Water quality monitor capable of preventing water and grass from shielding

By designing a water quality monitor for floating body components and isolated floating body ring components, the problem of water quality monitor blocking in lake waters due to adhesion of water plants and other aspects is solved, and effective water quality monitoring of specific water areas is achieved.

CN222926722UActive Publication Date: 2025-05-30ECOLOGICAL ENVIRONMENT MONITORING & SCI RES CENT OF THE TAIHU BASIN & EAST CHINA SEA ECOLOGICAL ENVIRONMENT SUPERVISION & ADMINISTRATION BUREAU OF THE MINISTRY OF ECOLOGY & ENVIRONMENT
View PDF 0 Cites 1 Cited by

Patent Information

Application Number
CN202421426801.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-20
Publication Date
2025-05-30
Estimated Expiration
2034-06-20

AI Technical Summary

Technical Problem

When existing water quality monitors are used in lake waters, the shading effect is affected due to the adhesion of aquatic plants and other plants, especially when seaweed vegetation is attached to the probe head in the depths of the water, making it difficult to conduct effective monitoring.

Method used

A water quality monitor including a floating body assembly and a floating body fixing rope is designed. The floating body assembly increases buoyancy and protection through the isolation floating body ring assembly and the underwater isolation net, and isolates the floating body ring assembly and the underwater isolation net to block foreign objects on the water surface and water depth, and protects the monitoring probe.

Benefits of technology

Effectively prevent foreign objects such as aquatic plants and seaweed from adhering to the monitoring probe, ensuring that the monitoring probe can conduct normal water quality monitoring and achieve effective monitoring of specific water areas.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222926722U_ABST
    Figure CN222926722U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of water quality monitors, in particular to a water quality monitor capable of preventing water and grass shielding, which comprises a floating body component and a floating body fixing rope, the top end of the floating body component is in threaded connection with a fixing support, an electric cabinet component is fixedly mounted at the top end of the fixing support, and a solar panel is movably mounted at the front end of the electric cabinet component. The floating body fixing rope is fixedly installed on the outer surface of the periphery of the floating body assembly, and the periphery of the floating body assembly is connected with the isolation floating body ring assembly in a floating mode. The beneficial effects are that the floating body assembly increases the buoyancy of the floating body assembly through the isolation floating body ring assembly, the isolation floating body ring assembly can protect the periphery of the floating body assembly to isolate floating foreign matters, and the underwater isolation net and the sinking block ring can isolate the outside of the monitoring probe and the plug wire, so that the safety of the monitoring probe is improved. The underwater isolation net and the sinking block ring are used for blocking water-area underwater foreign matters such as algae, so that the water-area foreign matters are prevented from directly contacting the monitoring probe, and normal water quality monitoring by the monitoring probe is facilitated.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of water quality monitors, in particular to a water quality monitor that can prevent waterweeds from blocking. Background Technique

[0002] Water quality monitoring instruments are mainly applied to the water quality monitoring market, so they are mainly affected by the development of the water quality monitoring market. Water quality monitoring is the process of monitoring and measuring the types of pollutants in water bodies, the concentrations of various pollutants and their changing trends, and evaluating the water quality status. The main monitoring items can be divided into two categories: one is the comprehensive indicators reflecting the water quality status, such as temperature, chromaticity, turbidity, pH value, conductivity, suspended solids, dissolved oxygen, chemical oxygen demand and biochemical oxygen demand, etc.; the other is some toxic substances, such as phenol, cyanide, arsenic, lead, chromium, cadmium, mercury and organic pesticides, etc.

[0003] However, when the current water quality monitor is placed in lake waters for use, a large number of aquatic plants and the like often adhere to its surroundings, causing the water quality monitor to be blocked and affecting its monitoring effect. When the water quality monitor sinks to the deep water, a large number of seaweed plants adhere to the detection head, making it difficult to effectively monitor a specific water area. Content of the Utility Model

[0004] The purpose of the utility model is to provide a water quality monitor that can prevent waterweeds from blocking, so as to solve the problems raised in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solutions, including a floating body assembly and a floating body fixing rope. The top of the floating body assembly is threadedly connected with a fixing bracket. The top of the fixing bracket is fixedly installed with an electric control box assembly, and a solar panel is movably installed at the front end of the electric control box assembly. The floating body fixing rope is fixedly installed on the outer surface around the floating body assembly, and an isolation floating body ring assembly is floatingly connected around the floating body assembly. An underwater isolation net is installed below the isolation floating body ring assembly, and a sinking block ring is fixedly connected to the bottom end of the underwater isolation net.

[0006] Preferably, the isolation floating body ring assembly includes a plug wire and a monitoring probe. The monitoring probe is fixedly connected below the plug wire, and the plug wire and the monitoring probe sink inside the underwater isolation net and the sinking block ring.

[0007] Preferably, the monitoring probe is fixedly connected to the floating body assembly through the plug wire, and the plug wire passes through the floating body assembly and is installed on the electric control box assembly.

[0008] Preferably, the floating body assembly includes a reinforcement bolt hole and a floating net connection ring. Reinforcement bolt holes are formed around the floating net connection ring, and the reinforcement bolt holes are fastened with bolts to the isolation floating body ring assembly.

[0009] Preferably, an underwater isolation net is fixedly installed at the connection below the reinforcement bolt hole and the floating net connection ring, and the underwater isolation net is isolated and protected outside the monitoring probe.

[0010] Preferably, the electric control box assembly includes a guide rail, a protective hidden box and a connection end. Guide rails are movably installed on both sides of the protective hidden box, and the protective hidden box is slidably installed inside the electric control box assembly through the guide rails.

[0011] Preferably, a connection end is movably installed inside the protective hidden box, and the connection end is connected to the plug wire.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows;

[0013] 1. Through the underwater isolation net provided in the present utility model, the floating body assembly passes through the isolation floating body ring assembly to increase the buoyancy of the floating body assembly. At the same time, the isolation floating body ring assembly can protect the periphery of the floating body assembly to isolate floating foreign objects. The underwater isolation net and the sinking block ring can isolate outside the monitoring probe and the plug wire. By blocking underwater foreign objects such as seaweed in the water area with the underwater isolation net and the sinking block ring, it is possible to prevent water area foreign objects from directly contacting the monitoring probe, which is beneficial for the monitoring probe to perform normal water quality monitoring.

[0014] 2. Through the isolation floating body ring assembly provided in the present utility model, it is fixedly connected to the periphery of the floating body assembly through the floating body fixing rope. The floating net connection ring and the isolation floating body ring assembly can block foreign objects on the lake surface, preventing foreign objects such as water plants from floating close to the water quality monitor. When the water quality monitor sinks to the deep water area, the underwater isolation net blocks a large amount of seaweed vegetation from attaching to the monitoring probe, and the monitoring probe can effectively monitor the water quality at a specific depth in the water area. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;

[0016] Figure 2 is a side view structural schematic diagram of the energy-saving control cabinet of the present utility model;

[0017] Figure 3 is the present utility model Figure 1 enlarged structural schematic diagram at A in.

[0018] In the figure: 1, floating body assembly; 2, fixed bracket; 3, solar panel; 4, electric control box assembly; 5, floating body fixing rope; 6, isolation floating body ring assembly; 7, underwater isolation net; 8, plug wire; 9, monitoring probe; 10, sinking block ring; 11, reinforcement bolt hole; 12, floating net connection ring; 13, guide rail; 14, protective hidden box; 15, connection end. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0019] In order to clearly and completely describe the purpose and technical solutions of the present utility model, and make the advantages more clearly understood, the following further details the embodiments of the present utility model with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are part of the embodiments of the present utility model, rather than all of the embodiments, and are only used to explain the embodiments of the present utility model, not to limit the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present utility model.

[0020] Embodiment 1

[0021] Please refer to Figures 1 - 3, the present utility model provides a technical solution, including a floating body assembly 1 and a floating body fixing rope 5. The top of the floating body assembly 1 is threadedly connected with a fixing bracket 2. The top of the fixing bracket 2 is fixedly installed with an electric control box assembly 4. And a solar panel 3 is movably installed at the front end of the electric control box assembly 4. The floating body fixing rope 5 is fixedly installed on the outer surface around the floating body assembly 1. And isolation floating ring assemblies 6 are floatingly connected around the floating body assembly 1. And an underwater isolation net 7 is installed below the isolation floating ring assemblies 6. The bottom end of the underwater isolation net 7 is fixedly connected with a sinking block ring 10. The electric control box assembly 4 is threadedly fixed on the floating body assembly 1 through the fixing bracket 2. The electric control box assembly 4 is placed on the monitoring lake water surface through the floating body assembly 1. So that the floating body fixing rope 5 is fixedly connected around the floating body assembly 1. The floating body assembly 1 increases the buoyancy through the isolation floating ring assemblies 6. At the same time, the isolation floating ring assemblies 6 can protect around the floating body assembly 1 to isolate floating foreign matters. The underwater isolation net 7 can be fixed below the isolation floating ring assemblies 6 to isolate foreign matters at the water depth. The solar panel 3 can be installed at the front end of the electric control box assembly 4. The solar panel 3 uses a polycrystalline solar charging panel with an aluminum alloy frame, having strong high-strength anti-mechanical impact ability. The isolation floating ring assemblies 6 include plug wires 8 and monitoring probes 9. And the monitoring probe 9 is fixedly connected below the plug wire 8. And the plug wire 8 and the monitoring probe 9 sink inside the underwater isolation net 7 and the sinking block ring 10. The plug wire 8 is fixedly connected to the monitoring probe 9. The monitoring probe 9 is installed inside the electric control box assembly 4 through the plug wire 8. When the underwater isolation net 7 can be fixed below the isolation floating ring assemblies 6, the underwater isolation net 7 sinks to the deep water through the sinking block ring 10. The underwater isolation net 7 and the sinking block ring 10 can isolate outside the monitoring probe 9 and the plug wire 8. Block underwater foreign matters such as seaweed in the water area through the underwater isolation net 7 and the sinking block ring 10, avoiding direct contact between the water area foreign matters and the monitoring probe 9, which is beneficial for the monitoring probe 9 to perform normal water quality monitoring. The monitoring probe 9 is fixedly connected to the floating body assembly 1 through the plug wire 8. And the plug wire 8 passes through the floating body assembly 1 and is installed on the electric control box assembly 4. When the monitoring probe 9 is installed inside the electric control box assembly 4 through the plug wire 8, the plug wire 8 passes through the inside of the floating body assembly 1 and is installed on the electric control box assembly 4. The electric control box in the electric control box assembly 4 uses ABS raw material, a waterproof outer box, which can prevent ordinary collisions. An internal data acquisition controller, battery pack protection, etc. can be installed inside it.

[0022] Embodiment Two

[0023] Such as Figure 1 、 Figure 2 And Figure 3As shown in the figure, the floating body assembly 1 includes reinforcement bolt holes 11 and floating net connection rings 12. Reinforcement bolt holes 11 are provided around the floating net connection rings 12, and the reinforcement bolt holes 11 are fastened to the isolation floating body ring assembly 6 with bolts. The reinforcement bolt holes 11 on the floating net connection rings 12 are fastened to the isolation floating body ring assembly 6 with bolts. The floating net connection rings 12 and the isolation floating body ring assembly 6 are fixedly connected to the periphery of the floating body assembly 1 through the floating body fixing ropes 5. The floating net connection rings 12 and the isolation floating body ring assembly 6 can block foreign objects on the lake surface, preventing foreign objects and aquatic plants from floating close to the water quality monitor. An underwater isolation net 7 is fixedly installed at the connection between the reinforcement bolt holes 11 and the lower part of the floating net connection rings 12, and the underwater isolation net 7 is isolated and protected outside the monitoring probe 9. The underwater isolation net 7 is threadedly fastened to the reinforcement bolt holes 11 and the floating net connection rings 12. The underwater isolation net 7 can surround the monitoring probe 9 to prevent underwater aquatic plants from approaching and blocking the periphery of the monitoring probe 9. The electric control box assembly 4 includes guide rails 13, a protective hidden box 14, and connection ends 15. Guide rails 13 are movably installed on both sides of the protective hidden box 14, and the protective hidden box 14 is slidably installed inside the electric control box assembly 4 through the guide rails 13. The guide rails 13 are movably installed on both sides of the protective hidden box 14, and the protective hidden box 14 is slidably installed inside the electric control box assembly 4 through the guide rails 13. The connection ends 15 on the protective hidden box 14 are slidably installed inside the electric control box assembly 4 through the guide rails 13 for waterproof isolation. A connection end 15 is movably installed inside the protective hidden box 14, and the connection end 15 is connected to the plug wire 8. When the connection end 15 on the protective hidden box 14 is slidably installed inside the electric control box assembly 4 through the guide rails 13, the plug wire 8 can be fixedly connected to the connection end 15. The plug wire 8 can pass through the floating body assembly 1 and the fixed bracket 2 for protective isolation.

[0024] During actual use, the floating body assembly 1 increases the buoyancy of the floating body assembly 1 through the isolation floating body ring assembly 6. At the same time, the isolation floating body ring assembly 6 can protect the periphery of the floating body assembly 1 for floating foreign object isolation. The underwater isolation net 7 can be fixed below the isolation floating body ring assembly 6 for deep-water foreign object isolation. The solar panel 3 can be installed at the front end of the electric control box assembly 4. When the underwater isolation net 7 can be fixed below the isolation floating body ring assembly 6, the underwater isolation net 7 sinks to the deep water through the sinking block ring 10. The underwater isolation net 7 and the sinking block ring 10 can isolate the monitoring probe 9 and the plug wire 8. By blocking underwater foreign objects such as seaweed in the water area through the underwater isolation net 7 and the sinking block ring 10, it is possible to prevent water area foreign objects from directly contacting the monitoring probe 9, which is beneficial for the monitoring probe 9 to perform normal water quality monitoring. The plug wire 8 passes through the floating body assembly 1 and is installed on the electric control box assembly 4. The electric control box in the electric control box assembly 4 is made of ABS raw material, a waterproof outer box, which can prevent ordinary collisions. An internal data acquisition controller, battery pack protection, etc. can be installed inside it.

[0025] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A water quality monitor that is resistant to being blocked by water grass, characterized in that: The water quality monitor shielded by waterproof grass comprises a float assembly (1) and a float fixing rope (5), the top end of the float assembly (1) is threadedly connected to a fixing bracket (2), the top end of the fixing bracket (2) is fixedly mounted with an electric control box assembly (4), and the front end of the electric control box assembly (4) is movably mounted with a solar panel (3), the float fixing rope (5) is fixedly mounted on the outer surface of the float assembly (1), and the float assembly (1) is floatingly connected with an isolation float ring assembly (6) around it, and an underwater isolation net (7) is installed below the isolation float ring assembly (6), and the bottom end of the underwater isolation net (7) is fixedly connected with a sinking block ring (10).

2. The water quality monitor according to claim 1, characterized in that: The isolation buoy ring assembly (6) includes a plug wire (8) and a monitoring probe (9), and the monitoring probe (9) is fixedly connected below the plug wire (8), and the plug wire (8) and the monitoring probe (9) are sunk inside the underwater isolation net (7) and the sinking block ring (10).

3. The water quality monitor according to claim 2, characterized in that: The monitoring probe (9) is fixedly connected to the floating body assembly (1) via a plug wire (8), and the plug wire (8) passes through the floating body assembly (1) and is installed on the electric control box assembly (4).

4. The water quality monitor according to claim 1, characterized in that: The floating body assembly (1) comprises a reinforcement bolt hole (11) and a floating net connecting ring (12), and the floating net connecting ring (12) is provided with reinforcement bolt holes (11) around it, and the reinforcement bolt holes (11) and the isolation floating body ring assembly (6) are fastened with bolts.

5. The water quality monitor according to claim 4, characterized in that: An underwater isolation net (7) is fixedly installed at the connection between the reinforcement bolt hole (11) and the bottom of the floating net connection ring (12), and the underwater isolation net (7) is isolated and protected outside the monitoring probe (9).

6. The water quality monitor according to claim 1, characterized in that: The electric control box assembly (4) comprises a guide rail (13), a protective hidden box (14) and a connecting end (15), and the guide rails (13) are movably installed on both sides of the protective hidden box (14), and the protective hidden box (14) is slidably installed inside the electric control box assembly (4) via the guide rails (13).

7. The water quality monitor according to claim 6, characterized in that: A connection end (15) is movably installed inside the protective hidden box (14), and the connection end (15) is connected to the plug wire (8).

Citation Information

Cited By

  • Water quality monitor capable of preventing water and grass from shielding

    CN224553261U