Offshore platform that can generate electricity
A technology for ocean platforms and generators, applied to ocean energy power generation, engine components, machines/engines, etc., can solve problems such as inability to generate electricity from waves, and achieve the effect of guaranteed power consumption and good wave resistance
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Embodiment 1
[0030] Embodiment one, see figure 1, an ocean platform capable of generating electricity, including a platform deck 1 , a support frame 2 , a power coupling mechanism 3 and a first generator 4 .
[0031] The platform deck 1 is floating on the sea surface 5 . The platform deck 1 is provided with a support frame rotating shaft 11 . The support frame rotating shaft 11 extends along the up and down direction. The supporting frame rotating shaft 11 is connected with the supporting frame 2 through a connecting rod 12 . The connecting rod 12 extends in the horizontal direction. The connecting rod 12 is a telescopic rod. It is set that the telescopic rod can rotate the support frame 2 without being blocked by the platform deck 1 when the support frame 2 is close to the platform deck 1, and the water retaining wall 21 can effectively prevent seawater from splashing to the platform if the distance is close deck 1.
[0032] The support frame 2 is provided with a water retaining wal...
Embodiment 2
[0039] Embodiment two, see Figure 4 , the difference with Embodiment 1 is: the platform deck 1 is also connected with several balance wings 13 (4 in this embodiment). Stabilizer 13 is distributed around platform deck 2. One end of the balance wing 13 away from the platform deck 2 is provided with a floating platform 6 . The floating platform 6 is provided with two wave collecting plates 61 . The wave collecting plates 61 are distributed along the horizontal direction. Form " V " shape gathering wave groove 62 between wave collecting plate 61.
[0040] see Figure 5 , The floating platform 6 is provided with a second generator 63 and an air chamber 64 . The lower end of the air chamber 64 is provided with a wave inlet 641 . The wave gathering groove 62 is aligned with the wave inlet 641 . That is, the two wave collecting plates 61 are located on both sides of the wave inlet 641 in the horizontal direction. The upper end of the air chamber 64 is provided with an air inl...
Embodiment 3
[0044] Embodiment three, the difference with embodiment two is: see Figure 9 , also includes a wave inlet transposition motor 7, a wave inlet transposition motor control unit 71, a wave flow direction sensor 72, a water current generating mechanism 8 and a power coupling assembly 9. Both the wave flow direction sensor 72 and the water current generating mechanism 8 are electrically connected with the wave inlet transposition motor control unit 71 .
[0045] The floating platform 6 is sequentially provided with a base 68 , a rotating section 69 and a fixed section 60 from bottom to top. The fixed section 60 and the base 68 are fixed together, and the rotating section 69 can rotate relative to the base 68 . Stabilizer 13 (see Figure 4 ) is connected to the fixed section 60.
[0046] Wave inlet transposition motor 7 is installed on the base 68.
[0047] The wave inlet 641 and the wave collecting plate 61 are arranged on the rotating section 69 . The air chamber 64 is provi...
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