transmitted through the preset communication circuit, and at the same time, the buzzer alarms.

[0094] It should be noted that Figure 5 only one situation is shown. The cathode conductive bar and the anode conductive bar can also be set at various other different custom positions so that an alarm can be issued every time the seepage water rises, which is not limited.

[0095] S203. During the water accumulation process, if it is detected by the water level sensor that the leakage speed of the seepage water is greater than or equal to the preset leakage threshold, a second warning signal is generated.

[0096] In one example, the water level measurement structure includes a first water level sensor and a second water level sensor; the first water level sensor is located at a preset dangerous warning water level, and the second water level sensor is located at a preset distance below the dangerous warning water level; S203 includes: during the water accumulation process, if it is detected by the second water level sensor that the actual water level of the leakage reaches the preset distance, and it is detected by the first water level sensor that the actual water level of the leakage reaches the dangerous warning water level, then determine the time difference for the actual water level to rise from the preset distance to the dangerous warning water level; according to the time difference, the first preset resistance value corresponding to the preset distance, and the second preset resistance value corresponding to the dangerous warning water level, determine the leakage rate; if it is determined that the leakage rate of the leakage is greater than or equal to a preset leakage threshold, then generate a second warning signal.

[0097] In one example, "if it is determined that the leakage rate of the leakage is greater than or equal to a preset leakage threshold, then generate a second warning signal" includes: comparing and processing the leakage rate of the leakage with the preset leakage threshold; wherein, the leakage threshold includes thresholds for multiple warning levels; if it is determined that the leakage rate of the leakage is greater than or equal to the threshold of any warning level, then generate a second warning signal according to the warning level corresponding to the threshold that is greater than or equal to.

[0098] Exemplarily, since the water level measurement structure reflects the water level rising speed by the change of Ohm value according to the characteristic that the resistance value between the electrodes decreases as the liquid between the two electrodes increases, denoted as XΩ / h. This characteristic is a non-linear change and is calibrated by on-site testing by construction and installation personnel before use. When the water level rising speed XΩ / h increases sharply, it indicates that the leakage situation has worsened. The water level measurement structure includes a first water level sensor 1 and a second water level sensor 2. The first water level sensor 1 is located at the preset dangerous warning water level, and the second water level sensor 2 is located at a preset distance below the dangerous warning water level. A first preset resistance value 1 is set when the actual water level reaches the dangerous warning water level, and a second preset resistance value 2 is set when the actual water level reaches the first preset distance. In this step, during the water accumulation process, if it is detected by the second water level sensor 2 that the actual water level of the leakage reaches the preset distance, and it is detected by the first water level sensor 1 that the actual water level of the leakage reaches the preset dangerous warning water level, then determine the time difference t for the actual water level to rise from the preset distance to the dangerous warning water level. According to the time difference, the first preset resistance value 1 corresponding to the preset distance, and the second preset resistance value 2 corresponding to the dangerous warning water level, calculate the leakage rate X = (the second preset resistance value 2 - the first preset resistance value 1) divided by t. Compare the leakage rate X of the leakage with the preset leakage threshold. If it is determined that the leakage rate X of the leakage is greater than or equal to the preset leakage threshold, then generate a second warning signal.

[0099] Further, the leakage rate of the seepage water can be compared with a preset leakage threshold. The leakage threshold includes thresholds for multiple warning levels. If it is determined that the leakage rate of the seepage water is greater than or equal to the threshold of any warning level, a second warning signal is generated according to the warning level corresponding to the threshold that is greater than or equal to.

[0100] S204. Send the first warning signal and / or the second warning signal to a preset monitoring device.

[0101] Exemplarily, both the first warning signal and / or the second warning signal include a warning signal and a position number. The electronic device can automatically send the first warning signal and / or the second warning signal to a preset monitoring device through a wireless network, such as the duty mobile phone of the power supply operation and maintenance personnel, etc., and at the same time transmit it to a preset property monitoring system through an optical fiber. The leakage signal triggers the first-stage alarm through the water level measurement structure, that is, the first warning signal, and the second-stage alarm is triggered by the leakage rate XΩ / h being greater than the preset leakage rate threshold, that is, the second warning signal, which is used to monitor two situations of water leakage and the deterioration of the water leakage problem. The two-stage alarms can exist simultaneously, or the second-stage alarm can cover the first-stage alarm. The monitoring device can distinguish them through two signals, a yellow light and a red light. The alarm signal cannot be remotely reset and requires personnel to arrive at the scene for manual reset, ensuring the timely inspection and repair of the seepage water.

[0102] S205. Control a preset buzzer to give an alarm based on the first warning signal and / or the second warning signal.

[0103] Exemplarily, the electronic device can control a preset buzzer to give an alarm based on the first warning signal and / or the second warning signal. Therefore, when a fault occurs, an alarm buzzer sounds. If there are property patrol personnel, residents, and operation and maintenance line patrol personnel near the fault buzzer when it sounds, the fault location and handling time can be further shortened, facilitating people to discover abnormalities.

[0104] The water seepage detection method based on the water seepage detection device provided by the embodiment of the present application, during the water accumulation process when the actual water level of the water seepage reaches the preset dangerous warning water level, if it is detected by the water level sensor that the actual water level of the water seepage reaches the preset dangerous warning water level, the water seepage is discharged from the water collection structure. A first warning signal is generated according to the emptied water collection structure and the conductive bar. During the water accumulation process, if it is detected by the water level sensor that the water leakage speed of the water seepage is greater than or equal to the preset water leakage threshold, a second warning signal is generated. The first warning signal and / or the second warning signal are sent to a preset monitoring device. Based on the first warning signal and / or the second warning signal, a preset buzzer is controlled to give an alarm. In this solution, the water level measurement structure measures the water level of the water collection structure. If there is a water leakage situation, a first warning signal and / or a second warning signal are generated, and immediately the first warning signal and / or the second warning signal are sent to the preset monitoring device. Furthermore, the operation and maintenance personnel who pay attention to the monitoring device can quickly obtain a defect warning according to the received warning signal, which is convenient for the property management or the household to quickly access when hearing the buzzer alarm, avoiding the occurrence and expansion of accidents, so as to achieve the effect of improving the detection accuracy of water seepage in the distribution room and the electrical shaft room.

[0105] On the basis of the above embodiments, Figure 6 is a schematic diagram of the scenario of a water seepage detection method based on a water seepage detection device provided by an embodiment of the present application Figure 3 , such as Figure 6 shown, including: a water collection structure; a water level measurement structure; if water seepage occurs, the circuit is conducted; triggering a preset communication module to send an alarm message and a location; and triggering a buzzer to give an alarm.

[0106] On the basis of the above embodiments, the present application provides a water leakage monitoring system, which includes a water collection structure, a water level measurement structure, a wireless communication module and a buzzer alarm device. The water collection structure can be installed at positions such as the ceiling above the electrical room where water seepage is likely to occur, and the position is not limited; the water level measurement structure measures the water level in the water collection structure. If there is a water seepage situation, the received data is immediately sent to the operation and maintenance personnel and a buzzer alarm is issued simultaneously. The operation and maintenance personnel can quickly obtain a defect warning according to the received signal and the device number, and the property management or the household can quickly access when hearing the buzzer alarm, avoiding the occurrence and expansion of accidents.

[0107] Figure 7 is a schematic structural diagram of a water seepage detection device based on a water seepage detection device provided by the present application. The water seepage detection device includes a water collection structure and a water level measurement structure. The water level measurement structure includes a water level sensor, a conductive bar and an electronic device; as Figure 7 shown, the water seepage detection device 40 based on the water seepage detection device provided by this embodiment includes:

[0108] The drainage module 41 is used to discharge the leaked water from the water collection structure if the water level sensor detects that the actual water level of the leaked water reaches the preset danger warning water level during the accumulation of water;

[0109] A first generating module 42, for generating a first warning signal according to the drained water collecting structure and the conductive strip;

[0110] The second generating module 43 is used to generate a second warning signal if the water leakage rate detected by the water level sensor is greater than or equal to a preset water leakage threshold during the water accumulation process;

[0111] The sending module 44 is used to send the first warning signal and / or the second warning signal to a preset monitoring device.

[0112] Figure 8 A schematic diagram of the structure of another water leakage detection device based on a water leakage detection device provided in an embodiment of the present application, Figure 7 Based on the embodiment shown, Figure 8 As shown, the water collection structure includes a first structure and a second structure, the first structure is connected to the second structure; the first structure is a polyhedron with one side open, and the one side open faces the gap where water leakage occurs; the second structure is a cylinder;

[0113] The water level measurement structure includes at least one water level sensor; the water level sensor is located on the inner side of the cylinder, and the height of the water level sensor on the inner side is a custom height.

[0114] In a possible implementation, the water level measurement structure includes at least one water level sensor; a first water level sensor is provided at a preset danger warning water level;

[0115] The drainage module 41 is specifically used for:

[0116] During the water accumulation process when the actual water level of the leaking water reaches the preset danger warning water level, if the first water level sensor detects that the actual water level of the leaking water reaches the preset danger warning water level, the leaking water is discharged from the water collection structure.

[0117] In a possible implementation, the conductive strips include an anode conductive strip and a cathode conductive strip; the water level measurement structure includes a power supply;

[0118] The positive electrode of the power supply is connected to the anode conductive strip, and the anode conductive strip is located inside the cylinder; the cathode of the power supply is connected to the cathode conductive strip, and the cathode conductive strip is located inside the cylinder;

[0119] The first generating module 42 is specifically used for:

[0120] Generate a first warning signal based on the emptied water collection structure, the anode conductive bar, and the cathode conductive bar.

[0121] In a possible implementation, the water level measurement structure includes a first water level sensor and a second water level sensor; the first water level sensor is located at a preset dangerous warning water level, and the second water level sensor is located at a preset distance below the dangerous warning water level;

[0122] The second generation module 43 includes:

[0123] The first determination unit 431 is configured to, during the water accumulation process, if it is detected by the second water level sensor that the actual water level of the water leakage reaches the preset distance, and it is detected by the first water level sensor that the actual water level of the water leakage reaches the dangerous warning water level, determine the time difference between the actual water level rising from the preset distance to the dangerous warning water level;

[0124] The second determination unit 432 is configured to determine the water leakage speed according to the time difference, the first preset resistance value corresponding to the preset distance, and the second preset resistance value corresponding to the dangerous warning water level;

[0125] The third determination unit 433 is configured to generate a second warning signal if it is determined that the water leakage speed of the water leakage is greater than or equal to a preset water leakage threshold.

[0126] In a possible implementation, the third determination unit 433 is specifically configured to:

[0127] Compare and process the water leakage speed of the water leakage with a preset water leakage threshold; wherein, the water leakage threshold includes thresholds of multiple warning levels;

[0128] If it is determined that the water leakage speed of the water leakage is greater than or equal to the threshold of any warning level, generate a second warning signal according to the warning level corresponding to the greater than or equal to threshold.

[0129] In a possible implementation, the device is further specifically configured to:

[0130] Based on the first warning signal and / or the second warning signal, control a preset buzzer to give an alarm.

[0131] The device provided in this embodiment can execute the method provided in the above method embodiment, and its implementation principle and technical effect are similar, which will not be elaborated here in this embodiment.

[0132] Figure 9 It is a schematic structural diagram of the electronic device provided in this application. As Figure 9As shown in the figure, the electronic device 50 provided in this embodiment includes: at least one processor 501 and a memory 502. Optionally, the device 50 further includes a communication component 503. Among them, the processor 501, the memory 502, and the communication component 503 are connected through a bus 504.

[0133] In a specific implementation process, at least one processor 501 executes the computer-executable instructions stored in the memory 502, so that at least one processor 501 executes the above-mentioned method.

[0134] For the specific implementation process of the processor 501, reference can be made to the above method embodiment. The implementation principle and technical effect are similar, and will not be elaborated here in this embodiment.

[0135] In the above embodiment, it should be understood that the processor may be a central processing unit (English: Central Processing Unit, abbreviated: CPU), or may also be other general-purpose processors, digital signal processors (English: Digital Signal Processor, abbreviated: DSP), application specific integrated circuits (English: Application Specific Integrated Circuit, abbreviated: ASIC), etc. The general-purpose processor may be a microprocessor or the processor may also be any conventional processor, etc. The steps of the method disclosed in combination with the invention can be directly embodied as being executed by a hardware processor, or executed by a combination of hardware and software modules in the processor.

[0136] The memory may include a high-speed memory (Random Access Memory, RAM), and may also include a non-volatile memory (Non-volatile Memory, NVM), such as at least one disk memory.

[0137] The bus may be an Industry Standard Architecture (ISA) bus, a Peripheral Component Interconnect (PCI) bus, or an Extended Industry Standard Architecture (EISA) bus, etc. The bus can be divided into an address bus, a data bus, a control bus, etc. For the convenience of representation, the bus in the drawings of this application is not limited to only one bus or one type of bus.

[0138] This application also provides a computer program product, including a computer program, which implements the above-mentioned method when executed by a processor.

[0139] The present application also provides a computer-readable storage medium storing computer-executable instructions, which, when executed by a processor, implement the above method.

[0140] The above-readable storage medium can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, a magnetic disk, or an optical disk. The readable storage medium can be any available medium accessible by a general-purpose or special-purpose computer.

[0141] An exemplary readable storage medium is coupled to the processor, enabling the processor to read information from and write information to the readable storage medium. Of course, the readable storage medium can also be part of the processor. The processor and the readable storage medium can be located in an application specific integrated circuit (ASIC). Of course, the processor and the readable storage medium can also exist as discrete components in a device.

[0142] The 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, direct coupling, or communication connection between each other can be an indirect coupling or communication connection through some interfaces, devices, or units, and can be in electrical, mechanical, or other forms.

[0143] The units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they can be located in one place or 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.

[0144] In addition, in each embodiment of the present invention, the functional units can be integrated in one processing unit, or each unit can exist physically alone, or two or more units can be integrated in one unit.

[0145] If a function 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 this understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art or a 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 several 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 the various embodiments of the present invention. The foregoing storage medium includes: USB flash drives, mobile hard disks, read-only memories (ROMs), random access memories (RAMs), magnetic disks, or optical discs, etc., all kinds of media that can store program codes.

[0146] Those of ordinary skill in the art can understand that all or part of the steps of implementing the above method embodiments can be completed by hardware related to program instructions. The foregoing program can be stored in a computer-readable storage medium. When this program is executed, it executes the steps including the above method embodiments; and the foregoing storage medium includes: ROMs, RAMs, magnetic disks, or optical discs, etc., all kinds of media that can store program codes.

[0147] Finally, it should be noted that: after considering the specification and practicing the invention disclosed herein, those skilled in the art will readily think of other implementation manners of the present invention. The present invention is intended to cover any variations, uses, or adaptations of the present invention, which follow the general principles of the present invention and include common general knowledge or conventional technical means in the technical field not disclosed in the present invention. It is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present invention is only limited by the appended claims.

Claims

1. A method for detecting seepage water based on a seepage water detection device, characterized in that The leakage water detection device includes a water collection structure and a water level measurement structure. The water level measurement structure includes a water level sensor, a conductive strip, and an electronic device. The method is applied to the electronic device and includes: During the water accumulation process when the actual water level of the leakage water reaches the preset dangerous warning water level, if it is detected by the water level sensor that the actual water level of the leakage water reaches the preset dangerous warning water level, the leakage water is discharged from the water collection structure; and a first warning signal is generated according to the emptied water collection structure and the conductive strip. During the water accumulation process, if it is detected by the water level sensor that the leakage speed of the leakage water is greater than or equal to the preset leakage threshold, a second warning signal is generated. The first warning signal and / or the second warning signal is sent to a preset monitoring device.

2. The method according to claim 1, wherein The water collection structure includes a first structure and a second structure, and the first structure is connected to the second structure. The first structure is a polyhedron with one open side, and the open side faces the gap where the leakage water occurs. The second structure is a cylinder. The water level measurement structure includes at least one water level sensor. The water level sensor is located inside the cylinder, and the height of the water level sensor inside is a custom height.

3. The method according to claim 1, characterized in that, The water level measurement structure includes at least one water level sensor. A first water level sensor is arranged at the preset dangerous warning water level. During the water accumulation process when the actual water level of the leakage water reaches the preset dangerous warning water level, if it is detected by the water level sensor that the actual water level of the leakage water reaches the preset dangerous warning water level, discharging the leakage water from the water collection structure includes: During the water accumulation process when the actual water level of the leakage water reaches the preset dangerous warning water level, if it is detected by the first water level sensor that the actual water level of the leakage water reaches the preset dangerous warning water level, the leakage water is discharged from the water collection structure.

4. The method according to claim 2, wherein The conductive strip includes an anode conductive strip and a cathode conductive strip. The water level measurement structure includes a power supply. The positive pole of the power supply is connected to the anode conductive strip, and the anode conductive strip is located inside the cylinder. The negative pole of the power supply is connected to the cathode conductive strip, and the cathode conductive strip is located inside the cylinder. Generating the first warning signal according to the emptied water collection structure and the conductive strip includes: Generating the first warning signal according to the emptied water collection structure, the anode conductive strip, and the cathode conductive strip.

5. The method according to claim 2, wherein The water level measurement structure includes a first water level sensor and a second water level sensor. The first water level sensor is located at the preset dangerous warning water level, and the second water level sensor is located at a preset distance below the dangerous warning water level. During the water accumulation process, if it is detected by the water level sensor that the leakage speed of the leakage water is greater than or equal to the preset leakage threshold, generating the second warning signal includes: During the water accumulation process, if it is detected by the second water level sensor that the actual water level of the seepage water reaches the preset distance, and it is detected by the first water level sensor that the actual water level of the seepage water reaches the dangerous warning water level, determine the time difference between the actual water level rising from the preset distance to the dangerous warning water level; Determine the water leakage speed according to the time difference, the first preset resistance value corresponding to the preset distance, and the second preset resistance value corresponding to the dangerous warning water level; If it is determined that the water leakage speed of the seepage water is greater than or equal to a preset water leakage threshold, generate a second warning signal.

6. The method according to claim 5, wherein If it is determined that the water leakage speed of the seepage water is greater than or equal to a preset water leakage threshold, generating a second warning signal includes: Compare the water leakage speed of the seepage water with a preset water leakage threshold; wherein, the water leakage threshold includes thresholds of multiple warning levels; If it is determined that the water leakage speed of the seepage water is greater than or equal to the threshold of any warning level, generate a second warning signal according to the warning level corresponding to the threshold that is greater than or equal to.

7. The method according to any one of claims 1-6, characterized in that The method further includes: Based on the first warning signal and / or the second warning signal, control a preset buzzer to give an alarm.

8. A leakage detection device based on a leakage detection device, characterized in that, The seepage water detection device includes a water collection structure and a water level measurement structure, and the water level measurement structure includes a water level sensor, a conductive bar, and an electronic device; the device includes: A drainage module, configured to drain the seepage water out of the water collection structure if it is detected by the water level sensor that the actual water level of the seepage water reaches the preset dangerous warning water level during the water accumulation process of the seepage water; A first generation module, configured to generate a first warning signal according to the emptied water collection structure and the conductive bar; A second generation module, configured to generate a second warning signal if it is detected by the water level sensor that the water leakage speed of the seepage water is greater than or equal to a preset water leakage threshold during the water accumulation process; A sending module, configured to send the first warning signal and / or the second warning signal to a preset monitoring device.

9. An electronic device, characterized in that, Including: A memory, a processor; The memory stores computer execution instructions; The processor executes the computer execution instructions stored in the memory, so that the processor executes the method according to any one of claims 1-7.

10. A computer-readable storage medium, characterized in that, Computer execution instructions are stored in the computer-readable storage medium, and when the computer execution instructions are executed by a processor, they are used to implement the method according to any one of claims 1-7.

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