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Rarefied Gas Flow through Porous Media: Experiments and Numerical Simulation

机译:稀土气流通过多孔介质:实验和数值模拟

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In this paper we present the results of an experimental analysis concerning non-isothermal gas flow through a porous medium made of a packed bed of spheres. This problem is prototypal for more complex geometries which can be found in Micro Electro-Mechanics Systems (MEMS) where the heat transfer is a crucial issue. The characteristics length can be so tiny that gas flow regime could fall in almost rarefied regime where the continuum procedures are not valid. The experimental investigation covers a regime which spans from the continuum to the rarefied one and the Knudsen number varies from 0.0054 to 2.9. In particular here are reported results concerning gas flows through two concentric cylinders with surfaces at given temperatures. The mass flow rate and the radial and longitudinal distributions of the temperature are presented for different values of the Knudsen number. Finally some comparisons with numerical predictions are provided and discussed thoroughly.
机译:在本文中,我们介绍了通过由填充的球形床制成的多孔介质的非等温气体流动的实验分析结果。该问题是型原型,用于更复杂的几何形状,其可以在微电机系统(MEMS)中找到,其中传热是一个至关重要的问题。该特性长度可能是如此小,即气流制度可能属于几乎稀薄的制度,其中连续程序无效。实验研究涵盖了从连续统一到稀有的政权,并且knudsen数因0.0054而异。特别地,这里据报道,关于气体流过两个具有在给定温度的同心圆柱体的结果。呈现温度的质量流量和径向和纵向分布,用于knudsen数的不同值。最后提供了一些具有数值预测的比较并彻底讨论。

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