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The usefulness of higher-order constitutive relations for describing the Knudsen layer

机译:高阶本构关系对描述Knudsen层的有用性

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The Knudsen layer is an important rarefaction phenomenon in gas flows in and around microdevices. Its accurate and efficient modeling is of critical importance in the design of such systems and in predicting their performance. In this paper we investigate the potential that higher-order continuum equations may have to model the Knudsen layer, and compare their predictions to high-accuracy DSMC (direct simulation Monte Carlo) data, as well as a standard result from kinetic theory. We find that, for a benchmark case, the most common higher-order continuum equation sets (Grad's 13 moment, Burnett, and super-Burnett equations) cannot capture the Knudsen layer. Variants of these equation families have, however, been proposed and some of them can qualitatively describe the Knudsen layer structure. To make quantitative comparisons, we obtain additional boundary conditions (needed for unique solutions to the higher-order equations) from kinetic theory. However, we find the quantitative agreement with kinetic theory and DSMC data is only slight. (c) 2005 American Institute of Physics.
机译:努森层是微型设备内部和周围的气流中的一种重要稀疏现象。其准确有效的建模对于此类系统的设计和预测其性能至关重要。在本文中,我们研究了高阶连续方程可能需要对Knudsen层进行建模的可能性,并将其预测结果与高精度DSMC(直接模拟蒙特卡洛)数据以及动力学理论的标准结果进行比较。我们发现,在基准情况下,最常见的高阶连续统方程组(Grad的13矩,Burnett和super-Burnett方程)无法捕获Knudsen层。但是,已经提出了这些方程族的变体,其中一些可以定性地描述Knudsen层的结构。为了进行定量比较,我们从动力学理论中获得了附加的边界条件(需要高阶方程的唯一解)。但是,我们发现与动力学理论的定量一致性和DSMC数据仅是微小的。 (c)2005年美国物理研究所。

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