Real-time online monitoring device for intelligent water affairs

By using a detachable connector and a dual detection probe design, the problem of high difficulty in replacing the detection structure of existing smart water monitoring devices is solved, enabling efficient replacement of detection probes and efficient monitoring of the device.

CN224137284UActive Publication Date: 2026-04-17HENAN WATER ENVIRONMENT SURVEY & DESIGN CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENAN WATER ENVIRONMENT SURVEY & DESIGN CO LTD
Filing Date
2025-07-04
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

The existing smart water monitoring devices are difficult to replace due to the high difficulty in replacing their detection structures, resulting in low detection efficiency.

Method used

The design incorporates a detachable first connector and a first detection probe, allowing the detection probe to be detachably connected to the base pipe. Dual detection is achieved through a second detection element and a second detection probe, and water flow is controlled by a valve to facilitate probe replacement.

Benefits of technology

This improved the efficiency of probe replacement and device detection, prevented water leakage caused by probe replacement, and ensured the continuity and convenience of monitoring.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of water affair monitoring, and discloses an intelligent real-time online monitoring device for water affair, which comprises a first detection piece, the first detection piece comprises a water body conveying part, one side of the water body conveying part is fixedly connected with a first base pipe, the first base pipe is connected with a first connector in a screwing manner, and the first connector is connected with a second base pipe in a screwing manner; the first connector is fixedly connected with a first detection probe, the first detection probe is located in the first base tube, and one side of the first detection piece is fixedly connected with a second detection piece; through the arrangement of the first base tube, the first connector and the first detection probe, the first detection probe is detachably connected with the first base tube, when the first detection probe is damaged, the first detection probe can be detached for replacement only by rotating the first connector, and the first detection probe does not need to be replaced for a long time; the replacement difficulty of the first detection probe is reduced and the replacement efficiency of the first detection probe is improved.
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Description

Technical Field

[0001] This utility model relates to the field of water monitoring technology, and in particular to a real-time online monitoring device for smart water management. Background Technology

[0002] Smart water management, a product of the deep integration of IoT technology and traditional water systems, has become a key area in smart city construction. According to the Ministry of Housing and Urban-Rural Development's "2022 China Urban Construction Statistical Yearbook," the national urban public water supply coverage rate reached 98.12%. However, the emergency response needs for sudden water pollution incidents (such as the benzene leak in a chemical industrial park in 2023) further highlight the lag in traditional monitoring systems. Therefore, monitoring devices are needed to monitor the pipe network. While existing devices can perform monitoring, they have certain shortcomings. For example, Chinese patent CN 222353896 U discloses a real-time online monitoring system for smart water. This device monitors water bodies through detection probes installed in a detection chamber. Although the device can detect water bodies, the detection structure is fixed to the device. When the detection structure is damaged, it takes a considerable amount of time to replace it. Therefore, replacing the detection structure is difficult and inefficient, reducing the device's detection efficiency. Utility Model Content

[0003] This invention proposes a real-time online monitoring device for smart water management to solve the problem of low difficulty in replacing the detection structure of existing devices.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a real-time online monitoring device for smart water management, comprising a first detection component, the first detection component comprising a water conveying part that conveys water along a first preset path, a first base pipe fixedly connected to one side of the water conveying part, a detachable first connector screwed onto the first base pipe, a first detection probe fixedly connected to the first connector, and the first detection probe being located inside the first base pipe.

[0005] Preferably, a second detection element is fixedly connected to one side of the first detection element. A conveying channel for conveying water along a second preset path is formed on the second detection element. The inlet and outlet of the conveying channel are both connected to the water conveying part. A second base pipe is installed on the second detection element. A second connector is screwed onto the second base pipe. A second detection probe is fixedly connected to the second connector. The second detection probe is located inside the second base pipe.

[0006] Preferably, the water conveying section is equipped with two first valves, and the first base pipe is located between the two first valves. The two first valves are located between the inlet and outlet ends of the conveying channel. The second detection element is equipped with two second valves, which are located at the inlet and outlet ends of the conveying channel, respectively. The second base pipe is located between the two second valves.

[0007] Preferably, the water conveying section includes a water conveying main pipe, one end of which is fixedly connected to a water inlet head and the other end of which is fixedly connected to a water outlet head. The first valve and the first base pipe are both installed on the water conveying main pipe.

[0008] Preferably, the second detection element includes a first connecting pipe and a second connecting pipe. One end of both the first and second connecting pipes is fixedly connected to the main water supply pipe, and a water supply branch pipe is fixedly connected between the first and second connecting pipes. Two second valves are respectively installed on the first and second connecting pipes. A second base pipe is fixedly connected to the top of the water supply branch pipe. A second connector is screwed onto the second base pipe, and a second detection probe is fixedly connected to the second connector. The second detection probe is located inside the second base pipe.

[0009] Preferably, the inlet head is equipped with a removable filter screen.

[0010] The technical effects and advantages provided by this utility model in the above technical solution are as follows:

[0011] (1) By setting a first base tube, a first connector and a first detection probe, the first detection probe is detachably connected to the first base tube. When the first detection probe is damaged, the first detection probe can be removed and replaced simply by rotating the first connector. This eliminates the need to waste a long time replacing the first detection probe, reduces the difficulty of replacing the first detection probe, improves the efficiency of replacing the first detection probe, and improves the detection efficiency of the device.

[0012] (2) By setting a second detection element, a second base tube, a second connector and a second detection probe, when the first detection probe is damaged, the device can continue to detect water through the second detection probe, and when the second detection probe is damaged, the first detection probe can also continue to detect water, thereby improving the detection efficiency of the device without stopping the machine;

[0013] (3) By setting a first valve and a second valve, when the first detection probe or the second detection probe is damaged, the first valve or the second valve can be closed, so that when personnel replace the first detection probe or the second detection probe, the first base pipe or the second base pipe will not leak water, thus improving the convenience of replacing the first detection probe or the second detection probe. Attached Figure Description

[0014] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0015] Figure 1 This is one of the perspective views of this utility model;

[0016] Figure 2 This is a second perspective view of the present utility model;

[0017] Figure 3 This is the third perspective view of the present utility model;

[0018] In the diagram: 1. First detection component; 11. Main water supply pipe; 12. Inlet head; 13. Filter screen; 14. Outlet head; 15. First valve; 16. First base pipe; 17. First detection probe; 18. First connector; 2. Second detection component; 21. First connecting pipe; 22. Branch water supply pipe; 23. Second connecting pipe; 24. Second valve; 25. Second connector; 26. Second base pipe; 27. Second detection probe. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] This utility model provides, for example Figures 1-3 The smart water management real-time online monitoring device shown includes a first detection component 1. The first detection component 1 includes a water conveying part that conveys water along a first preset path. A first base pipe 16 is fixedly connected to one side of the water conveying part. A detachable first connector 18 is screwed onto the first base pipe 16. A first detection probe 17 is fixedly connected to the first connector 18. The first detection probe 17 is located inside the first base pipe 16.

[0021] When monitoring of the pipeline network is required, the first connector 18 is placed above the first base pipe 16, and the first detection probe 17 is inserted into the first base pipe 16. The first connector 18 is rotated to screw the first connector 18 into the first base pipe 16, thereby fixing the first detection probe 17 in the first base pipe 16. After the first detection probe 17 is installed, the water conveying pipe is connected to the inlet end of the water conveying section, and the water discharge pipe is connected to the outlet end of the water conveying section. When the water is conveyed into the water conveying section, the water is monitored through the first detection probe 17 to monitor indicators such as pH value, dissolved oxygen, conductivity, and temperature. When the first detection probe 17 is damaged, simply reverse the first connector 18 to rotate the first detection probe 17 until the first connector 18 is separated from the first base pipe 16, and the first detection probe 17 can be removed and replaced.

[0022] To ensure the device can continue monitoring the water even if the first detection probe 17 is damaged, such as... Figures 1-3 As shown, a second detection element 2 is fixedly connected to one side of the first detection element 1. A conveying channel for transporting water along a second preset path is formed on the second detection element 2. The inlet and outlet of the conveying channel are both connected to the water conveying part. A second base pipe 26 is installed on the second detection element 2. A second connector 25 is screwed onto the second base pipe 26. A second detection probe 27 is fixedly connected to the second connector 25. The second detection probe 27 is located inside the second base pipe 26.

[0023] In this embodiment, when the inlet end of the water conveying section of the water conveying pipeline is connected, the second connector 25 is placed above the second base pipe 26, and the second detection probe 27 is inserted into the interior of the second base pipe 26. The second connector 25 is rotated to screw the second connector 25 into the second base pipe 26, thereby fixing the second detection probe 27 in the second base pipe 26. After the second detection probe 17 is installed, when the water is conveyed into the water conveying section, the water will be simultaneously conveyed into the conveying channel. The water is monitored by the first detection probe 17 and the second detection probe 27, thereby monitoring indicators such as pH value, dissolved oxygen, conductivity, and temperature. If either the first detection probe 17 or the second detection probe 27 is damaged, monitoring can also be performed by the other detection probe. When the first detection probe 17 or the second detection probe 27 needs to be replaced, simply reverse the first connector 18 or the second connector 25 to remove the first detection probe 17 or the second detection probe 27 for replacement.

[0024] Furthermore, in this invention, to facilitate the replacement of the first detection probe 17 and the second detection probe 27, such as... Figure 3As shown, the water conveying section is equipped with two first valves 15, and the first base pipe 16 is located between the two first valves 15. The two first valves 15 are located between the inlet and outlet of the conveying channel. The second detection piece 2 is equipped with two second valves 24, and the two second valves 24 are located at the inlet and outlet of the conveying channel, respectively. The second base pipe 26 is located between the two second valves 24.

[0025] In this embodiment, when the first detection probe 17 needs to be replaced, both first valves 15 are closed and both second valves 24 are opened to prevent water from flowing into the first base pipe 16. The first connector 18 is then reversed to remove the first detection probe 17 for replacement. Furthermore, the first base pipe 16 will not leak water during the replacement of the first detection probe 17, improving the convenience of replacing the first detection probe 17. When the second detection probe 27 needs to be replaced, both first valves 15 are opened and both second valves 24 are closed to prevent water from flowing into the second base pipe 26. The second connector 25 is then reversed to remove the second detection probe 27 for replacement. Again, the second base pipe 26 will not leak water during the replacement of the second detection probe 27, improving the convenience of replacing the second detection probe 27.

[0026] Specifically, in one embodiment, regarding the aforementioned water transport section, such as Figure 3 As shown, the water conveying section includes a water conveying main pipe 11, with an inlet head 12 fixedly connected to one end and an outlet head 14 fixedly connected to the other end. The first valve 15 and the first base pipe 16 are both installed on the water conveying main pipe 11.

[0027] In this embodiment, the pipe for inputting water is connected to the inlet head 12, and the pipe for discharging water is connected to the outlet head 14. Water is input through the inlet head 12 and flows into the main water supply pipe 11, whereby the water can be monitored by the first detection probe 17.

[0028] Furthermore, in this utility model, regarding the aforementioned second detection element 2, as follows: Figures 1-3 As shown, the second detection component 2 includes a first connecting pipe 21 and a second connecting pipe 23. One end of the first connecting pipe 21 and the second connecting pipe 23 are fixedly connected to the main water supply pipe 11, and a water supply branch pipe 22 is fixedly connected between the first connecting pipe 21 and the second connecting pipe 23. Two second valves 24 are respectively installed on the first connecting pipe 21 and the second connecting pipe 23. A second base pipe 26 is fixedly connected to the top of the water supply branch pipe 22. A second connector 25 is screwed onto the second base pipe 26. A second detection probe 27 is fixedly connected to the second connector 25. The second detection probe 27 is located inside the second base pipe 26.

[0029] In this embodiment, when it is necessary to monitor the water body through the second detection probe 27, the two second valves 24 are opened and the two first valves 15 are closed. After the water body enters the main water supply pipe 11, the water body flows into the first connecting pipe 21. The water body is guided to the water supply branch pipe 22 through the first connecting pipe 21, and then the water body is monitored through the second detection probe 27. After the water body is delivered to the water supply branch pipe 22, it is discharged through the second connecting pipe 23, and then transported back to the main water supply pipe 11. Finally, it is discharged through the outlet head 14.

[0030] When the water is delivered to the inlet head 12, in order to filter the water, such as... Figure 1 and Figure 3 As shown, a removable filter screen 13 is installed inside the water inlet head 12.

[0031] In this embodiment, when water is input through the inlet head 12, it is filtered by the filter screen 13 to prevent large particles of impurities from clogging the device.

[0032] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A real-time online monitoring device for smart water affairs, comprising a first detection member (1), the first detection member (1) comprising a water body conveying part conveying a water body along a first preset path, characterized in that: A first base pipe (16) is fixedly connected to one side of the water transport section. A detachable first connector (18) is screwed onto the first base pipe (16). A first detection probe (17) is fixedly connected to the first connector (18). The first detection probe (17) is located inside the first base pipe (16).

2. The real-time online monitoring device for smart water affairs according to claim 1, characterized in that: A second detection element (2) is fixedly connected to one side of the first detection element (1). A conveying channel for transporting water along a second preset path is formed on the second detection element (2). The inlet and outlet ends of the conveying channel are both connected to the water conveying part. A second base pipe (26) is installed on the second detection element (2). A second connector (25) is screwed onto the second base pipe (26). A second detection probe (27) is fixedly connected to the second connector (25). The second detection probe (27) is located inside the second base pipe (26).

3. The real-time online monitoring device for smart water affairs according to claim 2, characterized in that: The water conveying section is provided with two first valves (15), and the first base pipe (16) is located between the two first valves (15). The two first valves (15) are located between the inlet and outlet of the conveying channel. The second detection piece (2) is equipped with two second valves (24), and the two second valves (24) are located at the inlet and outlet of the conveying channel, respectively. The second base pipe (26) is located between the two second valves (24).

4. The real-time online monitoring device for smart water affairs according to claim 3, characterized in that: The water transport section includes a water conveying main pipe (11), one end of which is fixedly connected to an inlet head (12) and the other end is fixedly connected to an outlet head (14). The first valve (15) and the first base pipe (16) are both installed on the water conveying main pipe (11).

5. The real-time online monitoring device for smart water affairs according to claim 4, characterized in that: The second detection component (2) includes a first connecting pipe (21) and a second connecting pipe (23). One end of the first connecting pipe (21) and the second connecting pipe (23) are fixedly connected to the main water supply pipe (11), and a water supply branch pipe (22) is fixedly connected between the first connecting pipe (21) and the second connecting pipe (23). Two second valves (24) are respectively installed on the first connecting pipe (21) and the second connecting pipe (23). A second base pipe (26) is fixedly connected to the top of the water supply branch pipe (22). A second connector (25) is screwed onto the second base pipe (26). A second detection probe (27) is fixedly connected to the second connector (25). The second detection probe (27) is located inside the second base pipe (26). 6.The real-time online monitoring device for smart water affairs according to claim 4 or 5, characterized in that: The inlet head (12) is equipped with a removable filter screen (13).

Citation Information

Patent Citations

  • Intelligent water service real-time online monitoring system

    CN222353896U