首页> 外文会议>International Conference on Nanochannels, Microchannels and Minichannels; 20070618-20; Puebla(MX) >NUMERICAL MODELS OF GAS FLOW AND HEAT TRANSFER IN MICROSCALE CHANNELS: CAPTURING RAREFACTION BEHAVIOUR USING A CONSTITUTIVE SCALING APPROACH
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NUMERICAL MODELS OF GAS FLOW AND HEAT TRANSFER IN MICROSCALE CHANNELS: CAPTURING RAREFACTION BEHAVIOUR USING A CONSTITUTIVE SCALING APPROACH

机译:微型通道内气体流动和传热的数值模型:使用本构比方法捕获比吸收行为

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In this paper we discuss the physics of rarefied gas flows at the micro-scale, including discontinuities of momentum and energy at solid boundaries, and the Knudsen layer (a region within one to two mean free paths of any solid surface where non-equilibrium flow features are dominant.) We describe how scaling the constitutive relations of the Navier-Stokes-Fourier equation set can capture key rarefaction behaviour observed in gas microsystems, and how a new implementation of this approach in fully compressible, non-isothermal CFD facilitates the analysis of "real-world" engineering problems. Details of our implementation are given, as are the results of a compressible Couette flow case study, successfully validated against available data sources.We also discuss the relative merits of two published constitutive scaling models, comparing their micro-flow predictions for half-space problems, and contrasting their individual means of application. Some practical implications of using constitutive-relation scaling are explained, and some advantages of the technique compared to alternative methods are outlined. To conclude, we examine some limitations of the method, and outline avenues of research that could potentially broaden the scope of what is a flexible and efficient approach to gas microsystem design using CFD.
机译:在本文中,我们讨论了微观尺度上稀有气体流动的物理学,包括在固体边界处的动量和能量的不连续性,以及Knudsen层(非平衡流动的任何固体表面的一到两个平均自由程内的区域)我们将描述缩放Navier-Stokes-Fourier方程组的本构关系如何捕获在气体微系统中观察到的关键稀疏行为,以及在完全可压缩的非等温CFD中这种方法的新实现如何促进分析现实世界中的工程问题。给出了我们的实现细节,以及可压缩的Couette流案例研究的结果,已成功地对照可用数据源进行了验证。我们还讨论了两个已发布的本构比例模型的相对优点,比较了它们对半空间问题的微流预测,并对比各自的应用方式。解释了使用本构关系缩放的一些实际含义,并概述了与替代方法相比该技术的一些优点。总而言之,我们检查了该方法的一些局限性,并概述了可能潜在地拓宽使用CFD进行气体微系统设计的灵活有效方法的研究范围。

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