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公开(公告)号:US10267295B2
公开(公告)日:2019-04-23
申请号:US15617608
申请日:2017-06-08
Applicant: Zhejiang University
Inventor: Gang Xiao , Min Qiu , Mingjiang Ni , Qiang Li , Wen Yang , Zhongyang Luo , Kefa Cen
Abstract: The present application discloses a method and an apparatus for solar power generation through gas volumetric heat absorption based on characteristic absorption spectrum. A radiation energy conversion device absorbs concentrated solar radiation and converts radiation energy into thermal energy; the thermal energy is transferred to the other side of the radiation energy conversion device and then is converted into radiation energy; and the energy is transferred in a receiver cavity. The working gas from the outlet of a recuperator flows into the receiver cavity and absorbs the radiation energy. The heated working gas with high temperature flows into a turbine, doing shaft work through expansion. The expanded working gas flows through the recuperator to exchange heat. The working gas flows into a cooler, a compressor and the recuperator in sequence, and then flows into a receiver cavity to be heated volumetrically, completing a thermal power cycle.
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公开(公告)号:US20180038353A1
公开(公告)日:2018-02-08
申请号:US15617608
申请日:2017-06-08
Applicant: Zhejiang University
Inventor: Gang Xiao , Min Qiu , Mingjiang Ni , Qiang Li , Wen Yang , Zhongyang Luo , Kefa Cen
CPC classification number: F03G6/04 , F02C1/05 , F03G6/064 , F24S70/12 , F24S80/20 , F24S90/00 , F24S2080/03 , Y02E10/46
Abstract: The present application discloses a method and an apparatus for solar power generation through gas volumetric heat absorption based on characteristic absorption spectrum. A radiation energy conversion device absorbs concentrated solar radiation and converts radiation energy into thermal energy; the thermal energy is transferred to the other side of the radiation energy conversion device and then is converted into radiation energy; and the energy is transferred in a receiver cavity. The working gas from the outlet of a recuperator flows into the receiver cavity and absorbs the radiation energy. The heated working gas with high temperature flows into a turbine, doing shaft work through expansion. The expanded working gas flows through the recuperator to exchange heat. The working gas flows into a cooler, a compressor and the recuperator in sequence, and then flows into a receiver cavity to be heated volumetrically, completing a thermal power cycle.
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