CN218806387U - Monitoring buoy structure - Google Patents

Monitoring buoy structure Download PDF

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Publication number
CN218806387U
CN218806387U CN202223243347.8U CN202223243347U CN218806387U CN 218806387 U CN218806387 U CN 218806387U CN 202223243347 U CN202223243347 U CN 202223243347U CN 218806387 U CN218806387 U CN 218806387U
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Prior art keywords
wall
base plate
cover
heat dissipation
mounting
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CN202223243347.8U
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Chinese (zh)
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赵斌
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Dalian Yuanbohai Ocean Engineering Co ltd
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Dalian Yuanbohai Ocean Engineering Co ltd
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Abstract

The utility model discloses a monitoring buoy structure relates to ocean engineering technical field, can't monitor the sea water index of the different degree of depth to what the background art provided, and application scope is low, can't ensure heat dissipation and waterproof coexistence, problem that the practicality is low now proposes following scheme, including kickboard mechanism, kickboard mechanism includes base plate, go-between and mounting panel, base plate bottom outer wall is equipped with counter weight cover and four protective tubes, be equipped with four detection mechanism on the mounting panel top outer wall, detection mechanism includes cylinder and sensor, the mounting panel top is equipped with installation cover and curved surface solar panel, be equipped with the heat dissipation fan on the installation cover top inner wall. The utility model discloses can protect the sensor, can detect the sea water of the different degree of depth simultaneously, improve application scope, can dispel the heat to the installation cover is inside, can compromise heat dissipation and water-proof effects, avoid the sea water to flow backward into in the installation cover, improved the practicality.

Description

Monitoring buoy structure
Technical Field
The utility model relates to an ocean engineering technology field especially relates to a monitoring buoy structure.
Background
In ocean engineering, an important link is that the buoy is used for obtaining important ocean indexes aiming at ocean current, water temperature, salinity, pH value, dissolved oxygen chlorophyll, nutritive salt and other seawater indexes of ocean so as to ensure the sailing safety of passing ships.
Based on current ocean monitoring buoy, when using, there is the following problem:
1. when the existing buoy monitors the indexes of the ocean, the indexes of the seawater at different depths cannot be monitored, and the application range is low;
2. the buoy sets up on the sea, generally all can utilize solar panel to generate electricity, but, because there is not the shelter on the sea, leads to the straight face sunshine of buoy to penetrate directly, can cause inside temperature to rise, and the thermovent is intake again easily, can't ensure heat dissipation and waterproof coexistence, and the practicality is low.
SUMMERY OF THE UTILITY MODEL
The utility model provides a monitoring buoy structure has solved the unable sea water index to the different degree of depth among the prior art and has monitored, and application scope is low, can't ensure heat dissipation and waterproof coexistence, problem that the practicality is low.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a monitoring buoy structure, includes kickboard mechanism, kickboard mechanism includes base plate, go-between and mounting panel, base plate bottom outer wall is equipped with counter weight cover and four protecting tubes, be equipped with four detection mechanism on the outer wall of mounting panel top, detection mechanism includes cylinder and sensor, the mounting panel top is equipped with installation cover and curved surface solar panel, be equipped with the heat dissipation fan on the installation cover top inner wall, be equipped with four batteries on the outer wall of base plate top.
Preferably, the connection ring is welded on the outer wall of the top of the substrate, support plates distributed at equal intervals are welded on the outer wall of the connection ring, the tops and the bottoms of the support plates are respectively welded on the bottom of the mounting plate and the outer wall of the top of the substrate, air inlets of inclined structures distributed at equal intervals are formed in the outer wall of the connection ring, the air inlets are located between the two support plates, and four anchor hooks are welded on the outer wall of the bottom of the substrate.
Through above-mentioned scheme, utilize four anchor hooks to be connected with four anchors respectively, and then fix the buoy, avoid buoy fluctuation range great, improve the stability of buoy.
Preferably, the counterweight cover is connected to the outer wall of the bottom of the base plate through bolts, and the four protective pipes are respectively sleeved on the inner wall of the bottom of the counterweight cover.
Through above-mentioned scheme, utilize the protecting tube to protect the sensor, avoid the wave to cause the damage to the sensor.
Preferably, the cylinder passes through bolted connection on mounting panel top outer wall, and the cylinder passes mounting panel and base plate bottom respectively, be connected with the connecting piece through the fixed pin on the outer wall of cylinder piston rod lower part, and the welding has the extension rod on the outer wall of connecting piece bottom, and extension rod slip cap is located in the protective tube, and the sensor passes through bolted connection on the outer wall of extension rod bottom.
Through the scheme, the cylinder piston rod rises and falls to drive the sensor to rise and fall, so that the sensor can detect seawater at different depths.
Preferably, the installation cover is connected to the outer wall of the top of the installation plate through bolts, the curved-surface solar panel is connected to the outer wall of the installation cover through bolts, the inner wall of the top of the installation cover is provided with an air outlet, the heat dissipation fan is connected to the inner wall, close to the air outlet, of the top of the installation cover through bolts, and the inner wall of the top of the air outlet is sleeved with a waterproof breathable film.
Through the scheme, when the heat dissipation fan dissipates heat of the installation cover and the four cylinders, water is prevented from entering the installation cover.
Preferably, four the battery is respectively through bolted connection on base plate top outer wall, and four batteries establish ties each other, curved surface solar panel establishes ties each other with four batteries through the wire, and four batteries are connected with heat dissipation fan and four cylinders through the wire.
The utility model has the advantages that:
1. be provided with four cylinders, when cylinder piston rod was in initial position, four sensors were located inside the protecting tube, and the protecting tube protected the sensor, started the cylinder, and cylinder piston rod descends, drives extension rod and sensor and descends, and then makes the sensor can be in the different degree of depth, can protect the sensor, can detect the sea water of the different degree of depth simultaneously, has improved application scope.
2. Be provided with the heat dissipation fan, set up a plurality of tilt up's air intake on the go-between, be equipped with waterproof ventilated membrane in the air outlet of installation cover for the buoy can dispel the heat to installation cover inside when accepting sunshine to shine, can compromise heat dissipation and water-proof effects, avoids the sea water to flow backward into in the installation cover, has improved the practicality.
To sum up, the utility model discloses can protect the sensor, can detect the sea water of the different degree of depth simultaneously, improve application scope, can dispel the heat to the installation cover is inside, can compromise heat dissipation and water-proof effects, avoid the sea water to flow backward into in the installation cover, improved the practicality.
Drawings
Fig. 1 is a schematic view of a monitoring buoy structure according to the present invention.
Fig. 2 is a schematic bottom structure diagram of a monitoring buoy structure provided by the present invention.
Fig. 3 is a schematic view of a cross-sectional structure of the monitoring buoy structure provided by the present invention.
Fig. 4 is a schematic view of a section structure of a floating plate mechanism of a monitoring buoy structure according to the present invention.
Fig. 5 is a schematic view of a connection ring section structure of a monitoring buoy structure according to the present invention.
Fig. 6 is a schematic structural view of a detection mechanism for monitoring a buoy structure according to the present invention.
Fig. 7 is an enlarged schematic structural diagram of a position a in fig. 3 according to the present invention.
Fig. 8 is a schematic view of a section structure of an installation cover of a monitoring buoy structure according to the present invention.
In the figure: 1. a floating plate mechanism; 101. a substrate; 102. a connecting ring; 103. a support plate; 104. mounting a plate; 2. an anchor hook; 3. a counterweight cover; 4. a protective tube; 5. a detection mechanism; 501. a cylinder; 502. a connecting member; 503. an extension rod; 504. a sensor; 6. mounting a cover; 7. a curved solar panel; 8. a heat dissipation fan; 9. and (4) a storage battery.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Embodiment 1, refer to fig. 1-4, a monitoring buoy structure, including a floating plate mechanism 1, floating plate mechanism 1 includes a substrate 101, a connection ring 102 and a mounting plate 104, connection ring 102 is welded on the outer wall of the top of substrate 101, support plates 103 distributed at equal intervals are welded on the outer wall of connection ring 102, the top and bottom of support plates 103 are welded on the bottom of mounting plate 104 and the outer wall of the top of substrate 101 respectively, air inlets of inclined structures distributed at equal intervals are opened on the outer wall of connection ring 102, the air inlets are located between two support plates 103, four anchor hooks 2 are welded on the outer wall of the bottom of substrate 101, four anchor hooks 2 are connected with four anchors respectively, and then the buoy is fixed, avoid the fluctuation range of the buoy to be large, improve the stability of the buoy, the outer wall of the bottom of substrate 101 is connected with a counterweight cover 3 through bolts, four protective tubes 4 are sleeved on the inner wall of the bottom of counterweight cover 3, the protective tubes 4 are used for protecting the sensor, avoid the tide from causing damage to the sensor, four detection mechanisms 5 are arranged on the outer wall of the top of mounting plate 104, detection mechanisms 5 include an air cylinder 501 and a sensor 503, the cylinder 501 and a piston rod is connected with a piston rod for driving the sensor through a sliding connection piece for driving the piston rod to descend through a piston rod 502, and an extension rod for driving the extension rod.
Embodiment 2, refer to fig. 1 and 5, a monitoring buoy structure, there is installation cover 6 at installation board 104 top through bolted connection, there is curved surface solar panel 7 through bolted connection on the 6 outer walls of installation cover, it has the air outlet to open on the 6 top inner walls of installation cover, there is heat dissipation fan 8 through bolted connection on the inner wall that the 6 tops of installation cover are close to the air outlet, waterproof ventilated membrane has been cup jointed on the inner wall of air outlet top, make heat dissipation fan 8 to installation cover and four cylinders 501 radiating in the time, avoid 6 inside intaking of installation cover, there are four batteries 9 through bolted connection on the outer wall of base plate 101 top, four batteries 9 establish ties each other, curved surface solar panel 7 establishes ties each other with four batteries 9 through the wire, four batteries 9 are connected with heat dissipation fan 8 and four cylinders 501 through the wire.
The working principle is as follows: install the sensor 504 of different grade type in four extension rod 503 bottom, when cylinder 501 piston rod is in initial position, four sensor 504 are located the guard tube insidely, the guard tube 4 protects sensor 504, start cylinder 501, cylinder 501 piston rod descends, drive extension rod 503 and sensor 504 and descend, and then make sensor 504 be in the different degree of depth, a plurality of tilt up's air intake has been seted up on go-between 102, be equipped with waterproof ventilated membrane in the air outlet of installation cover 6, make the buoy when accepting the sunshine and shine, can compromise waterproofly when carrying out the radiating.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. A monitoring buoy structure, comprising a floating plate mechanism (1), characterized in that the floating plate mechanism (1) comprises a base plate (101), a connecting ring (102) and a mounting plate (104);
the outer wall of the bottom of the base plate (101) is provided with a counterweight cover (3) and four protection pipes (4), the outer wall of the top of the mounting plate (104) is provided with four detection mechanisms (5), and each detection mechanism (5) comprises an air cylinder (501) and a sensor (504);
the top of the mounting plate (104) is provided with a mounting cover (6) and a curved solar panel (7), and the inner wall of the top of the mounting cover (6) is provided with a heat dissipation fan (8);
four storage batteries (9) are arranged on the outer wall of the top of the base plate (101).
2. The monitoring buoy structure as claimed in claim 1, wherein the connecting ring (102) is welded on the outer wall of the top of the base plate (101), support plates (103) are welded on the outer wall of the connecting ring (102) and are distributed equidistantly, the top and the bottom of each support plate (103) are welded on the bottom of the mounting plate (104) and the outer wall of the top of the base plate (101), air inlets with inclined structures are formed in the outer wall of the connecting ring (102) and are distributed equidistantly, the air inlets are located between the two support plates (103), and four anchor hooks (2) are welded on the outer wall of the bottom of the base plate (101).
3. The monitoring buoy structure of claim 1, wherein the counterweight cover (3) is connected to the outer bottom wall of the base plate (101) through bolts, and the four protection pipes (4) are respectively sleeved on the inner bottom wall of the counterweight cover (3).
4. The monitoring buoy structure of claim 1, wherein the cylinder (501) is connected to the outer wall of the top of the mounting plate (104) through bolts, the cylinder (501) penetrates through the bottoms of the mounting plate (104) and the base plate (101) respectively, the outer wall of the lower portion of a piston rod of the cylinder (501) is connected with the connecting piece (502) through a fixing pin, the outer wall of the bottom of the connecting piece (502) is welded with an extension rod (503), the extension rod (503) is slidably sleeved in the protective pipe (4), and the sensor (504) is connected to the outer wall of the bottom end of the extension rod (503) through bolts.
5. The monitoring buoy structure of claim 1, wherein the mounting cover (6) is connected to the outer wall of the top of the mounting plate (104) through bolts, the curved solar panel (7) is connected to the outer wall of the mounting cover (6) through bolts, an air outlet is formed in the inner wall of the top of the mounting cover (6), the heat dissipation fan (8) is connected to the inner wall, close to the air outlet, of the top of the mounting cover (6) through bolts, and a waterproof breathable film is sleeved on the inner wall of the top of the air outlet.
6. A monitoring buoy structure as claimed in claim 1, wherein four storage batteries (9) are respectively bolted to the top outer wall of the base plate (101), the four storage batteries (9) are connected in series, the curved solar panel (7) is connected in series with the four storage batteries (9) through wires, and the four storage batteries (9) are connected with the heat dissipation fan (8) and the four air cylinders (501) through wires.
CN202223243347.8U 2022-12-05 2022-12-05 Monitoring buoy structure Active CN218806387U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223243347.8U CN218806387U (en) 2022-12-05 2022-12-05 Monitoring buoy structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223243347.8U CN218806387U (en) 2022-12-05 2022-12-05 Monitoring buoy structure

Publications (1)

Publication Number Publication Date
CN218806387U true CN218806387U (en) 2023-04-07

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ID=87038041

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223243347.8U Active CN218806387U (en) 2022-12-05 2022-12-05 Monitoring buoy structure

Country Status (1)

Country Link
CN (1) CN218806387U (en)

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