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The invention provides a floating dam which is suitable for tidal power generation and is applied on tidal power barrage at the coast, and furthermore the floating dam is provided with a tidal power generator. A turbine set is judiciously combined with the floating dam which can move vertically by means of water buoyancy. In tide rising, when the water level outside a gate reaches a high water mark, the floating dam is started and the tidal power generator is started. Afterwards the floating dam rises and the tidal power generator performs power generation. When tidewater reaches a highest water mark, a gate top device pulls the gate for closing. In tide ebbing, when the water level outside the gate is lower than a lowest water level, the floating dam is loosened and the tidal power generator is started. Afterwards the floating dam drops and the tidal power generator performs power generation. When the water level in the gate is same with the water level out of the gate and the floating dam does not drop, the floating dam is locked. The tidal power generation floating dam has advantages of improving power generation efficiency, utilizing a natural resource to a relatively large extent, and reducing electric power consumption.
The invention provides a floating dam which is suitable for tidal power generation and is applied on tidal power barrage at the coast, and furthermore the floating dam is provided with a tidal power generator. A turbine set is judiciously combined with the floating dam which can move vertically by means of water buoyancy. In tide rising, when the water level outside a gate reaches a high water mark, the floating dam is started and the tidal power generator is started. Afterwards the floating dam rises and the tidal power generator performs power generation. When tidewater reaches a highest water mark, a gate top device pulls the gate for closing. In tide ebbing, when the water level outside the gate is lower than a lowest water level, the floating dam is loosened and the tidal power generator is started. Afterwards the floating dam drops and the tidal power generator performs power generation. When the water level in the gate is same with the water level out of the gate and the floating dam does not drop, the floating dam is locked. The tidal power generation floating dam has advantages of improving power generation efficiency, utilizing a natural resource to a relatively large extent, and reducing electric power consumption.
Tidal power generation floating dam
LOU BAODONG (Autor:in)
16.12.2015
Patent
Elektronische Ressource
Englisch
IPC:
E02B
HYDRAULIC ENGINEERING
,
Wasserbau
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