Anti-offset ocean buoy detector

By setting up a stable component on the marine buoy detector, the weight of the anchor chain body and the sinking stone body is used to float the floating body at a limit, solving the problem of easy deviation of the detector during use, and improving stability and practicality.

CN222820225UActive Publication Date: 2025-05-02SUZHOU YOUGUANG ENVIRONMENTAL DEV CO LTD
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Patent Information

Application Number
CN202421883114.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-06
Publication Date
2025-05-02
Estimated Expiration
2034-08-06

AI Technical Summary

Technical Problem

During use, existing marine buoy detectors are prone to offset due to seawater flow or ripple, which will affect the detection data and reduce practicality and efficiency of use.

Method used

An anti-offset marine buoy detector is designed. By setting a stable component at the lower end of the buoy, including a mounting block, a mounting ring, an anchor chain body, a sinking stone body and a protective baffle, the weight of the anchor chain body and a sinking stone body make the floating body float at a limit to avoid position deviation, and reduce the impact of seawater ripples through the protective lever.

Benefits of technology

It effectively prevents the position deviation of the marine buoy detector, improves the stability and practicality of the detector, and reduces the impact of seawater ripple on the use of the detector.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-excursion ocean buoy detector relates to ocean buoy detector technical field, including floating body and stabilizing component, the upper end of floating body is provided with mounting bracket, the lower end of floating body is provided with stabilizing component, and stabilizing component includes mounting block, mounting ring, anchor chain main part, sinking stone main part and protective baffle, mounting rings are mounted at the four corners of the lower end of the mounting block, anchor chain bodies are arranged in the mounting rings, the front ends of the anchor chain bodies are connected with sinking stone bodies, protective baffles are additionally arranged on the two sides of the exterior of the floating body, and a cleaning assembly is arranged outside the mounting support. According to the anti-deviation ocean buoy detector, the ocean buoy detector can be prevented from deviating to a certain degree due to flowing or ripples of seawater, the influence on subsequent detection data is reduced, and the practicability and the use efficiency of the ocean buoy detector in the use process are further improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of ocean buoy detectors, in particular to an anti-deviating ocean buoy detector. Background Art

[0002] Ocean buoy detectors are long-term, continuous, all-weather, automated ocean observation equipment anchored at sea, used to monitor and collect ocean hydrology, water quality and meteorological data. These buoys can automatically detect ocean meteorology and related hydrological elements, including but not limited to wind direction, wind speed, air temperature, air pressure, humidity, water temperature, salinity, flow direction, flow velocity, wave height and period, etc. Ocean buoy detectors have a wide range of applications, including but not limited to marine scientific research, offshore oil development, port construction and national defense construction. In order to improve the efficiency of information collection in the ocean, an ocean buoy detector is needed, but the existing ocean buoy detectors still have the following shortcomings:

[0003] For example, the utility model with application number 202321645780.6 discloses an ocean buoy, which controls the rotation of the transmission gear by starting the motor, and can drive the ring to rotate through the limit gear ring, so that the first scraper rod and the second scraper rod rotate at the bottom and around the airbag to scrape and clean the plankton adsorbed on the wall surface of the airbag, thereby improving the use effect, and through the cooperation of the third limit block and the second limit block, the scraping and cleaning effect of the first scraper rod and the transmission gear can be improved, thereby improving the use effect. However, similar to the comparative documents of the above-mentioned application, when the existing ocean buoy detector is used, since most ocean buoy detectors are prone to a certain degree of deviation due to the flow or ripples of seawater, subsequent detection data are easily affected, resulting in the problem of reduced practicality and reduced use efficiency of the ocean buoy detector.

[0004] Therefore, in view of this, the existing structure and defects are studied and improved, and an anti-drift ocean buoy detector is proposed. Utility Model Content

[0005] The purpose of the utility model is to provide an anti-deviating ocean buoy detector to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an anti-drift ocean buoy detector, comprising a float and a stabilizing assembly, wherein a mounting bracket is provided at the upper end of the float, a stabilizing assembly is provided at the lower end of the float, and the stabilizing assembly comprises a mounting block, a mounting ring, an anchor chain body, a sinker body and a protective baffle, mounting rings are installed at the four corners of the lower end of the mounting block, an anchor chain body is provided inside the mounting ring, and the front end of the anchor chain body is connected to the sinker body, protective baffles are added on both sides of the outside of the float, and a cleaning assembly is provided outside the mounting bracket.

[0007] Furthermore, the anchor chain body and the mounting block are distributed vertically, and the anchor chain body is connected to the mounting block via a mounting ring.

[0008] Furthermore, the number of the anchor chain bodies is four, and the four anchor chain bodies are equidistantly distributed at the four corners of the lower end of the mounting block.

[0009] Furthermore, the number of the protective baffles is two, and the two protective baffles are symmetrically arranged on both sides of the outside of the floating body with respect to the front center axis of the floating body.

[0010] Furthermore, the cleaning component includes a solar photovoltaic panel, a limit frame, a servo motor and a screw rod. The limit frame is installed on the left side of the solar photovoltaic panel, and a servo motor is arranged on the upper end of the limit frame, and a screw rod is connected to the front end of the servo motor.

[0011] Furthermore, the cleaning component also includes a movable slider, a movable horizontal plate, a cleaning brush and a navigation light. At the same time, the movable slider is connected to the outside of the screw rod, a movable horizontal plate is installed on the outside of the movable slider, and a cleaning brush is added to the lower end of the movable horizontal plate. A navigation light is installed on the top of the mounting bracket.

[0012] Furthermore, the outer dimensions of the movable slider are matched with the inner dimensions of the limit frame, and the movable slider is slidably connected to the limit frame via a screw rod.

[0013] Furthermore, the outer side of the cleaning brush is horizontally distributed with the outer side of the solar photovoltaic panel, and the outer side of the cleaning brush is closely fitted with the outer side of the solar photovoltaic panel.

[0014] The utility model provides an anti-deviating ocean buoy detector, which has the following beneficial effects:

[0015] 1. The utility model, through the setting of the stabilizing component, can connect the anchor chain body with the mounting block through the mounting ring when the anti-drift ocean buoy detector is in use, and use the anchor chain body to connect the sinker body with the floating body, so that the floating body is limited and floats on the sea surface by the weight of the sinker body, thereby avoiding positional deviation of the ocean buoy detector during use, and fixing the protective baffles on both sides of the outside of the floating body, and reducing the influence of seawater ripples on the use of the ocean buoy detector by the protective baffles, thereby once again increasing the stability of the ocean buoy detector during use and improving the overall practicality of the ocean buoy detector.

[0016] 2. Through the setting of the cleaning component, the utility model can, when the anti-deviated ocean buoy detector is in use, drive the screw to rotate through the operation of the servo motor so that the movable slider connected to the outside of the screw can slide up and down inside the limit frame, and drive the movable horizontal plate installed outside the movable slider to move up and down outside the solar photovoltaic panel, so that the cleaning brush installed on the inner side of the movable horizontal plate cleans the surface of the solar photovoltaic panel to prevent the surface of the solar photovoltaic panel from being contaminated by seawater and affecting its use. At the same time, the solar photovoltaic panel is used to power components such as navigation lights, thereby increasing the overall use efficiency of the ocean buoy detector. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a three-dimensional structural schematic diagram of an anti-deviating ocean buoy detector of the utility model;

[0018] Figure 2 It is a schematic diagram of the three-dimensional unfolding structure of a stabilizing component of an anti-deviating ocean buoy detector of the utility model;

[0019] Figure 3 It is a schematic diagram of a three-dimensional cross-sectional structure of a cleaning component of an anti-drift ocean buoy detector of the utility model.

[0020] In the figure: 1. Floating body; 2. Mounting bracket; 3. Stabilizing assembly; 301. Mounting block; 302. Mounting ring; 303. Anchor chain body; 304. Sinking stone body; 305. Protective baffle; 4. Cleaning assembly; 401. Solar photovoltaic panel; 402. Limiting frame; 403. Servo motor; 404. Screw rod; 405. Movable slider; 406. Movable horizontal plate; 407. Cleaning brush; 408. Navigation light. DETAILED DESCRIPTION

[0021] The following is a further detailed description of the implementation of the present invention in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present invention, but cannot be used to limit the scope of the present invention.

[0022] like Figure 1 and Figure 2As shown, an anti-drift ocean buoy detector includes a floating body 1 and a stabilizing component 3, wherein a mounting bracket 2 is arranged at the upper end of the floating body 1, a stabilizing component 3 is arranged at the lower end of the floating body 1, and the stabilizing component 3 includes a mounting block 301, a mounting ring 302, an anchor chain body 303, a sinker body 304 and a protective baffle 305, mounting rings 302 are installed at the four corners of the lower end of the mounting block 301, and an anchor chain body 303 is arranged inside the mounting ring 302, and the sinker body 304 is connected to the front end of the anchor chain body 303, and protective baffles 305 are additionally provided on both sides of the outside of the floating body 1, the anchor chain body 303 and the mounting block 301 are distributed vertically, and the anchor chain body 303 is connected to the mounting block 301 through the mounting ring 302, and the number of the anchor chain body 303 is four, and the four anchor chain bodies 303 are equidistantly distributed at the four corners of the lower end of the mounting block 301, and the number of the protective baffles 305 There are two protective baffles 305, and the two protective baffles 305 are symmetrically arranged on both sides of the outside of the buoy 1 with the front central axis of the buoy 1. The mounting block 301 is fixedly installed in the middle of the lower end of the buoy 1 by fastening bolts, and the mounting ring 302 is fixedly installed on the four corners of the lower end of the mounting block 301 with the fastening bolts. The anchor chain body 303 is connected to the mounting block 301 through the mounting ring 302, and the anchor chain body 303 is used to connect the sinker body 304 to the buoy 1. The weight of the sinker body 304 makes the buoy 1 float on the sea surface with a limited position to avoid position deviation of the ocean buoy detector during use. The protective baffles 305 are fixedly installed on both sides of the outside of the buoy 1. The protective baffles 305 reduce the influence of sea water ripples on the use of the ocean buoy detector, thereby once again increasing the stability of the ocean buoy detector during use and improving the overall practicality of the ocean buoy detector.

[0023] like Figures 1 to 3As shown, a cleaning component 4 is arranged outside the mounting bracket 2, and the cleaning component 4 includes a solar photovoltaic panel 401, a limit frame 402, a servo motor 403 and a screw rod 404. The limit frame 402 is installed on the left side of the outside of the solar photovoltaic panel 401, and the servo motor 403 is arranged on the upper end of the limit frame 402, and the front end of the servo motor 403 is connected to the screw rod 404, the cleaning component 4 also includes a movable slider 405, a movable horizontal plate 406, a cleaning brush 407 and a beacon light 408, and at the same time, the screw rod 404 is connected to the outside of the movable slider 405, and the movable horizontal plate 406 is installed outside the movable slider 405, and a cleaning brush 407 is additionally provided at the lower end of the movable horizontal plate 406, and a beacon light 408 is installed on the top of the mounting bracket 2, the outer size of the movable slider 405 is adapted to the inner size of the limit frame 402, and the movable slider 405 is slidably connected to the limit frame 402 through the screw rod 404, and the outer side of the cleaning brush 407 is horizontal with the outer side of the solar photovoltaic panel 401 The outer side of the cleaning brush 407 is tightly fitted with the outer side of the solar photovoltaic panel 401, the limit frame 402 is fixedly installed on the left side of the outside of the solar photovoltaic panel 401 by fastening bolts, and the servo motor 403 is fixedly installed on the upper end of the limit frame 402 by fastening bolts, and the output shaft of the servo motor 403 is connected with the screw rod 404 through a coupling, and the operation of the servo motor 403 drives the screw rod 404 to rotate so that the movable slider 405 connected to the outside of the screw rod 404 slides up and down inside the limit frame 402, and drives the movable horizontal plate 406 installed outside the movable slider 405 to move up and down outside the solar photovoltaic panel 401, so that the cleaning brush 407 installed on the inner side of the movable horizontal plate 406 cleans the surface of the solar photovoltaic panel 401 to avoid the surface of the solar photovoltaic panel 401 being affected by seawater, and at the same time, the solar photovoltaic panel 401 is used to power components such as the navigation light 408, thereby increasing the overall use efficiency of the ocean buoy detector.

[0024] In summary, when the anti-deviated ocean buoy detector is used, firstly, the bolts are tightened to fix the mounting bracket 2 on the upper end of the float 1, and the solar photovoltaic panel 401 is fixedly mounted on the outside of the mounting bracket 2 with the tightening bolts, and the servo motor 403 at the upper end of the limit frame 402 drives the screw rod 404 to rotate so that the movable slider 405 connected to the outside of the screw rod 404 slides up and down inside the limit frame 402, and drives the movable horizontal plate 406 installed on the outside of the movable slider 405 to move up and down outside the solar photovoltaic panel 401, so that the cleaning brush 407 installed on the inner side of the movable horizontal plate 406 cleans the surface of the solar photovoltaic panel 401 to prevent the surface of the solar photovoltaic panel 401 from being contaminated with seawater and affecting its use, and at the same time uses the solar photovoltaic panel 401 as a navigation light 408 The components are powered, and then the mounting block 301 is fixedly installed on the middle part of the lower end of the floating body 1 by means of fastening bolts, and the mounting ring 302 is fixedly installed on the four corners of the lower end of the mounting block 301 by means of fastening bolts, the anchor chain body 303 is connected to the mounting block 301 by means of the mounting ring 302, and the sunken stone body 304 is connected to the floating body 1 by means of the anchor chain body 303, the weight of the sunken stone body 304 makes the floating body 1 float on the sea surface with limited position, so as to avoid the position deviation of the ocean buoy detector during use, and the protective baffle 305 is fixedly installed on both sides of the outside of the floating body 1, so as to reduce the influence of sea water ripples on the use of the ocean buoy detector by means of the protective baffle 305, thereby once again increasing the stability of the ocean buoy detector during use and improving the overall practicality of the ocean buoy detector.

[0025] The embodiments of the present invention are provided for the purpose of illustration and description, and are not intended to be exhaustive or to limit the present invention to the disclosed forms. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present invention, and to enable those of ordinary skill in the art to understand the present invention and thereby design various embodiments with various modifications suitable for specific uses.

Claims

1. An anti-drift ocean buoy detector, comprising a float (1) and a stabilizing component (3), characterized in that: The upper end of the floating body (1) is provided with a mounting bracket (2), the lower end of the floating body (1) is provided with a stabilizing assembly (3), and the stabilizing assembly (3) comprises a mounting block (301), a mounting ring (302), an anchor chain body (303), a sinker body (304) and a protective baffle (305), the mounting ring (302) being mounted at four corners of the lower end of the mounting block (301), the anchor chain body (303) being arranged inside the mounting ring (302), and the front end of the anchor chain body (303) being connected to the sinker body (304), protective baffles (305) being added on both sides of the outside of the floating body (1), and a cleaning assembly (4) being arranged outside the mounting bracket (2).

2. The anti-drift ocean buoy detector according to claim 1, characterized in that: The anchor chain body (303) and the mounting block (301) are distributed vertically, and the anchor chain body (303) is connected to the mounting block (301) via a mounting ring (302).

3. The anti-drift ocean buoy detector according to claim 1, characterized in that: The number of the anchor chain main bodies (303) is four, and the four anchor chain main bodies (303) are equidistantly distributed at the four corners of the lower end of the mounting block (301).

4. The anti-drift ocean buoy detector according to claim 1, characterized in that: The number of the protective baffles (305) is two, and the two protective baffles (305) are symmetrically arranged on both sides of the outside of the floating body (1) with respect to the front center axis of the floating body (1).

5. The anti-drift ocean buoy detector according to claim 1, characterized in that: The cleaning component (4) comprises a solar photovoltaic panel (401), a limit frame (402), a servo motor (403) and a screw rod (404); the limit frame (402) is installed on the left side of the outside of the solar photovoltaic panel (401); the servo motor (403) is arranged on the upper end of the limit frame (402); and the front end of the servo motor (403) is connected to the screw rod (404).

6. The anti-drift ocean buoy detector according to claim 5, characterized in that: The cleaning assembly (4) further comprises a movable slider (405), a movable horizontal plate (406), a cleaning brush (407) and a navigation light (408); the movable slider (405) is externally connected to the screw rod (404); a movable horizontal plate (406) is externally mounted on the movable slider (405); a cleaning brush (407) is additionally provided at the lower end of the movable horizontal plate (406); and a navigation light (408) is mounted on the top of the mounting bracket (2).

7. The anti-drift ocean buoy detector according to claim 6, characterized in that: The outer dimensions of the movable slider (405) are matched to the inner dimensions of the limit frame (402), and the movable slider (405) is slidably connected to the limit frame (402) via a screw rod (404).

8. The anti-drift ocean buoy detector according to claim 6, characterized in that: The outer side of the cleaning brush (407) and the outer side of the solar photovoltaic panel (401) are horizontally distributed, and the outer side of the cleaning brush (407) and the outer side of the solar photovoltaic panel (401) are tightly fitted.