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Thermal-relaxation dissipation in thermoacoustic systems

机译:热声系统中的热松弛耗散

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Pressure oscillations in a sound wave are accompanied by temperature oscillations. In the presence of a solid boundary, the heat transfer from the oscillating gas to the solid boundary causes dissipation of the acoustic energy. This results in the attenuation of the sound wave. This thermal-relaxation dissipation process has a negative effect on the performance of thermoacoustic heat pumps and engines. A simple analytical model describing the interaction between an acoustic wave and a solid boundary is presented. The effect of the solid material and gas type on thermal-relaxation dissipation is analysed. The main result of this model is that the choice of a solid material with the smallest possible heat capacity per unit area in combination with a gas with the largest possible heat capacity per unit area minimises the thermal-relaxation dissipation. From the different combinations solid-gas used in the calculations, the combination cork-helium leads to the lowest thermal attenuation of the sound wave. In this case, the heat transfer from the gas to the wall less damps the temperature oscillations. However, because of the porosity of cork that may cause some problems, it is suggested that the combination polyester-helium can be used in practice to minimise the thermal-relaxation losses.
机译:声波中的压力振荡伴随着温度振荡。在存在固体边界的情况下,从振荡气体到固体边界的热传递导致声能的耗散。这导致声波的衰减。这种热松弛耗散过程对热声热泵和发动机的性能产生负面影响。一个简单的分析模型描述了声波和固体边界之间的相互作用。分析了固体材料和气体类型对热松弛耗散的影响。该模型的主要结果是,每单位面积具有尽可能小的热容量的固体材料与每单位面积具有尽可能大的热容量的气体的选择可以最大程度地减少热松弛耗散。从计算中使用的固体气体的不同组合中,软木-氦气组合导致声波的最低热衰减。在这种情况下,从气体到壁的热传递较少地抑制温度振荡。但是,由于软木塞的多孔性可能会引起一些问题,因此建议在实际中使用聚酯-氦气组合以最大程度地减少热松弛损失。

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