Enhancing heat-driven acoustic characteristics of standing wave thermoacoustic engines by using corrugated stack

Lixian Guo, Dan Zhao
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Abstract

The present work considers the heat-driven acoustic characteristics and dynamic thermal-fluid flow fields of a standing-wave thermoacoustic engine (SWTAE) by using sinusoidally shaped corrugated stack surfaces. 3-D numerical SWTAE models are developed and validated, aiming to examine the heat-driven acoustic effects caused by different corrugation amplitudes and wave-lengths of the sinusoidal stack surface. The results demonstrate that corrugated-shaped stack channels increase the contact area of the working gas in the stack area, and the thermos-acoustic conversion is more amplified. Compared to the SWTAE with uniform-shaped stack, the corrugated-shaped stack exhibit enhanced acoustic power output while maintaining a constant acoustic oscillation frequency. With the corrugation peak and wave-length of the sinusoidal stack are 2 and 0.2 mm, respectively, the amplitude and acoustic power of the acoustic pressure oscillations increase by 10.12% and 17.31%, respectively, in comparison with that of the conventional SWTAE. However, when the corrugation peak exceeds 0.4 mm, stronger nonlinear acoustics and flow effects are observed in the stack channels, leading to a reduction in the heat-driven acoustic power output, and thermo-acoustics energy conversion efficiency. The developed model highlights the effects of the corrugated-shaped stack on enhancing acoustic power output and thermo-acoustic conversion efficiency.
利用波纹堆栈增强驻波热声发动机的热驱动声学特性
本研究考虑了使用正弦波形波纹堆叠面的驻波热声发动机(SWTAE)的热驱动声学特性和动态热流体流场。建立并验证了 SWTAE 的三维数值模型,旨在研究正弦波堆表面不同波纹振幅和波长引起的热驱动声学效应。结果表明,波纹状烟囱通道增加了工作气体在烟囱区域的接触面积,热声转换被进一步放大。与采用均匀形状烟道的 SWTAE 相比,波纹状烟道在保持恒定声波振荡频率的同时,还能提高声功率输出。当正弦波堆的波纹峰值和波长分别为 2 毫米和 0.2 毫米时,声压振荡的振幅和声功率与传统的 SWTAE 相比分别增加了 10.12% 和 17.31%。然而,当波纹峰值超过 0.4 毫米时,叠层通道中会出现更强的非线性声学和流动效应,导致热驱动声功率输出和热声能量转换效率降低。所开发的模型强调了波纹状烟囱对提高声功率输出和热声转换效率的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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