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Combination of thermoacoustic heat dissipation with oscillating convection: A novel cooling method

机译:热声散热与振荡对流的组合:一种新型冷却方法

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摘要

Thermoacoustic devices including prime movers and refrigerators provide a potential solution to the electronic cooling technology which hinders the development of highly integrated electronic devices. However, the density of thermoacoustic heat flow is inadequate for the requirements of electronic cooling. In this work, thermoacoustic heat dissipation coupled with oscillating convection is investigated by computational fluid dynamics simulations. The results show that thermoacoustic heat dissipation has a similar working mechanism compared with thermoacoustic refrigeration, but the heat dissipation effect and heat flux of heat exchangers in a thermoacoustic heat dissipation system are affected greatly by the temperature gradient, fluid oscillating amplitude and length of stack. The proposed cooling method coupling thermoacoustic heat dissipation and oscillating convection is superior to the oscillating convection alone or thermoacoustic heat dissipation alone.
机译:包括主要搬运工和冰箱的热声器件为电子冷却技术提供了潜在的解决方案,其阻碍了高度集成的电子设备的开发。然而,热声热流的密度对于电子冷却要求不足。在这项工作中,通过计算流体动力学模拟研究了与振荡对流耦合的热声散热。结果表明,与热声制冷相比,热声散热具有类似的工作机制,但热声散热系统中的热交换器的散热效果和热通量受到温度梯度,流体振荡幅度和叠层的长度大大影响。所提出的冷却方法耦合热声散热和振荡对流优于单独的振荡对流或单独的热声散热。

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