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Influence of the gas-surface interaction model on time-dependent rarefied gas simulations

机译:气体表面相互作用模型对随时间变化的稀有气体模拟的影响

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In this paper, the influence of the gas-surface interaction on the time-dependent rarefied gas flow through a short tube into vacuum is investigated. Due to a significant scale separation, the flow is simulated using a hybrid scheme proposed by Vargas et al. [1, 2], in which the pressure change in the upstream chamber is coupled to the flow rate obtained by the Direct Simulation Monte Carlo (DSMC) computations. First, the influence of gas-surface interaction is demonstrated through comparison of DSMC simulation results obtained for different values of accommodation coefficients. The obtained dataset is then used to show how the boundary conditions can affect the time-dependent gas flow, even when applied on the small surface area of the device. It is argued that the domain of possible solutions is bounded by the cases of specular and diffuse scattering. Furthermore, it is investigated how this domain can be affected by measurement uncertainties present in the experimental setup. Next, the analysis of the gas-surface interaction is extended to binary mixtures. In the end, it is discussed how the obtained results can be used in order to improve the efficiency of gas separation mechanisms. (C)16 Elsevier Ltd. All rights reserved.
机译:本文研究了气体表面相互作用对短管进入真空的时间依赖性稀薄气体流的影响。由于存在明显的水垢分离,因此使用Vargas等人提出的混合方案来模拟流量。 [1,2],其中上游腔室中的压力变化与通过直接模拟蒙特卡洛(DSMC)计算获得的流速相关。首先,通过比较不同调节系数值获得的DSMC模拟结果来证明气-面相互作用的影响。然后,将获得的数据集用于显示边界条件如何影响与时间有关的气流,即使将其应用到设备的小表面积上也是如此。有人认为,可能解的范围受镜面和散射散射的情况限制。此外,研究了如何通过实验设置中存在的测量不确定性来影响该域。接下来,对气体表面相互作用的分析扩展到二元混合物。最后,讨论了如何使用获得的结果来提高气体分离机理的效率。 (C)16 Elsevier Ltd.保留所有权利。

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