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The Correctness of the Simplified Bernoulli Trial (SBT) Collision Scheme of Calculations of Two-Dimensional Flows

机译:简化Bernoulli试验(SBT)碰撞方案的二维流程计算的正确性

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摘要

Micro-electromechanical systems (MEMS) have developed rapidly in recent years in various technical fields that have increased their interest in the Direct Simulation Monte Carlo (DSMC) method. In this paper, we present a simple representation of the DSMC collision scheme and investigate the correctness of the Simplified Bernoulli Trial (SBT) collision scheme for the calculation of two-dimensional flows. The first part of the collision scheme, which determines collision pairs, is presented following the derivation of the expression for the mean free path and using the cumulative distribution function. Approaches and conclusions based on one-dimensional flows are not always directly applicable to two- and three-dimensional flows. We investigated SBT correctness by using the two-dimensional pressure-driven gas flow of monoatomic gas as a test case. We studied the influence of shuffling of the list of particles per cell (PPC) before the collision scheme’s execution, as well as the minimal and maximal number of PPC, on the correctness of the solution. The investigation showed that shuffling and the number of PPC played an important role in the correctness of SBT. Our recommendations are straightforwardly applicable to three-dimensional flows. Finally, we considered the mixing of two gases and compared the results available in the literature.
机译:微机电系统(MEMS)近年来在各种技术领域迅速发展,这些领域增加了对直接仿真蒙特卡罗(DSMC)方法的兴趣。在本文中,我们介绍了DSMC碰撞方案的简单表示,并调查了用于计算二维流的简化Bernoulli试验(SBT)碰撞方案的正确性。确定碰撞对的碰撞方案的第一部分在均值的自由路径的表达式的推导之后呈现,并使用累积分布函数。基于一维流动的方法和结论并不总是直接适用于两维流。我们通过使用单原子气体的二维压力驱动的气体流量来调查SBT正确性作为测试用例。我们在碰撞方案的执行之前研究了每个细胞(PPC)的粒子列表的影响,以及溶液的正确性上的最小和最大数量的PPC。调查表明,随机脉冲和PPC的数量在SBT的正确性中起重要作用。我们的建议简而言之适用于三维流动。最后,我们考虑了两种气体的混合,并比较了文献中可用的结果。

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