Deepwater net cage with front streamline floating pipe outer frame
A deep-water cage, streamlined technology, applied in fish farming, application, climate change adaptation, etc., can solve the problem that dynamic response cannot meet severe sea conditions, and achieve the effect of improving typhoon resistance and risk prevention capabilities
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Embodiment 1
[0037] Such as Figure 1 to Figure 4 As shown, the deep-water net cage with the front streamlined floating tube outer frame of Embodiment 1 of the present invention comprises a floating tube frame 1, a net clothing 2 and an anchoring system, and the floating tube frame 1 floats on the sea level SL, and the top of the net clothing 2 The floating pipe frame 1 is connected, and the netting weight 3 is hung on the bottom to form a space for marine aquaculture.
[0038]The floating tube frame 1 of the present embodiment 1 is provided with a front streamlined floating tube outer frame, and the front streamlined floating tube outer frame is composed of a front connector 101, two convex arc-shaped main floating tubes 102, and two curved tube connectors 103. and the rear main floating pipe 104, one end of the two convex arc-shaped main floating pipes 102 is connected to the front connector 101, and the other end is connected to the two elbow connectors 103 and the rear main floating pi...
Embodiment 2
[0058] Such as Figure 7 Shown, the deep-water net cage of embodiment two of the present invention is substantially the same as embodiment one, and their difference is: in the present embodiment two, the mooring system of deep-water net cage also comprises floater 7 and float cable 8; The upper end is connected to the mooring point 1a by the buoy 7 and the buoy cable 8, that is: the upper end of the anchor rope 5 and one end of the buoy cable 8 are respectively connected to the buoy 7, and the other end of the buoy cable 8 is connected to the mooring point 1a, and the buoy 7 floats in the sea. on the plane SL. The working principle of the second embodiment is basically the same as that of the first embodiment, and the increase of the float 7 and the float cable 8 can further buffer the instantaneous stress of the deep-water net cage and improve the stability of the deep-water net cage.
Embodiment 3
[0060] The deep-water cage of the third embodiment of the present invention can adopt any one of the construction methods described in the first or second embodiment. The difference is that in the third embodiment, the length of the anchor rope 5 is such that the anchor rope 5 is In the tense state, it forms an angle α of 17° with the sea level SL.
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