Mooring type power generation system based on vortex enhanced flow-induced vibration cluster

The mooring type power generation system comprises an upper floating body, a mounting platform, a flow-induced vibration power generation device, a deep sea base station and an underwater autonomous vehicle, the upper floating body is arranged on the upper portion of the mounting platform, the mount...

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Hauptverfasser: SHI JINKANG, GUO PENGHUA, LIN YICHEN, CHEN YANAN, FU YUYU
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creator SHI JINKANG
GUO PENGHUA
LIN YICHEN
CHEN YANAN
FU YUYU
description The mooring type power generation system comprises an upper floating body, a mounting platform, a flow-induced vibration power generation device, a deep sea base station and an underwater autonomous vehicle, the upper floating body is arranged on the upper portion of the mounting platform, the mounting platform is of a cylindrical structure with openings in the two sides, and the flow-induced vibration power generation device is arranged in the mounting platform. The vibration power generation device is connected with the deep sea base station; the deep sea base station is used for supplying power to the autonomous underwater vehicle; the two flow-induced vibration power generation devices installed on the installation platform are suspended in the middle layer of seawater through the buoyancy device, the ocean current flow speed is large, meanwhile, the vortex enhancing device is arranged in front of the installation platform, and the power generation amount is further increased. 一种基于涡流增强流致振动集群的系泊式发电系统,包括上浮体
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subjects BLASTING
CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTINGELECTRIC POWER
CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
DYNAMO-ELECTRIC MACHINES
ELECTRICITY
GENERATION
HEATING
LIGHTING
MACHINES OR ENGINES FOR LIQUIDS
MECHANICAL ENGINEERING
OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
PRODUCING MECHANICAL POWER
SYSTEMS FOR STORING ELECTRIC ENERGY
WEAPONS
WIND, SPRING WEIGHT AND MISCELLANEOUS MOTORS
title Mooring type power generation system based on vortex enhanced flow-induced vibration cluster
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