Water quality environment monitor

By designing a float base, airbag, solar charging panel, and monitoring mechanism, the problem of needing to replace the power supply of water quality monitors regularly has been solved, enabling unattended water surface monitoring and efficient equipment floating, reducing the investment of manpower and material resources.

CN223926428UActive Publication Date: 2026-02-17甘肃省金昌生态环境监测中心
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Patent Information

Application Number
CN202520418473.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-02-17
Estimated Expiration
2035-03-11

AI Technical Summary

Technical Problem

Existing water quality monitoring instruments cannot be equipped with circuitry when operating on the water surface for extended periods, requiring regular replacement of portable power sources, which necessitates significant manpower and material resources for their use and construction.

Method used

The device features a floating base, airbag, internal tank, and solar charging panel. The solar charging panel powers the device, and the internal tank is raised using an electric rotating base and a gear and rack mechanism. It integrates monitoring mechanisms such as camera probes and temperature detectors, and combines amphibious wheels to enable the device to move and monitor on the water surface.

Benefits of technology

This eliminates the need for periodic power supply replacements, reduces manpower and material resources, and increases the equipment's floating time on the water surface and monitoring efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223926428U_ABST
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Abstract

The utility model discloses a water quality environment monitor, which relates to the technical field of water quality detection, and comprises a buoy base and an outer frame arranged on the buoy base, an air bag is arranged outside the buoy base, a sample storage box is arranged inside the buoy base, a built-in box is slidably connected in the outer frame, and the built-in box is connected with the air bag. An electric rotating base is fixedly installed at the top of the built-in box, the first motor is fixedly installed on the side wall of the outer frame, an output shaft of the first motor is fixedly connected with a gear, a rack is fixedly connected to the side wall of the built-in box, and the gear and the rack are connected in a meshed mode; and a groove body for accommodating the rack is formed in the inner wall of the outer frame. The water quality environment monitor disclosed by the utility model is provided with the third motor to enable the solar charging panel to expand outwards, and the solar charging panel can convert solar energy into electric energy, so that the effect of floating time of equipment on a lake surface is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to water quality detection technical field especially relates to water quality environmental monitoring appearance. BACKGROUND

[0002] Water quality monitoring is the process of monitoring and measuring the types of pollutants in water, the concentrations of various pollutants and their trends, and evaluating water quality. The monitoring range is very wide, including natural water (rivers, lakes, seas and underground water) and various industrial wastewater. The main monitoring items can be divided into two categories: one is the comprehensive index reflecting water quality, such as temperature, color, 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, lead, chromium, cadmium, mercury, etc. and organic pesticides, etc. which need to be detected by water quality.

[0003] After searching, the application number CN202020249845.5 discloses a total phosphorus monitor applied to water quality environmental monitoring, relating to the water quality monitoring technical field, to solve the problem that the existing monitor is not accurate in monitoring water quality due to only one detection mechanism. The lower part of the upper main body of the monitor is provided with a lower main body of the monitor, which is threadedly connected with the upper main body of the monitor through five-angle bolts, and the five-angle bolts are provided with several, one end of the upper main body of the monitor is provided with an illumination mechanism, one side of the upper main body of the monitor is provided with a charging port sleeve, one end of the upper end surface of the upper main body of the monitor is provided with a display screen, the lower part of the display screen is provided with an equipment switch button, one side of the equipment switch button is provided with a rotary button, and one side of the rotary button is provided with a working indicator light.

[0004] But the above-mentioned device is long-term located on the water surface and cannot lay circuit, adopts mobile power supply, needs to replace regularly, and needs to invest more manpower and material resources in use and construction, so we launch a water quality environmental monitor. UTILITY MODEL CONTENT

[0005] The utility model discloses water quality environmental monitor, aims at solving long-term located on the water surface and cannot lay circuit, adopts mobile power supply, needs to replace regularly, and needs to invest more manpower and material resources in use and construction technical problem.

[0006] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:

[0007] The utility model provides a water quality environmental monitoring appearance, including float base and the outer frame of setting on float base, the outside installation of air bag of float base, the inside installation of sample storage box of float base, the inside built -in box of sliding connection of outer frame, the top fixed mounting of built -in box has motorized swivel base, the output shaft of motorized swivel base is fixedly connected with monitoring part, first drive part is arranged between the outer frame and built -in box, and first drive part drives built -in box to slide in the outer frame, first drive part includes first motor, gear and rack, the lateral wall of outer frame is fixedly installed with first motor, the output shaft of first motor is fixedly connected with gear, the lateral wall of built -in box is fixedly connected with rack, gear and rack are mutually engaged connection, and the inner wall of outer frame is provided with the groove of accommodating rack.

[0008] As preferred, the sample storage box is internally installed with a sampling pump, the input port of the sampling pump is fixedly connected with a sampling pipeline, the output port of the sampling pump is fixedly connected with a total discharge pipeline, the port of the sampling pipeline extends to the inside of the storage groove, the port of the total discharge pipeline extends to the outside of the float base, and a monitoring mechanism is arranged above the float base.

[0009] As preferred, recesses are symmetrically arranged on the two sides of the built-in box, a solar charging plate is arranged in the recess of the built-in box, and a third motor is arranged between the solar charging plate and the recess, when the built-in box drives out to the top of the outer frame, the third motor makes the solar charging plate expand outward.

[0010] As preferred, two flushing pipelines are arranged beside the sampling pipeline, the sample storage box is internally provided with a partition plate to divide it into two chambers, one of the chambers is used for storing sampling articles and is internally provided with a water quality detector, and the other chamber stores flushing liquid and a high-pressure circulating water pump.

[0011] As preferred, amphibious wheels are arranged at the bottom of the float base, a storage groove accommodating the amphibious wheels is arranged at the bottom of the float base, and a second motor connected to the upper end of the amphibious wheels is arranged at the bottom of the storage groove.

[0012] As preferred, a hook lock is further fixedly connected to the float base, and the hook lock is provided with a connecting portion.

[0013] As can be seen from the above, the water quality environmental monitoring appearance has the following technical effects.

[0014] One: the input port of the sampling pump is fixedly connected with a sampling pipeline, the output port of the sampling pump is fixedly connected with a total discharge pipeline, the port of the sampling pipeline extends to the inside of the storage tank body, the port of the total discharge pipeline extends to the outside of the floating base, lake water is collected into the sample storage box through the sampling pump, and the monitoring mechanism is arranged above the floating base. The monitoring mechanism can include a camera probe, a temperature detector, a humidity detector and other detection instruments of external factors that can easily affect water quality.

[0015] Secondly, the first motor drives the gear to rotate, and the gear and the rack cooperate to lift the height of the built-in box. The recesses are symmetrically arranged on the two sides of the built-in box, the solar charging plate is arranged in the recess of the built-in box, and the third motor is arranged between the solar charging plate and the recess. When the built-in box is driven out to the top of the outer frame, the third motor makes the solar charging plate expand outward, and the solar charging plate can convert solar energy into electric energy, thereby prolonging the floating time of the equipment on the lake surface. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 The utility model provides a whole structure schematic diagram of water quality environmental monitor.

[0017] Figure 2 The utility model provides a structure schematic diagram of bottom of water quality environmental monitor.

[0018] Figure 3 The utility model provides a structure schematic diagram of first drive part of water quality environmental monitor.

[0019] Figure 4 The utility model provides a structure schematic diagram of sample storage box of water quality environmental monitor.

[0020] In the drawing: 1, outer frame;2, built-in box;3, floating base;4, gasbag;5, hook lock;6, connecting portion;7, monitoring portion;8, electric rotating base;9, first drive part;901, first motor;902, gear;903, rack;10, total discharge pipeline;11, storage tank body;12, second motor;13, amphibious wheel;14, solar charging plate;15, third motor;16, sample storage box;17, sampling pipeline. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.

[0022] In the description of the utility model, it is understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.

[0023] With reference to Figure 1 And Figure 2 , the water quality environmental monitor comprises a float base 3, an outer frame 1 arranged on the float base 3, an air bag 4 arranged outside the float base 3, a sample storage box 16 arranged inside the float base 3, an inner box 2 slidably connected in the outer frame 1, a motorized rotating base 8 fixedly arranged on the top of the inner box 2, a monitoring part 7 fixedly connected to the output shaft of the motorized rotating base 8, a first driving part 9 arranged between the outer frame 1 and the inner box 2, and the first driving part 9 drives the inner box 2 to slide in the outer frame 1. The first driving part 9 comprises a first motor 901, a gear 902 and a rack 903. The first motor 901 is fixedly arranged on the side wall of the outer frame 1. The output shaft of the first motor 901 is fixedly connected with the gear 902. The side wall of the inner box 2 is fixedly connected with the rack 903. The gear 902 and the rack 903 are connected with each other. A groove for accommodating the rack 903 is arranged on the inner wall of the outer frame 1. The gear 902 is driven to rotate by the first motor 901. The gear 902 and the rack 903 cooperate to lift the height of the inner box 2. The recesses are symmetrically arranged on the two sides of the inner box 2. A solar charging panel 14 is arranged in the recess of the inner box 2. A third motor 15 is arranged between the solar charging panel 14 and the recess. When the inner box 2 is driven to the top of the outer frame 1, the third motor 15 drives the solar charging panel 14 to expand outward. The solar charging panel 14 can convert solar energy into electric energy, thereby prolonging the floating time of the equipment on the lake surface.

[0024] With reference to Figure 1 And Figure 4 In the embodiment, a sampling pump is arranged inside the sample storage box 16. A sampling pipeline 17 is fixedly connected to the input port of the sampling pump. A total discharge pipeline 10 is fixedly connected to the output port of the sampling pump. The port of the sampling pipeline 17 extends into the storage groove 11. The port of the total discharge pipeline 10 extends to the outside of the float base 3. A monitoring mechanism is arranged above the float base 3. The lake water is collected into the sample storage box 16 by the sampling pump. The monitoring mechanism is arranged above the float base 3. The monitoring mechanism can comprise a camera probe, a temperature detector, a humidity detector and other detection instruments for detecting the characteristics of external factors that can affect the water quality.

[0025] With reference to Figure 1 And Figure 3In the embodiment, the recesses are symmetrically arranged on both sides of the built-in box 2, the solar charging panel 14 is arranged in the recess of the built-in box 2, and the third motor 15 is arranged between the solar charging panel 14 and the recess. When the built-in box 2 is driven to the top of the outer frame 1, the third motor 15 drives the solar charging panel 14 to expand outward. Through the arrangement of the solar charging panel 14, the problem mentioned in the background art is solved.

[0026] Reference Figure 1 and Figure 2 In the embodiment, the sample storage box 16 is arranged beside the sampling pipeline 17 and is also provided with two flushing pipelines. The sample storage box 16 is internally provided with a partition plate to divide it into two chambers. One chamber is used to store sampling articles and is internally provided with a water quality detector. The other chamber stores flushing liquid and a high-pressure circulating water pump.

[0027] In the embodiment, the amphibious wheel 13 is arranged at the bottom of the float base 3. The float base 3 is provided with a storage groove 11 for accommodating the amphibious wheel 13. The second motor 12 is arranged at the upper end of the amphibious wheel 13 and is installed at the bottom of the storage groove 11. The float base 3 is also fixedly connected with the hook lock 5, and the hook lock 5 is provided with the connecting part 6.

[0028] Working principle: when the water surface is monitored and sampled, the connecting part 6 is provided with a rope with a certain length and extension. The air bag 4 is filled with air and floats on the water surface. The amphibious wheel 13 at the bottom rotates to enable the device to move on the water surface. The sample is extracted through the monitoring part 7 and the sampling pipeline 17 to monitor the lake water. The monitoring part 7 can be a camera.

[0029] The second motor 12 is arranged at the upper end of the amphibious wheel 13 and is installed at the bottom of the storage groove 11. The second motor 12 drives the amphibious wheel 13 to vertically move on the storage groove 11 and cooperate with the amphibious wheel 13 to be accommodated or extended to operate. The float base 3 is externally provided with the air bag 4 to increase the buoyancy of the device on the water. The float base 3 is internally provided with the sample storage box 16. The sampling pump is installed in the sample storage box 16. The sampling pipeline 17 is fixedly connected with the input port of the sampling pump. The output port of the sampling pump is fixedly connected with the total discharge pipeline 10. The port of the sampling pipeline 17 extends to the inside of the storage groove 11. The port of the total discharge pipeline 10 extends to the outside of the float base 3. The lake water is collected into the sample storage box 16 through the sampling pump. The monitoring mechanism is arranged above the float base 3. The monitoring mechanism can include a camera probe, a temperature detector, a humidity detector, and other detection instruments that can easily affect the characteristics of external factors of water quality.

[0030] The gear 902 and the rack 903 cooperate to lift the height of the built-in box 2 by driving the gear 902 to rotate through the first motor 901. The recesses are symmetrically arranged on both sides of the built-in box 2, and the solar charging plate 14 is arranged in the recess of the built-in box 2. The third motor 15 is arranged between the solar charging plate 14 and the recess, and when the built-in box 2 is driven to the top of the outer frame 1, the third motor 15 makes the solar charging plate 14 unfold outward. The solar charging plate 14 can convert solar energy into electric energy, thereby prolonging the floating time of the equipment on the lake surface.

[0031] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this. The replacement can be the replacement of part of the structure, device, method step, or the complete technical solution. According to the technical solution and the utility model concept of the present application, equivalent replacement or change should be covered in the protection scope of the present application.

Claims

1. A water quality environmental monitor, comprising a float base (3) and an outer frame (1) arranged on the float base (3), characterized in that: The air bag (4) is externally mounted on the float base (3), the sample storage box (16) is internally mounted on the float base (3), the built-in box (2) is slidably connected in the outer frame (1), the electric rotating base (8) is fixedly installed on the top of the built-in box (2), the output shaft of the electric rotating base (8) is fixedly connected with the monitoring part (7), the first driving part (9) is arranged between the outer frame (1) and the built-in box (2), and the first driving part (9) drives the built-in box (2) to slide in the outer frame (1); the first driving part (9) comprises a first motor (901), a gear (902) and a rack (903), the first motor (901) is fixedly installed on the side wall of the outer frame (1), the output shaft of the first motor (901) is fixedly connected with the gear (902), the rack (903) is fixedly connected on the side wall of the built-in box (2), the gear (902) and the rack (903) are connected with each other, and the groove for accommodating the rack (903) is formed in the inner wall of the outer frame (1).

2. The water quality environment monitor according to claim 1, characterized in that: The sample storage box (16) is internally provided with a sampling pump, the input port of the sampling pump is fixedly connected with a sampling pipeline (17), the output port of the sampling pump is fixedly connected with a total discharge pipeline (10), the port of the sampling pipeline (17) extends to the inside of the storage groove (11), the port of the total discharge pipeline (10) extends to the outside of the float base (3), and the monitoring mechanism is arranged above the float base (3).

3. The water quality environment monitor according to claim 2, characterized in that: The recesses are symmetrically formed on the two sides of the built-in box (2), the solar charging plate (14) is arranged in the recess of the built-in box (2), and the third motor (15) is arranged between the solar charging plate (14) and the recess, when the built-in box (2) drives out to the top of the outer frame (1), the third motor (15) makes the solar charging plate (14) expand outward.

4. The water quality environment monitor according to claim 1, characterized in that: Two flushing pipelines are further arranged beside the sampling pipeline (17) of the sample storage box (16), the sample storage box (16) is divided into two chambers by the partition plate, one chamber is used for storing sampling articles and is internally provided with a water quality detector, and the other chamber stores flushing liquid and a high-pressure circulating water pump.

5. The water quality environment monitor according to claim 1, characterized in that: The amphibious wheel (13) is arranged on the bottom of the float base (3), the storage groove (11) for accommodating the amphibious wheel (13) is formed in the bottom of the float base (3), and the second motor (12) is arranged on the bottom of the storage groove (11) and connected to the upper end of the amphibious wheel (13).

6. The water quality environment monitor according to claim 1, characterized in that: The hook lock (5) is further fixedly connected to the float base (3), and the hook lock (5) is provided with a connecting part (6).

Citation Information

Patent Citations

  • Total phosphorus monitor applied to water quality environment monitoring

    CN212180764U