Gas reciprocating type multidirectional wave pressure floating power generation device and offshore integrated power generation system and method
A power generation device, wave pressure technology, applied in hydroelectric power generation, safety devices, ocean energy power generation, etc., to achieve the effects of improving power generation efficiency and power generation, fully using energy, and broadening the range of energy collection
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Embodiment 1
[0029] Embodiment 1: as figure 2 As shown, a gas reciprocating multi-directional wave pressure floating power generation device includes a buoy 5 and an airbag 6. The buoy 5 is pulled by the mooring system and floats on the water surface. The opening of the airbag 6 is located inside the buoy 5, and the airbag 6 is filled with gas. The airbag 6 is in contact with the waves with its flexible surface on the facing wave side and squeezes the gas in the airbag 6, so that the gas port of the airbag 6 rushes towards the blades of the turbine generator 8 to discharge compressed gas so that the blades of the turbine generator 8 rotate to generate electricity. The compressed air flows back into the airbag 6 from another channel after passing through the blades of the turbine generator 8 to fill the airbag 6 .
[0030] In one solution, the buoy 5 includes a first long chamber and a second long chamber that are longitudinally divided into the inside of the buoy 5 by the first partition ...
Embodiment 2
[0040] Embodiment 2: The difference between this embodiment and the above embodiments is that the combination of the fan 1 and the gas reciprocating multi-directional wave pressure floating power generation device is described in more detail, as shown in figure 1 As shown, a floating wind-wave complementary energy integration system based on wave pressure power generation includes a fan 1, a tower 2, a main column 3, two side columns 4, two buoys 5, an anchor chain 7, an airbag 6, and a turbine for power generation Machine 8 and power output system, fan 1 and turbine generator 8 are connected with the power output system, two buoys 5 float in the direction of the water surface at a certain angle, and the top connection of the two buoys 5 is installed with a main column 3, two Each side column 4 is installed at the tail of the buoys 5, the fan 1 is connected to the main column 3 through the tower 2, the buoy 5 is connected to the seabed through the anchor chain 7, the airbag 6 i...
Embodiment 3
[0043] Embodiment 3: This embodiment proposes a wind-wave complementary energy integration device integrating wind energy and wave energy. The device is based on a floating structure, combines wind energy and wave energy and innovatively uses gas reciprocating multi-directional The wave pressure floating power generation device performs wave energy power generation.
[0044] This embodiment can take advantage of the natural correlation of wind and waves to solve the problem of combining wind and wave energy with the help of wave pressure under the foundation of the semi-submersible support structure, such as Figure 1~5 As shown, the technical solution is: a floating wind-wave complementary energy integration system based on wave pressure power generation, including a fan 1, a tower 2, a wave pressure power generation device and a semi-submersible platform. The wind turbine 1 is connected to the tower 2. The bottom of the tower 2 is the foundation of the V-Shape semi-submersib...
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