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NEW TREATMENT OF PRESSURE BOUNDARY CONDITIONS FOR DSMC METHOD IN MICRO-CHANNEL FLOW SIMULATIONS

机译:微通道流模拟中DSMC方法压力边界条件的新处理

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Using DSMC to simulate micro flows in micro-channels, the numerical treatment of boundary conditions is very important. In this paper, several previous numerical treatments of boundary conditions are discussed with their merits and demerits, and a new treatment method based on the assumption of certain pressure distribution in the cells for boundary conditions is proposed. As comparable validity tests, it is applied in the DSMC simulations for the Poiseuille micro flows in micro-channels with four types of classical pressure boundary conditions. The dimensionless velocity profiles are shown and compared with analytical solutions derived from the Navier-Stokes equations with slip boundary conditions. The pressure distributions along the centerline of the micro-channel with the different boundary conditions are presented, and the simulation solutions agree well with the slip analytical solutions. As the Knudsen number increased, a strong linearity of the pressure distribution can be evidently predicted by the new method. Compared with the inlet and outlet velocity distribution, it is shown that the new method has better efficiency than the previous methods in the convergence.
机译:使用DSMC在微通道中模拟微流量,边界条件的数值处理非常重要。在本文中,边界条件几个以前数值的治疗与它们的优点和缺点,并提出了一种基于在细胞边界条件一定的压力分布的假设一种新的治疗方法的讨论。作为可比的有效性测试,它应用于具有四种类型的经典压力边界条件的微通道中的Poiseuille微流量的DSMC模拟中。显示无量纲速度谱,并与具有具有滑动边界条件的Navier-Stokes方程的分析溶液进行比较。提出了沿着微通道的中心线与不同边界条件的压力分布,模拟解决方案与滑移分析解决方案很好。随着knudsen号的增加,可以通过新方法显然预先预测压力分布的强线性。与入口和出口速度分布相比,显示新方法具有比以前的收敛方法更好的效率。

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