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Maximal nighttime electrical power generation via optimal radiative cooling

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arxiv 2008.04190 v1 pith:SEY3AHYH submitted 2020-08-10 physics.app-ph physics.optics

classification physics.app-phphysics.optics
keywords powergenerationradiativethermoelectriccoolingoptimalsystemarea
verification ladder T0 review T1 audit T2 compute T3 formal
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We present a systematic optimization of nighttime thermoelectric power generation system utilizing radiative cooling. We show that an electrical power density over 2 W/m2, two orders of magnitude higher than the previously reported experimental result, is achievable using existing technologies. This system combines radiative cooling and thermoelectric power generation and operates at night when solar energy harvesting is unavailable. The thermoelectric power generator (TEG) itself covers less than 1 percent of the system footprint area when achieving this optimal power generation, showing economic feasibility. We study the influence of emissivity spectra, thermal convection, thermoelectric figure of merit and the area ratio between the TEG and the radiative cooler on the power generation performance. We optimize the thermal radiation emitter attached to the cold side and propose practical material implementation. The importance of the optimal emitter is elucidated by the gain of 153% in power density compared to regular blackbody emitters.

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