Swimming pool water quality monitoring equipment

By designing swimming pool water quality monitoring equipment with water intake components and mobile components, the problem that existing equipment cannot cover different depths is solved, and efficient water quality monitoring and timely detection and correction of pollution problems are achieved.

CN222825530UActive Publication Date: 2025-05-02BEIJING KAILIER ENVIRONMENTAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421123988.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-22
Publication Date
2025-05-02
Estimated Expiration
2034-05-22

AI Technical Summary

Technical Problem

The existing swimming pool water quality monitoring equipment cannot cover different depths of the swimming pool, making it difficult to detect and correct local pollution problems in a timely manner, affecting the health and safety of swimmers.

Method used

A swimming pool water quality monitoring device is designed including a water intake assembly and a mobile assembly. The water intake assembly realizes water samples collected at different depths through a one-way pump and a water pump, while the moving assembly drives the main body of the sampling device through a servo motor and a turbine to cover different areas in the swimming pool.

Benefits of technology

The water quality at different depths in the swimming pool is carried out in segmented sampling and testing, which improves the efficiency of water quality sampling, can promptly detect and correct potential pollution problems, and ensure the health and safety of swimmers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses swimming pool water quality monitoring equipment which comprises a sampling device body and a water taking assembly, the top end of the water taking assembly is arranged in the sampling device body, the water taking assembly comprises a water suction pump, a communicating pipe, a connecting pipe, a one-way pump and a sampling opening, and the bottom of the water suction pump and the inner surface of the sampling device body are fixedly installed. The bottom end of the communicating pipe is fixedly mounted on the top of the water suction pump, the top of the connecting pipe is fixedly mounted on the middle part of the water suction pump, the top end of the connecting pipe is fixedly mounted on the inner surface of the sampling device main body, the outer surface of the one-way pump is fixedly mounted on the inner surface of the connecting pipe, and the side end of the sampling port is fixedly mounted on the middle part of the one-way pump; by arranging the water taking assembly, the one-way pump arranged on the outer surface of the connecting pipe can be started according to the depth position needing to be sampled, so that the aim of carrying out segmented sampling detection on water at different depth positions in the swimming pool is achieved through the four sets of sampling openings, repeated sampling operation is avoided, and the water quality sampling efficiency of the swimming pool is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of water quality monitoring equipment, and more specifically, to a swimming pool water quality monitoring equipment. Background Art

[0002] A swimming pool is a man-made water facility usually used for swimming, entertainment and sports. The water quality of a swimming pool may be affected by bacteria, viruses, chemicals and other pollutants, which may cause harm to the health of swimmers. By monitoring the water quality, potential pollution problems can be discovered and corrected in a timely manner to ensure the health and safety of swimmers.

[0003] Usually, in order to monitor the water quality of a swimming pool, it is necessary to first sample the water and then conduct testing. The most common way of sampling water is for staff to use a sampling bucket and put it into the swimming pool to collect water samples. However, when staff use the sampling bucket to sample water, they cannot reach different depths of the swimming pool. In order to monitor the water quality at different depths, sampling must be repeated many times, resulting in low efficiency in swimming pool water quality monitoring, and failure to promptly discover and correct potential pollution problems, affecting the health and safety of swimmers. Utility Model Content

[0004] In order to overcome the above-mentioned defects of the prior art, the utility model provides a swimming pool water quality monitoring device to solve the problem that water quality monitoring in the prior art cannot cover different areas in the swimming pool, so that when problems occur in local areas, potential pollution problems cannot be discovered and corrected in time, affecting the health and safety of swimmers.

[0005] In order to solve the above technical problems, the utility model provides the following technical solutions: a swimming pool water quality monitoring device, comprising

[0006] The sampling device body;

[0007] A water intake component, the top of which is arranged inside the main body of the sampling device, and the water intake component includes a water pump, a connecting pipe, a connecting pipe, a one-way pump, and a sampling port. The bottom of the water pump is fixedly installed on the inner surface of the main body of the sampling device, the bottom end of the connecting pipe is fixedly installed on the top of the water pump, the top of the connecting pipe is fixedly installed on the middle part of the water pump, the top of the connecting pipe is fixedly installed on the inner surface of the main body of the sampling device, the outer surface of the one-way pump is fixedly installed on the inner surface of the connecting pipe, and the side end of the sampling port is fixedly installed on the middle part of the one-way pump.

[0008] Among them, it also includes a sealing cover, a moving component, and a sample storage component. The side end of the sealing cover is movably installed on the side of the sampling device body, the top of the moving component is fixedly installed on the bottom of the sampling device body, and the bottom of the sample storage component is movably installed on the inner surface of the sampling device body.

[0009] Among them, the moving component includes a floating board, a waterproof shell, a servo motor, and a turbine. The top of the floating board is fixedly installed on the bottom of the sampling device body, the outer surface of the waterproof shell is fixedly installed on the inner surface of the sampling device body, the outer surface of the servo motor is fixedly installed on the inner surface of the waterproof shell, and the middle part of the turbine is fixedly installed on the output end of the servo motor.

[0010] Among them, the sample storage assembly includes a placement rack, an electric telescopic rod, a sample storage tube, an axle column, a connecting strip, and a splash-proof cover. The bottom of the placement rack is movably installed on the inner surface of the sampling device body, the side end of the electric telescopic rod is fixedly installed on the inner surface of the sampling device body, the end of the electric telescopic rod is fixedly installed on the side of the placement rack, the sample storage tube is arranged in the middle of the placement rack, the bottom of the axle column is fixedly installed on the top of the placement rack, the end of the connecting strip is movably installed on the outer surface of the axle column, the bottom of the splash-proof cover is movably installed on the top of the sample storage tube, and the outer surface of the splash-proof cover is fixedly installed on the end of the connecting strip.

[0011] Among them, the water intake assembly also includes a nozzle, a protective tube, and a filter plate. The top of the nozzle is fixedly installed on the end of the connecting tube, the top of the protective tube is fixedly installed on the bottom of the sampling device body, and the outer surface of the filter plate is fixedly installed on the inner surface of the sampling port.

[0012] Compared with the prior art, the beneficial effects of the utility model are:

[0013] In the above scheme, by setting up a water intake component, the one-way pump arranged on the outer surface of the connecting pipe can be started according to the depth position where sampling is required, so that the water at this depth enters the inside of the connecting pipe along the sampling port, and then the water pump is started to extract the water sample collected in the connecting pipe into the inside of the connecting pipe, and then flow into the nozzle along the inside of the connecting pipe, and pumped into the sample storage tube along the nozzle for collection. In this way, the purpose of segmented sampling and testing of water quality at different depths in the swimming pool is achieved through the connecting pipe and four groups of sampling ports, avoiding repeated sampling operations and improving the efficiency of sampling the water quality of the swimming pool.

[0014] In the above scheme, by setting a moving component, the servo motor inside the waterproof shell is started, and the turbine connected to the output end of the servo motor rotates, driving the sampling device body to move, so that the sampling device body is moved to the required water quality detection position in the swimming pool, and the staff can adjust the position of the sampling device body by controlling the rotation angle of the two sets of servo motors at the tail of the sampling device body, so that the sampling operation can cover different areas in the swimming pool, and problems can be discovered in time and measures can be taken to avoid local problems. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0016] Figure 2 It is a schematic diagram of the cross-sectional structure of the utility model;

[0017] Figure 3 This is a schematic diagram of the structure of the mobile component of the utility model;

[0018] Figure 4 This is a schematic diagram of the structure of the sample storage component of the utility model;

[0019] Figure 5 This is a schematic diagram of the structure of the water intake component of the utility model.

[0020] [Reference Signs]

[0021] 1. Sampling device body; 2. Sealing cover; 3. Moving assembly; 4. Sample storage assembly; 5. Water collection assembly; 30. Floating board; 31. Waterproof shell; 32. Servo motor; 33. Turbine; 40. Placement rack; 41. Electric telescopic rod; 42. Sample storage tube; 43. Shaft column; 44. Connecting strip; 45. Splash cover; 50. Water pump; 51. Connecting pipe; 52. Nozzle; 53. Protective tube; 54. Connecting pipe; 55. One-way pump; 56. Sampling port; 57. Filter plate. DETAILED DESCRIPTION

[0022] In order to make the technical problems to be solved, technical solutions and advantages of the present invention more clear, a detailed description will be given below in conjunction with the accompanying drawings and specific embodiments.

[0023] As attached Figure 1 To Attachment Figure 5 The present invention provides a swimming pool water quality monitoring device, comprising:

[0024] Sampling device body 1;

[0025] The water intake component 5, the top of the water intake component 5 is arranged inside the sampling device body 1, the water intake component 5 includes a water pump 50, a connecting pipe 51, a connecting pipe 54, a one-way pump 55, and a sampling port 56. The bottom of the water pump 50 is fixedly installed on the inner surface of the sampling device body 1, the bottom end of the connecting pipe 51 is fixedly installed on the top of the water pump 50, the top of the connecting pipe 54 is fixedly installed on the middle part of the water pump 50, the top of the connecting pipe 54 is fixedly installed on the inner surface of the sampling device body 1, the outer surface of the one-way pump 55 is fixedly installed on the inner surface of the connecting pipe 54, and the side end of the sampling port 56 is fixedly installed on the middle part of the one-way pump 55.

[0026] It also includes a sealing cover plate 2, a moving component 3, and a sample storage component 4. The side end of the sealing cover plate 2 is movably installed on the side of the sampling device body 1, the top of the moving component 3 is fixedly installed on the bottom of the sampling device body 1, and the bottom of the sample storage component 4 is movably installed on the inner surface of the sampling device body 1.

[0027] Among them, the moving component 3 includes a floating plate 30, a waterproof shell 31, a servo motor 32, and a turbine 33. The top of the floating plate 30 is fixedly installed with the bottom of the sampling device body 1, the outer surface of the waterproof shell 31 is fixedly installed with the inner surface of the sampling device body 1, the outer surface of the servo motor 32 is fixedly installed with the inner surface of the waterproof shell 31, and the middle part of the turbine 33 is fixedly installed with the output end of the servo motor 32.

[0028] The sample storage assembly 4 includes a placement rack 40, an electric telescopic rod 41, a sample storage tube 42, a shaft column 43, a connecting strip 44, and a splash cover 45. The bottom of the placement rack 40 is movably mounted on the inner surface of the sampling device body 1, the side end of the electric telescopic rod 41 is fixedly mounted on the inner surface of the sampling device body 1, the end of the electric telescopic rod 41 is fixedly mounted on the side of the placement rack 40, the sample storage tube 42 is arranged in the middle of the placement rack 40, the bottom of the shaft column 43 is fixedly mounted on the top of the placement rack 40, the end of the connecting strip 44 is movably mounted on the outer surface of the shaft column 43, the bottom of the splash cover 45 is movably mounted on the top of the sample storage tube 42, and the outer surface of the splash cover 45 is fixedly mounted on the end of the connecting strip 44;

[0029] By setting the electric telescopic rod 41, starting the electric telescopic rod 41, and driving the placement rack 40 to move through the extension and retraction of the electric telescopic rod 41, the sample storage tube 42 without water sample stored therein is moved to the bottom of the nozzle 52, and then the one-way pump 55 and the water pump 50 are controlled again to collect the water sample at this position, so that water samples from multiple places can be collected at one time, thereby improving the detection efficiency;

[0030] By setting up the splash-proof cover 45 , the splash-proof cover 45 can be rotated along the outer surface of the shaft column 43 through the connecting strip 44 , so that the splash-proof cover 45 is located above or away from the sample tube 42 , thereby reducing the situation where the sampling liquid splashes out from the sample tube 42 .

[0031] The water intake assembly 5 further includes a nozzle 52, a protection tube 53, and a filter plate 57. The top of the nozzle 52 is fixedly mounted to the end of the connecting tube 51, the top of the protection tube 53 is fixedly mounted to the bottom of the sampling device body 1, and the outer surface of the filter plate 57 is fixedly mounted to the inner surface of the sampling port 56.

[0032] By setting the filter plate 57, the filter plate 57 can prevent impurities such as gravel from entering the connecting pipe 54 during sampling, and entering the sample storage tube 42 along the connecting pipe 54 and the connecting pipe 51, thereby avoiding affecting the detection accuracy of the swimming pool water quality.

[0033] The working process of the utility model is as follows:

[0034] First, the staff puts the sampling device body 1 into the swimming pool, and then starts the servo motor 32 inside the waterproof shell 31, and the turbine 33 connected to the output end of the servo motor 32 rotates, driving the sampling device body 1 to move, so that the sampling device body 1 moves to the required water quality detection position in the swimming pool. Then, according to the depth position of the sampling required, the one-way pump 55 arranged on the outer surface of the connecting pipe 54 is started, so that the water body at this depth enters the connecting pipe 54 along the sampling port 56, and then the water pump 50 is started to extract the water sample collected in the connecting pipe 54 into the connecting pipe 51, and then the water sample flows into the nozzle 52 along the connecting pipe 51, and is pumped into the sample storage tube 42 along the nozzle 52 for collection;

[0035] After completing the water sample collection at one location, the staff can adjust the position of the sampling device body 1 by controlling the rotation angle of the two sets of servo motors 32 at the tail of the sampling device body 1, and then start the electric telescopic rod 41 to drive the placement rack 40 to move through the extension and retraction of the electric telescopic rod 41, so that the sample storage tube 42 without water sample stored inside is moved to the bottom of the nozzle 52, and then the one-way pump 55 and the water pump 50 are controlled again to collect the water sample at this position.

[0036] Finally, a few points should be explained: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, which may refer to mechanical connection or electrical connection, or internal communication between two components, or direct connection. "upper", "lower", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the object being described changes, the relative positional relationship may change;

[0037] Secondly: In the drawings of the embodiments disclosed in the present utility model, only the structures related to the embodiments disclosed in the present utility model are involved, and other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of the present utility model can be combined with each other;

[0038] Finally: 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 in the protection scope of the present utility model.

Claims

1. A swimming pool water quality monitoring device, characterized in that: include Sampling device body (1); A water intake component (5), wherein the top end of the water intake component (5) is arranged inside the sampling device body (1), and the water intake component (5) comprises a water pump (50), a connecting pipe (51), a connecting pipe (54), a one-way pump (55), and a sampling port (56); the bottom of the water pump (50) is fixedly mounted to the inner surface of the sampling device body (1), the bottom end of the connecting pipe (51) is fixedly mounted to the top of the water pump (50), the top of the connecting pipe (54) is fixedly mounted to the middle of the water pump (50), the top of the connecting pipe (54) is fixedly mounted to the inner surface of the sampling device body (1), the outer surface of the one-way pump (55) is fixedly mounted to the inner surface of the connecting pipe (54), and the side end of the sampling port (56) is fixedly mounted to the middle of the one-way pump (55).

2. A swimming pool water quality monitoring device according to claim 1, characterized in that: The device further comprises a sealing cover plate (2), a moving component (3), and a sample storage component (4), wherein the side end of the sealing cover plate (2) is movably mounted on the side of the sampling device body (1), the top of the moving component (3) is fixedly mounted on the bottom of the sampling device body (1), and the bottom of the sample storage component (4) is movably mounted on the inner surface of the sampling device body (1).

3. A swimming pool water quality monitoring device according to claim 2, characterized in that: The moving assembly (3) comprises a floating plate (30), a waterproof shell (31), a servo motor (32), and a turbine (33); the top of the floating plate (30) is fixedly mounted to the bottom of the sampling device body (1); the outer surface of the waterproof shell (31) is fixedly mounted to the inner surface of the sampling device body (1); the outer surface of the servo motor (32) is fixedly mounted to the inner surface of the waterproof shell (31); and the middle of the turbine (33) is fixedly mounted to the output end of the servo motor (32).

4. A swimming pool water quality monitoring device according to claim 2, characterized in that: The sample storage assembly (4) comprises a placement rack (40), an electric telescopic rod (41), a sample storage tube (42), a shaft column (43), a connecting strip (44), and a splash-proof cover (45). The bottom of the placement rack (40) is movably mounted on the inner surface of the sampling device body (1), the side end of the electric telescopic rod (41) is fixedly mounted on the inner surface of the sampling device body (1), the end of the electric telescopic rod (41) is fixedly mounted on the side of the placement rack (40), the sample storage tube (42) is arranged in the middle of the placement rack (40), the bottom of the shaft column (43) is fixedly mounted on the top of the placement rack (40), the end of the connecting strip (44) is movably mounted on the outer surface of the shaft column (43), the bottom of the splash-proof cover (45) is movably mounted on the top of the sample storage tube (42), and the outer surface of the splash-proof cover (45) is fixedly mounted on the end of the connecting strip (44).

5. A swimming pool water quality monitoring device according to claim 1, characterized in that: The water intake assembly (5) further comprises a nozzle (52), a protective tube (53), and a filter plate (57); the top of the nozzle (52) is fixedly mounted to the end of the connecting tube (51); the top of the protective tube (53) is fixedly mounted to the bottom of the sampling device body (1); and the outer surface of the filter plate (57) is fixedly mounted to the inner surface of the sampling port (56).