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Numerical investigations of flow and energy fields near a thermoacoustic couple

机译:热声对附近流场和能量场的数值研究

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摘要

The flow field and the energy transport near thermoacoustic couples are simulated using a 2D full Navier-Stokes solver. The thermoacoustic couple plate is maintained at a constant temperature; plate lengths, which are short and long compared with the particle displacement lengths of the acoustic standing waves, are tested. Also investigated are the effects of plate spacing and the amplitude of the standing wave. Results are examined in the form of energy vectors, particle paths, and overall entropy generation rates. These show that a net heat-pumping effect appears only near the edges of thermoacoustic couple plates, within about a particle displacement distance from the ends. A heat-pumping effect can be seen even on the shortest plates tested when the plate spacing exceeds the thermal penetration depth. It is observed that energy dissipation near the plate increases quadratically as the plate spacing is reduced. The results also indicate that there may be a larger scale vortical motion outside the plates which disappears as the plate spacing is reduced. (C) 2002 Acoustical Society of America.
机译:使用二维完整的Navier-Stokes解算器模拟了热声偶附近的流场和能量传输。热声耦合板保持恒温。测试了与声驻波的粒子位移长度相比较短和较长的平板长度。还研究了板间距和驻波幅度的影响。以能量矢量,粒子路径和整体熵产生率的形式检查结果。这些表明净热泵吸作用仅出现在热声耦合板的边缘附近,在距端部大约一个粒子位移距离内。当板间距超过热穿透深度时,即使在最短的测试板上也可以看到热泵作用。可以看出,随着板间距的减小,板附近的能量耗散呈二次方增加。结果还表明,板外可能存在较大规模的涡旋运动,随着板间距的减小,涡旋运动会消失。 (C)2002年美国声学学会。

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