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Reciprocating circulation hydroelectric power generation system for reservoir
The invention discloses a reservoir reciprocating circulation hydroelectric power generation system which comprises a main reservoir, at least one auxiliary reservoir, at least two siphon mechanisms, at least one drainage pipe mechanism and at least one generator device, the main reservoir and the auxiliary reservoir are the same in length, width and height and climb upwards layer by layer in a stepped mode along a mountain, the main reservoir is arranged on the bottom layer, and the auxiliary reservoir is arranged on the bottom layer. The installation number and height of the auxiliary reservoirs are set according to the water level difference requirement; the number, the pipe diameter and the length of siphons of the siphon mechanism and the liquid level pressure difference in the long-arm siphon pipe and the short-arm siphon pipe are completely the same, and reservoir equipment is completely the same according to flow requirements. The invention is suitable for the technical field of hydroelectric power generation, each reservoir delivers water layer by layer to the top-layer auxiliary reservoir at required flow, and then the top-layer auxiliary reservoir generates impact force of potential energy of a huge water flow column by virtue of huge water level difference and flow downward flushing to push the water turbine of the generator to circularly run to generate power.
本发明公开了水库往复循环水利发电系统,包括:一主水库、至少一副水库、至少二虹吸管机构、至少一排水管机构、及至少一发电机装置,其中:该主水库及该副水库的长宽高相同,依山成阶梯式往上层层爬升,该主水库设在底层,该副水库装设数量及高度,依水位落差需求设置;该虹吸管机构的虹吸管数量、管径、长度、及长短两臂虹吸管管内的液面压力差皆完全相同,依流量的需求设置,各水库设备完全相同;本发明适用于水利发电技术领域,各水库以需求的流量将水层层送往顶层副水库,再由顶层副水库该排水管机构,藉巨大的水位落差和流量往下冲产生巨大水流柱的势能的撞击力,推动该发电机的水轮机往复循环运转发电。
Reciprocating circulation hydroelectric power generation system for reservoir
The invention discloses a reservoir reciprocating circulation hydroelectric power generation system which comprises a main reservoir, at least one auxiliary reservoir, at least two siphon mechanisms, at least one drainage pipe mechanism and at least one generator device, the main reservoir and the auxiliary reservoir are the same in length, width and height and climb upwards layer by layer in a stepped mode along a mountain, the main reservoir is arranged on the bottom layer, and the auxiliary reservoir is arranged on the bottom layer. The installation number and height of the auxiliary reservoirs are set according to the water level difference requirement; the number, the pipe diameter and the length of siphons of the siphon mechanism and the liquid level pressure difference in the long-arm siphon pipe and the short-arm siphon pipe are completely the same, and reservoir equipment is completely the same according to flow requirements. The invention is suitable for the technical field of hydroelectric power generation, each reservoir delivers water layer by layer to the top-layer auxiliary reservoir at required flow, and then the top-layer auxiliary reservoir generates impact force of potential energy of a huge water flow column by virtue of huge water level difference and flow downward flushing to push the water turbine of the generator to circularly run to generate power.
本发明公开了水库往复循环水利发电系统,包括:一主水库、至少一副水库、至少二虹吸管机构、至少一排水管机构、及至少一发电机装置,其中:该主水库及该副水库的长宽高相同,依山成阶梯式往上层层爬升,该主水库设在底层,该副水库装设数量及高度,依水位落差需求设置;该虹吸管机构的虹吸管数量、管径、长度、及长短两臂虹吸管管内的液面压力差皆完全相同,依流量的需求设置,各水库设备完全相同;本发明适用于水利发电技术领域,各水库以需求的流量将水层层送往顶层副水库,再由顶层副水库该排水管机构,藉巨大的水位落差和流量往下冲产生巨大水流柱的势能的撞击力,推动该发电机的水轮机往复循环运转发电。
Reciprocating circulation hydroelectric power generation system for reservoir
水库往复循环水利发电系统
WANG ZIXIN (Autor:in) / WANG JUEREN (Autor:in) / WANG MEIFANG (Autor:in)
15.07.2022
Patent
Elektronische Ressource
Chinesisch
IPC:
E02B
HYDRAULIC ENGINEERING
,
Wasserbau
/
F03B
MACHINES OR ENGINES FOR LIQUIDS
,
Kraft- und Arbeitsmaschinen oder Kraftmaschinen für Flüssigkeiten
/
F04F
PUMPING OF FLUID BY DIRECT CONTACT OF ANOTHER FLUID OR BY USING INERTIA OF FLUID TO BE PUMPED
,
Pumpen von Arbeitsfluiden durch unmittelbare Berührung mit einem anderen Arbeitsfluid oder durch Ausnutzung der Trägheit des zu pumpenden Arbeitsfluids
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