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热声热机微热力学循环的最优性能 被引量:9

Performance Optimization of a Thermoacoustic Engine Micro-cycle
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摘要 建立了热声热机微热力学循环模型,用有限时间热力学分析了其最优性能,导出了存在传热损失时热声热机微热力学循环的生态学性能与效率最佳特性关系,以及声功率和损失率与效率的性能关系,所得结论对实际热声热机的设计具有一定的理论指导意义。 The thermoacoustic engine micro-cycle is of great importance to the thermoacoustic phenomenon. Taking an ecological optimization criterion as the objective, the optimal performance of a thermoacoustic engine micro-cycle model with heat transfer loss was analyzed by using finite-time thermodynamics. The relations between the ecological criterion and the efficiency, the sound work output rate and the efficiency, as well as the energy loss rate and the efficiency relation of the micro-cycle are investigated by numerical examples. The results obtained herein can provide some theoretical guidance for the design of a real thermoacoustic engine.
出处 《武汉理工大学学报》 CAS CSCD 北大核心 2009年第14期130-133,共4页 Journal of Wuhan University of Technology
基金 国家自然科学基金(50676068) 湖北省教育厅重点项目(D200615002)
关键词 热声热机 微热力学循环 最优性能 有限时间热力学 生态学函数 thermoacoustic engine micro-cycle optimal performance finite time thermodynamics ecological function
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参考文献4

  • 1Back S, Swift G W. A Thermoacoustic Stirling Wave Heat Engine[J ]. Nature, 1999,399:335-338.
  • 2Zhou G, Li Q, Li Z Y, et al. A Miniature Thermoacoustic Stirling Engine [J]. Energy Conversion and Management, 2008, 49(6) : 1785-1792.
  • 3Bejan A. Entropy Generation Minimization[J]. J Appl, Phys, 1996,79(3) : 1191-1218.
  • 4Chen L, Sun F. Advances in Finite Time Thermodynamics: Analysis and Optimization [M]. New York: Nova Science Publishers, 2004.

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