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首页> 外文期刊>International Journal of Heat and Mass Transfer >Modified Patterson temperature jump condition considering viscous heat generation
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Modified Patterson temperature jump condition considering viscous heat generation

机译:考虑粘性热量产生的修正的帕特森温度跳跃条件

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Recently, new type of the Smoluchowski temperature jump condition has been proposed by considering viscous heat generation in rarefied gas flow simulations, and improved prediction of the surface gas temperature in comparing with DSMC data. Two forms of the Patterson jump condition have been revisited for rarefied gas flow simulations in the literature. In this paper, the modified Patterson temperature jump condition is proposed by considering viscous heat generation. We numerically investigate the effect of the slip velocity, the wall temperature and viscous heat generation on the surface gas temperature for external high-speed rarefied gas flow simulations by using various forms of the Patterson jump condition. Three configurations such as the sharp leading-edge flat plate, the sharp 25-55-deg biconic, and micro air-foil NACA0012 are selected for simulations with Mach number from 2 to 15.6, and Knudsen number ranging from 0.04 to 0.26. The simulation results obtained show that the modified Patterson jump condition gives good agreement with the DSMC data, and predict temperatures better than those of new type of the Smoluchowski jump condition for all cases considered. (C) 2018 Elsevier Ltd. All rights reserved.
机译:最近,已经提出了一种新型的Smoluchowski温度跃变条件,该方法考虑了稀薄气流模拟中的粘性热量产生,并且与DSMC数据相比,改进了对地表气体温度的预测。文献中已经对帕特森跳变条件的两种形式进行了重新讨论,以进行稀有气流模拟。在本文中,考虑到粘性热量的产生,提出了改进的帕特森温度跳跃条件。我们通过使用各种形式的帕特森跳跃条件,数值模拟了滑移速度,壁温和粘性热量产生对表面气体温度的影响,以进行外部高速稀薄气体流动模拟。模拟时选择了三种配置,例如锋利的前缘平板,锋利的25-55度双曲线和微型翼型NACA0012,其马赫数为2到15.6,克努森数为0.04到0.26。获得的仿真结果表明,在所有考虑的情况下,改进的Patterson跳跃条件与DSMC数据具有良好的一致性,并且预测温度要优于新型Smoluchowski跳跃条件。 (C)2018 Elsevier Ltd.保留所有权利。

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