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Construction and experimental investigation on a solar-powered thermoacoustic engine

  • Xin Gu
  • , Ya Ling He
  • , Chao Shen
  • , Dong Wei Zhang
  • , Yu Guang Li
  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

A solar-powered thermoacoustic engine, consisting of a dual-axis tracking Fresnel lens collector and a standing-wave thermoacoustic engine, was designed, constructed and tested. Experiments were carried out to examine the influence of working gas, stack thickness and resonator length on the onset temperature, damping temperature and pressure amplitude. Experimental results show that, when the molar ratio of helium is 0.25~0.50, gas mixtures has lower onset and damping temperatures and higher pressure amplitude. When the stack thickness decreases from 0.45 mm to 0.15 mm, the onset and damping temperatures decrease while the pressure amplitude increases. As the resonator becomes longer, the onset and damping temperatures decrease while the pressure amplitude increases. When the resonator is 2.1 m, the engine obtains minimum onset temperature of 297°C, minimum damping temperature of 176°C and maximum pressure amplitude of 69.1 kPa.

Original languageEnglish
Pages (from-to)1040-1044
Number of pages5
JournalKung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics
Volume35
Issue number6
StatePublished - Jun 2014

Keywords

  • Mixture ratio
  • Resonator
  • Solar energy utilization
  • Stack
  • Thermoacoustic engine

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