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A hybrid particle approach for continuum and rarefied flow simulation

机译:用于连续和稀疏流模拟的混合粒子方法

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A hybrid particle scheme is presented for the simulation of compressible gas flows involving both continuum regions and rarefied regions with strong translational nonequilibrium. The direct simulation Monte Carlo (DSMC) method is applied in rarefied regions, while remaining portions of the flowfield are simulated using a DSMC-based low diffusion particle method for inviscid flow simulation. The hybrid scheme is suitable for either steady state or unsteady flow problems, and can simulate gas mixtures comprising an arbitrary number of species. Numerical procedures are described for strongly coupled two-way information transfer between continuum and rarefied regions, and additional procedures are outlined for the determination of continuum breakdown. The hybrid scheme is evaluated through a comparison with DSMC simulation results for a Mach 6 flow of N2 over a cylinder, and good overall agreement is observed. Large potential efficiency gains (over three orders of magnitude) are estimated for the hybrid algorithm relative to DSMC in a simple example involving a rarefied expansion flow through a small nozzle into a vacuum chamber.
机译:提出了一种混合粒子方案,用于模拟具有连续平移非平衡区的连续区域和稀疏区域的可压缩气流。直接模拟蒙特卡罗(DSMC)方法应用于稀疏区域,而流场的其余部分则使用基于DSMC的低扩散粒子方法进行模拟,以进行无粘性流动模拟。混合方案适用于稳态或非稳态流动问题,并且可以模拟包含任意种类的气体混合物。描述了用于在连续区域和稀疏区域之间进行强耦合双向信息传递的数值过程,并概述了确定连续区域分解的其他过程。通过与DSMC仿真结果进行比较,对混合气方案进行了比较,以比较N2在气缸上的N2流量,并观察到良好的总体一致性。相对于DSMC,在一个简单的示例中,混合算法相对于DSMC而言,具有很大的潜在效率增益(超过三个数量级),该稀疏的膨胀流通过一个小的喷嘴进入真空室。

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