[1]吴锋, 李青, 郭方中, 等. 热声理论的研究进展\[J\]. 武汉工程大学学报, 2012, 34(1): 16.
[2]Swift G W. Thermoacoustic engines\[J\]. J Acoust Soc Am, 1984, 84(4): 11451180.
[3]Tominaga A. Thermodynamic aspects of thermoacoustic theory\[J\]. Cryogenics, 1995, 35(7): 427440.
[4]Hofler T J. Thermoacoustic refrigerator design and performance\[D\]. San Diego: Physics Department, University of California at San Diego, 1986.
[5]Swift G W. Analysis and performance of a large thermoacoustic engine\[J\]. J Acoust Soc Am, 1992, 92(3): 15511563.
[6]Swift G W, Keolian R M. Thermoacoustics in pinarray stacks\[J\]. J Acoust Soc Am, 1993, 94(2): 941943.
[7]Hayden M E, Swift G W. Thermoacoustic relaxation in a pinarray stack\[J\]. J Acoust Soc Am, 1997, 102(5): 27142721.
[8]Gibson R J, Nessler F S, Keolian R M. Measurements of a thermoacoustic pin stack\[J\]. J Acoust Soc Am, 1996, 100(4): 27352742.
[9]Bejan A. The thermodynamic design of heat and mass transfer processes and devices\[J\]. Heat and Fluid Flow, 1987, 8(4): 398406.
[10]Bejan A. Entropy generation through heat and fluid flow\[M\]. New York: Wiley, 1982.
[11]Shohel Mahmud, Roydon Andrew Fraser. The Thermoacoustic irreversibility for a singleplate thermoacoustic system\[J\]. International Journal of Heat and Mass Transfer. 2006, 49: 34483461.
[12]Hadi Babaei, Kamran Siddiqui. Design and optimization of thermoacoustic devices\[J\]. Energy Conversion and Management, 2008, 49: 35853598.
[13]Ishikawa H, Hobson P A. Optimisation of heat exchanger design in a thermoacoustic engine using a second law analysis\[J\]. Heat mass transfer, 1996, 23(3): 325334.
[14]吴锋, 陈林根, 孙丰瑞,等.斯特林机的有限时间热力学优化\[M\]. 北京: 化学工业出版社, 2008.
[15]余仕成. 平板型回热器的不可逆熵产率分析\[J\]. 武汉化工学院学报, 1999, 21(2): 8589.
[16]余仕成, 王克协, 吴锋. 钢丝型回热器的不可逆熵产率分析\[J\], 吉林大学自然科学学报, 1999, 3: 5256.