2000The Journal of the Acoustical Society of AmericaRequires access

Design and construction of a solar-powdered, thermoacoustically driven, thermoacoustic refrigerator

Jay A. Adeff, Thomas Höfler

Open publisher page 98 citations

Abstract

A thermoacoustically driven thermoacoustic refrigerator powered by solar thermal energy has been successfully built and tested. A 0.457 m diameter Fresnel lens focuses sunlight onto the hot end of a 0.0254 m diameter reticulated vitreous carbon prime mover stack, heating it to 475 °C, thereby eliminating the need for the most troublesome component in a heat driven prime mover, the hot heat exchanger. The high intensity sound waves produced by the prime mover drive a thermoacoustic refrigerator to produce 2.5 watts of cooling power at a cold temperature of 5 °C and a temperature span of 18 °C.

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What this paper is about

A thermoacoustically driven thermoacoustic refrigerator powered by solar thermal energy has been successfully built and tested. A 0.457 m diameter Fresnel lens focuses sunlight onto the hot end of a 0.0254 m diameter reticulated vitreous carbon prime mover stack, heating it to 475 °C, thereby eliminating the need for the most troublesome component in a heat driven prime mover, the hot heat exchanger. The high intensity sound waves produced by the prime mover drive a thermoacoustic refrigerator to produce 2.5 watts of cooling power at a cold temperature of 5 °C and a temperature span of 18 °C.

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OpenAlex reports 98 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A thermoacoustically driven thermoacoustic refrigerator powered by solar thermal energy has been successfully built and tested. A 0.457 m diameter Fresnel lens focuses sunlight onto the hot end of a 0.0254 m diameter reticulated vitreous carbon prime mover stack, heating it to 475 °C, thereby eliminating the need for the most troublesome component in a heat driven prime mover, the hot heat exchanger. The high intensity sound waves produced by the prime mover drive a thermoacoustic refrigerator to produce 2.5 watts of cooling power at a cold temperature of 5 °C and a temperature span of 18 °C.

Key concepts: Prime mover, Refrigerator car, Fresnel lens, Heat exchanger, Thermoacoustic heat engine, Stack (abstract data type), Materials science, Thermoacoustics

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