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Stability of thermal transpiration flows in rectangular enclosures - Axisymmetric disturbances

机译:矩形外壳中热蒸发流的稳定性-轴对称扰动

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Occurrence of instabilities for thermal transpiration flow of rarefied gases has been discussed in two-dimensions. Only axisymmetric disturbances have been considered due to symmetry of the basic flow. Effect of four second-order slip models (Cercignani, Deissler, Schamberg, and Beskok) and a first-order slip model (Maxwell) on the limits of the proposed instability have been examined. We have found that Beskok model is always stable to axisymmetric disturbances and Maxwell model is more stable compared with the other second order models. Variation of critical Reynolds number for different rarefaction levels (Knudsen numbers) has also been studied. Increase in Knudsen number leads to monotonic decrease in critical Re numbers. (c) 2006 Elsevier Ltd. All rights reserved.
机译:二维讨论了稀有气体热蒸发流不稳定性的发生。由于基本流的对称性,仅考虑轴对称扰动。研究了四个二阶滑移模型(Cercignani,Deissler,Schamberg和Beskok)和一阶滑移模型(Maxwell)对所提出的不稳定性的影响。我们发现,Beskok模型对于轴对称扰动总是稳定的,而Maxwell模型与其他二阶模型相比更稳定。还研究了不同稀疏度(克努森数)的临界雷诺数的变化。 Knudsen数的增加导致临界Re数单调减少。 (c)2006 Elsevier Ltd.保留所有权利。

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