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首页> 外文期刊>Journal of Heat Transfer >Heat Transfer Enhancement by Acoustic Streaming in an Enclosure
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Heat Transfer Enhancement by Acoustic Streaming in an Enclosure

机译:通过外壳中的声流增强传热

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Thermal convection in a differentially heated shallow enclosure due to acoustic excitations induced by the vibration of a vertical side wall is investigated numerically. The fully compressible form of the Navier-Stokes equations is considered and an explicit time-marching algorithm is used to track the acoustic waves. Numerical solutions are obtained by employing a highly accurate flux corrected transport algorithm. The frequency of the wall vibration is chosen such that an acoustic standing wave forms in the enclosure. The interaction of the acoustic standing waves and the fluid properties trigger steady secondary streaming flows in the enclosure. Simulations were also carried out for "off-design" vibration frequency where no standing waves were formed. The effects of steady second order acoustic streaming structures are found to be more significant than the main oscillatory flow field on the heat transfer rates. The model developed can be used for the analysis of flow and temperature fields driven by acoustic transducers and in the design of high performance resonators for acoustic compressors.
机译:数值研究了由于垂直侧壁振动引起的声激发而导致的差热浅壳中的热对流。考虑了Navier-Stokes方程的完全可压缩形式,并且使用了显式的时间行进算法来跟踪声波。通过采用高精度的磁通校正传输算法获得数值解。选择壁振动的频率,以便在外壳中形成声驻波。声驻波和流体特性的相互作用触发了外壳中稳定的二次流。还针对没有形成驻波的“非设计”振动频率进行了仿真。发现稳定的二阶声流结构对传热速率的影响比主振荡流场的影响更大。开发的模型可用于分析由声换能器驱动的流场和温度场,并可用于设计用于声压缩机的高性能谐振器。

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