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    • 4. 发明公开
    • POWER GENERATION SYSTEM
    • 发电系统
    • EP3264585A1
    • 2018-01-03
    • EP16754996.3
    • 2016-02-23
    • Chiyoda Corporation
    • MATSUDA, KazuoMATSUMOTO, TadashiHIRAI, ToshihideTANAKA, Satoshi
    • H02N11/00H01L35/28H01L35/30
    • H01L35/32B01J19/24B01J2219/00103B01J2219/24C10G7/00F01K7/16F01K13/02F28D9/005F28D9/0093F28F3/083F28F27/02F28F2250/06F28F2275/02F28F2275/04H02N11/00
    • A power generation system that has an increased power generation efficiency and can be substituted for a conventional heat exchanging system is provided. A power generation system 1 comprises a power generation module 2 provided with one or more thermoelectric elements 7A, 7B; a heat exchanger 3; a high-temperature fluid passage 4 including a high-temperature fluid inlet 4A and a high-temperature fluid outlet 4B, the high-temperature fluid passage being connected to the power generation module and the heat exchanger both located between the high-temperature fluid inlet and the high-temperature fluid outlet; and a low-temperature fluid passage 5 including a low-temperature fluid inlet 5A and a low-temperature fluid outlet 5B, the low-temperature fluid passage being connected to the power generation module and the heat exchanger both located between the low-temperature fluid inlet and the low-temperature fluid outlet. The low-temperature fluid passage includes a low-temperature-side bypass passage 5F for bypassing the power generation module, and a low-temperature-side flow rate adjusting valve 50 for adjusting a flow rate of the low-temperature fluid flowing into the power generation module, and a degree of opening of the low-temperature-side flow rate adjusting valve is controlled based on a temperature difference between the high-temperature fluid and the low-temperature fluid immediate after flowing out of the high-temperature fluid outlet and the low-temperature fluid outlet.
    • 提供了具有提高的发电效率并且可以代替传统热交换系统的发电系统。 发电系统1包括设有一个或多个热电元件7A,7B的发电模块2; 热交换器3; 包括高温流体入口4A和高温流体出口4B的高温流体通道4,高温流体通道连接到位于高温流体入口和高温流体出口之间的发电模块和热交换器, 和高温流体出口; 以及包括低温流体入口5A和低温流体出口5B的低温流体通道5,低温流体通道连接至均位于低温流体之间的发电模块和热交换器 进口和低温流体出口。 低温流体通道包括用于绕过发电模块的低温侧旁通通道5F和用于调节流入电源的低温流体的流量的低温侧流量调节阀50 并基于从高温流体出口流出后的高温流体和低温流体之间的温度差来控制低温侧流量调节阀的开度,并且, 低温流体出口。