Sluice pump station monitoring system
By setting up a water level detection module and a control module on the drain gate of the sluice pump station, the automatic control gate opening and closing is solved, and the safety hazards caused by traditional manual monitoring is improved, and the operation safety of the sluice pump station is improved.
Patent Information
- Application Number
- CN202421163740.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-27
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-05-27
AI Technical Summary
Traditional sluice pump stations rely on manual monitoring, resulting in untimely adjustment of the gates, which poses safety hazards.
A sluice pump station monitoring system is designed, by setting the first and second water level detection modules on the drain gate, combined with the first control module, the opening and closing of the drain gate is automatically controlled, and automatic adjustment is made according to the water level data and preset thresholds.
It realizes automatic adjustment and real-time monitoring of water flow, reduces the occurrence of safety hazards, and improves the operational safety of the sluice pump station.
Smart Images

Figure CN222838365U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of water conservancy informationization, and in particular to a sluice pump station monitoring system. Background Art
[0002] With the rapid improvement of my country's scientific and technological level and comprehensive national strength, water resources have shown an increasingly important position in the national economic construction. my country has also increased its investment in water conservancy project construction. The rational and full use of water resources has become increasingly important. Sluice pump stations are an indispensable and important part of the mobilization of water resources.
[0003] As an important part of urban drainage, sluice pump stations can reduce the possibility of urban waterlogging. Traditional sluice pump stations are generally monitored manually, and then the closing and opening of the gates are adjusted according to the water level. However, the manual method may cause the gates to be adjusted untimely, leading to safety hazards. Utility Model Content
[0004] In order to reduce the occurrence of potential safety hazards, the present application provides a sluice pump station monitoring system.
[0005] The present application provides a sluice pump station monitoring system that adopts the following technical solutions:
[0006] A sluice pump station monitoring system includes multiple drainage gates, each of which is provided with a first gate opening and closing machine for controlling the opening and closing of the drainage gate, a first water level detection module is provided upstream of the drainage gate, and a second water level detection module is provided downstream of the drainage gate, the first gate opening and closing machine is electrically connected to a first control module, and the first control module is electrically connected to the first water level detection module and the second water level detection module.
[0007] By adopting the above technical solution, the first control module can collect the upstream and downstream water level data in real time by the first water level detection module and the second water level detection module. A water level threshold is preset in the first control module. The first control module automatically controls the opening and closing operation of the drainage gate by the first opening and closing machine according to the upstream and downstream water level data and the water level threshold, thereby realizing automatic regulation of the water flow, real-time monitoring and automatic control, and reducing the occurrence of safety hazards.
[0008] Optionally, a drainage pump is provided on the drainage gate, and the drainage pump is electrically connected to the first control module.
[0009] By adopting the above technical solution, when the first water level data is less than the second water level threshold and the first water level data is greater than the second water level data, the first control module controls the drainage pump to start and pump the upstream water to the downstream, thereby effectively draining water and reducing the occurrence of safety hazards.
[0010] Optionally, the sluice pump station monitoring system also includes a sewage gate, which is provided with a second hoist for controlling the opening and closing of the sewage gate, the second hoist is electrically connected to the first control module, and the first control module is also electrically connected to a water quality detection module.
[0011] By adopting the above technical solution, the water quality detection module can detect the pollutant content in the water flow in real time. Once the water quality exceeds the standard, the first control module controls the second gate to open the sewage gate to introduce the sewage into a special sewage treatment system or discharge channel to avoid pollution to the main water flow.
[0012] Optionally, the sluice pump station monitoring system also includes a monitoring room, in which a display module is provided, the display module is electrically connected to a second control module, the first control module is connected to a first communication module, the second control module is electrically connected to a second communication module, and the first communication module and the second communication module are wirelessly connected.
[0013] By adopting the above technical solution, the second control module can receive the water level data and water quality data from the first control module in real time, and control the display module to display, so that the staff can monitor the operation of the sluice pump station in real time in the monitoring room.
[0014] Optionally, the monitoring room is further provided with an identity recognition module, and the identity recognition module is electrically connected to the second control module.
[0015] By adopting the above technical solution, only authorized personnel can enter the monitoring room through the identity recognition module, reducing the possibility of unauthorized personnel entering the monitoring room and improving security.
[0016] Optionally, a camera is provided at the drainage gate, and the camera is electrically connected to the first control module.
[0017] By adopting the above technical solution, the operating status, opening and closing status and surrounding environment of the gate can be monitored in real time through the camera.
[0018] Optionally, the monitoring room is further provided with a first alarm module for alarming when water quality exceeds a standard, and the first alarm module is electrically connected to the second control module.
[0019] By adopting the above technical solution, when the water quality data exceeds the standard, the first alarm module can quickly send out an alarm message, so that the staff can quickly understand the abnormal water quality and take corresponding countermeasures immediately.
[0020] Optionally, a distance detection module is provided directly above the drainage gate, the distance detection module is electrically connected to the first control module, the second control module is also electrically connected to a second alarm module, and the second alarm module is installed in a monitoring room.
[0021] By adopting the above technical solution, when the first control module controls the drainage gate and the sewage gate to be opened or closed through the first hoist and the second hoist, and the distance data does not change, the second control module controls the second alarm module to sound an alarm.
[0022] In summary, the present application includes at least one of the following beneficial technical effects:
[0023] 1. The first control module can automatically control the first gate opening and closing machine to open and close the drainage gate according to the upstream and downstream water level data collected in real time by the first water level detection module and the second water level detection module. A water level threshold is preset in the first control module. The first control module automatically controls the first gate opening and closing machine to open and close the drainage gate according to the upstream and downstream water level data and the water level threshold, thereby realizing automatic adjustment of the water flow, real-time monitoring and automatic control, and thus reducing the possibility of safety hazards;
[0024] 2. The second control module can receive the water level data and water quality data from the first control module in real time, and control the display module to display, so that the staff can monitor the operation of the sluice pump station in real time in the monitoring room;
[0025] 3. When the first control module controls the drainage gate and the sewage gate to open or close through the first hoist and the second hoist, and the distance data does not change, the second control module controls the second alarm module to sound an alarm. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a structural block diagram of a sluice pump station monitoring system in an embodiment of the present application.
[0027] Explanation of the accompanying drawings: 1. First gate hoist; 11. First control module; 12. First water level detection module; 13. Second water level detection module; 14. Drain pump; 15. Water quality detection module; 16. Second gate hoist; 17. First communication module; 18. Camera; 19. Distance detection module; 2. Identity recognition module; 21. Second control module; 22. Display module; 23. Second communication module; 24. First alarm module; 25. Second alarm module. DETAILED DESCRIPTION
[0028] The following is combined with Figure 1 This application is described in further detail.
[0029] The present application embodiment discloses a sluice pump station monitoring system. Figure 1The sluice pump station monitoring system includes a drainage gate (not shown in the figure), and a first gate hoist 1 for controlling the opening and closing of the drainage gate is arranged on the drainage gate, wherein the first gate hoist 1 is an electric gate hoist, and the first gate hoist 1 is electrically connected to a first control module 11, and the first control module 11 is electrically connected to a first water level detection module 12 and a second water level detection module 13, the first water level detection module 12 is arranged on the upstream side, that is, close to the city side, and the second water level detection module 13 is arranged on the upstream side, that is, close to the river side, wherein the upstream may be a fishing boat road, and the downstream may be a river, a sea, etc.
[0030] The first water level detection module 12 detects the first water level data of the upstream in real time, and sends the first water level data to the first control module 11. The second water level detection module 13 detects the second water level data of the upstream in real time, and sends the second water level data to the first control module 11. The first control module 11 receives the first water level data and the second water level data. The first water level threshold and the second water level threshold are preset in the first control module 11. When the first water level data is greater than the first water level threshold and the first water level data is greater than the second water level data, the first control module 11 controls the first gate hoist 1 to open, so that the water in the upstream is discharged to the downstream; when the first water level data is less than the second water level threshold and the first water level data is less than the second water level data, the first control module 11 controls the first gate hoist 1 to open, so that the water in the downstream enters the upstream, wherein the first water level threshold is greater than the second water level threshold.
[0031] A drainage pump 14 is provided on each drainage gate, and the drainage pump 14 is electrically connected to the first control module 11. When the first water level data is greater than the water level threshold and the first water level data is less than the second water level data, the first control module 11 controls the drainage pump 14 to start and pump the upstream water to the downstream; when the first water level data is less than the second water level threshold and the first water level data is greater than the second water level data, the first control module 11 controls the drainage pump 14 to start and pump the downstream water to the upstream.
[0032] A plurality of water quality detection modules 15 are arranged on both sides of the drainage gate, and the water quality detection modules 15 are electrically connected to the first control module 11. The water quality detection modules 15 are used to detect water quality data of the upstream and downstream. The sluice pump station monitoring system also includes a sewage gate, and the sewage valve is connected to a sewage treatment pipeline. A second gate hoist 16 for controlling the opening and closing of the sewage gate is arranged on the sewage gate. The water quality detection module 15 detects water quality data in real time and sends the water quality detection data to the first control module 11. The first control module 11 compares the water quality data with the water quality data threshold. When the water quality data is less than the water quality data threshold, the first control module 11 will control the second gate hoist 16 to start, so that the drainage gate is opened. When the water quality data is greater than the water quality data threshold, the first control module 11 controls the second gate hoist 16 to start so that the water in the upstream flows into the sewage treatment pipeline.
[0033] The sluice pump station monitoring system also includes a monitoring room (not shown in the figure), in which an identity recognition module 2 is provided. The identity recognition module 2 is used to open the access control system to enter the monitoring room. The identity recognition module 2 is electrically connected to a second control module 21. When the second control module 21 receives the verification information of the identity recognition module 2, the second control module 21 controls the access control system to open.
[0034] A display module 22 is also provided in the monitoring room. The display module 22 is electrically connected to the second control module 21, the second control module 21 is electrically connected to the second communication module 23, the first control module 11 is electrically connected to the first communication module 17, the first communication module 17 and the second communication module 23 are wirelessly connected, the first control module 11 sends the first water level data, the second water level data and the water quality detection data to the second control module 21 through the first communication module 17 and the second communication module 23, and the second control module 21 controls the display module 22 to display the first water level data, the second water level data and the water quality detection data.
[0035] A first alarm module 24 is also provided in the control room. The first alarm module 24 is electrically connected to the second control module 21. When the water quality data is greater than the water quality data threshold, the first control module 11 controls the first alarm module 24 to sound an alarm so that the staff can handle it in time.
[0036] A camera 18 is also provided at the drainage gate, and the camera 18 is used to capture video information at the drainage gate. The camera 18 sends the video information to the first control module 11, and the first control module 11 sends the video information to the second control module 21 through the first communication module 17 and the second communication module 23. The second control module 21 controls the display module 22 to display the video information.
[0037] A distance detection module 19 is provided above the drainage gate and the sewage gate. The distance detection module 19 is used to detect the rising height of the drainage gate and the sewage gate. The distance detection module 19 is electrically connected to the first control module 11. A second alarm module 25 is provided in the control room. The second alarm module 25 is electrically connected to the second control module 21. The distance detection module 19 sends the distance data to the first control module 11 in real time. When the first control module 11 controls the drainage gate and the sewage gate to be opened or closed through the first hoist 1 and the second hoist 16 and the distance data does not change, the first control module 11 sends control information to the second control module 21 through the first communication module 17 and the second communication module 23, so that the second control module 21 controls the second alarm module 25 to sound an alarm to remind the staff to perform maintenance in time.
[0038] Among them, the first control module 11 and the second control module 21 can be PLC controllers, the first water level detection module 12 and the second water level detection module 13 can be water level sensors, the water quality detection module 15 can be a pH meter with model BSK-PH-100, the identity recognition module 2 can be a FR1002 face recognition module, the display module 22 can be a liquid crystal display, the first communication module 17 and the second communication module 23 can be GPRS wireless communication modules, the distance detection module 19 can be an infrared laser rangefinder, and the first alarm module 24 and the second alarm module 25 can be sound and light alarms.
[0039] The implementation principle of a sluice pump station monitoring system in the embodiment of the present application is:
[0040] When the first water level data is greater than the first water level threshold and the first water level data is greater than the second water level data and the water quality data is less than the water quality data threshold, the first control module 11 controls the first gate opener 1 to open so that the upstream water is discharged into the downstream; when the first water level data is less than the second water level threshold and the first water level data is less than the second water level data and the water quality data is less than the water quality data threshold, the first control module 11 controls the first gate opener 1 to open so that the downstream water enters the upstream.
[0041] When the first water level data is less than the second water level threshold and the first water level data is greater than the second water level data and the water quality data is less than the water quality data threshold, the first control module 11 controls the drainage pump 14 to start and pump the upstream water to the downstream; when the first water level data is less than the second water level threshold and the first water level data is greater than the second water level data and the water quality data is less than the water quality data threshold, the first control module 11 controls the drainage pump 14 to start and pump the downstream water to the upstream.
[0042] When the second control module 21 receives the first water level data, the second water level data, the water quality data and the video data, the second control module 21 controls the display module 22 to display the first water level data, the second water level data, the water quality data and the video data.
[0043] When the water quality data is greater than the water quality data threshold, the second control module 21 controls the first alarm module 24 to sound an alarm. When the first control module 11 controls the drainage gate and the sewage gate to open or close through the first hoist 1 and the second hoist 16, and the distance data does not change, the second control module 21 controls the second alarm module 25 to sound an alarm.
[0044] When the second control module 21 receives the verification signal from the identity recognition module 2 and it is confirmed that the verification signal is passed, the second control module 21 controls the access control system to start.
[0045] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. A sluice pump station monitoring system, characterized in that: The invention comprises a plurality of drainage gates, each of which is provided with a first gate hoist (1) for controlling the opening and closing of the drainage gate, a first water level detection module (12) is provided upstream of the drainage gate, and a second water level detection module (13) is provided downstream of the drainage gate, the first gate hoist (1) is electrically connected to a first control module (11), and the first control module (11) is electrically connected to the first water level detection module (12) and the second water level detection module (13); The system also comprises a monitoring room, wherein a display module (22) is arranged in the monitoring room, wherein the display module (22) is electrically connected to a second control module (21), wherein the first control module (11) is connected to a first communication module (17), wherein the second control module (21) is electrically connected to a second communication module (23), and wherein the first communication module (17) and the second communication module (23) are wirelessly connected.
2. A sluice pump station monitoring system according to claim 1, characterized in that: A drainage pump (14) is provided on the drainage gate, and the drainage pump (14) is electrically connected to the first control module (11).
3. A sluice pump station monitoring system according to claim 2, characterized in that: The sluice pump station monitoring system also includes a sewage gate, on which a second hoist (16) for controlling the opening and closing of the sewage gate is provided, the second hoist (16) being electrically connected to the first control module (11), and the first control module (11) being further electrically connected to a water quality detection module (15).
4. A sluice pump station monitoring system according to claim 1, characterized in that: The monitoring room is also provided with an identity recognition module (2), and the identity recognition module (2) is electrically connected to the second control module (21).
5. A sluice pump station monitoring system according to claim 4, characterized in that: A camera (18) is provided at the drainage gate, and the camera (18) is electrically connected to the first control module (11).
6. A sluice pump station monitoring system according to claim 1, characterized in that: The monitoring room is also provided with a first alarm module (24) for alarming when water quality exceeds the standard, and the first alarm module (24) is electrically connected to the second control module (21).
7. A sluice pump station monitoring system according to claim 1, characterized in that: A distance detection module (19) is arranged directly above the drainage gate, the distance detection module (19) is electrically connected to the first control module (11), the second control module (21) is also electrically connected to a second alarm module (25), and the second alarm module (25) is installed in a monitoring room.