Buoy for ocean observation
A buoy and marine technology, applied in the direction of buoys, test water, special-purpose vessels, etc., can solve the problems of low buoy reuse rate, difficulty in ensuring data accuracy and equipment integrity, and increased cost of offshore oil spill observation, etc., to achieve High service life and reuse rate, improved service life, and the effect of improving recycling rate
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Embodiment 1
[0027] Such as Figure 1-5 As shown, a buoy for ocean observation includes a buoyancy module 10, an observation module 20 and a counterweight module 30,
[0028] The buoyancy module 10 includes a cylindrical floating body 14. The side of the floating body 14 has a diversion groove 11 that spirally surrounds the central axis of the floating body 14. The side of the floating body 14 also has a horizontally placed rod body 12, and a float 13 is arranged on the rod body 12;
[0029] The observation module 20 includes a transparent tube 21 around which the floating body 14 rotates, and an exposed hydrological observation device 22 is connected inside the transparent tube 21 .
[0030] The present invention monitors the oil spill situation in the sea area by placing buoys at fixed points in the sea area and simultaneously monitors the water quality in the sea area. The buoyancy module 10 provides a certain buoyancy for the observation module 20 to keep it in a floating state, and th...
Embodiment 2
[0043] Such as Figure 6 As shown, this embodiment is further optimized on the basis of Embodiment 1 as follows: the floating body 50 is in the shape of an empennage, the inside of the floating body is hollow and filled with hydrogen, and the upper end of the floating body 14 is provided with a connecting ring 52, which is connected to The rope 52 is connected with the floating body 50 . By relatively improving the buoyancy of the floating body in the water, and improving the recognition and stability of the floating body in the water surface, the specific empennage-shaped floating body 50 is affected by the wind current on the sea surface and rotates around the floating body 14 or floats in one direction. Directional floating has an upward pulling force on the floating body to increase the buoyancy of the floating body in the water. When it rotates around the floating body 14, the floating body obtains a downward force, and the stability of the floating body in the water is i...
Embodiment 3
[0045] When the buoy for ocean observation of the present invention is actually used: the buoy of the present invention is placed in the sea area at a fixed point, specifically connected to the seabed through the rope body 40, and the water quality in the fixed-point delivery area is monitored by using the hydrological observation equipment 22. Real-time detection, detection results are transmitted to the micro-control chip 25. The micro-control chip 25 judges whether the water quality exceeds the set value, and the water quality exceeds the standard. , the console can also send commands to the buoy to control the start and stop of the hydrological observation equipment, etc., and control the signal light 24 to light up when the buoy is recovered or the staff observes the position of the sea surface buoy, so that the staff can perform corresponding operations.
[0046] The hydrological observation equipment adopted in the present invention, for example, adopts the multi-paramet...
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