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Simulation of flow in single and double-sided lid driven square cavities by direct simulation Monte Carlo method

机译:直接仿真蒙特卡罗方法模拟单侧和双面盖式驱动方腔流动的仿真

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The gaseous flow of monoatomic Argon in a double-sided lid-driven square cavity is investigated using the direct simulation Monte Carlo method for different degrees of rarefaction. The effect of the direction of wall motion and the magnitude of wall velocities on the flow physics are analyzed. Unlike the single-sided cavity flow, the double-sided cavity flow generates different vortex formations especially for the parallel wall motion of the wall. The problem, therefore, merits a thorough study, which is attempted in the present paper using the direct simulation Monte Carlo method. Certain complex flow phenomena which are not captured using the numerical methods for continuum flows are revealed by the current method employed in the study. Two counter-rotating vortices are observed for the parallel wall motion whereas only one primary vortex can be observed for the antiparallel case. The variation in the flow and thermal properties is found to be significant at the onset of the transition regime and much smaller in the free molecular regime.
机译:使用直接仿真蒙特卡罗方法对不同程度的稀疏的直接模拟蒙特卡罗方法研究了单原子型氩气的气体流。分析了壁运动方向的影响及流量物理学上的壁速度的大小。与单面腔流量不同,双面腔流量产生不同的涡流结构,尤其是墙壁的平行壁运动。因此,问题是彻底的研究,该研究是使用直接仿真蒙特卡罗方法在本文中进行的。通过研究中采用的当前方法揭示了不使用连续流量的数值方法捕获的某些复杂的流动现象。对于平行壁运动,观察到两个反向旋转涡旋,而只能观察到一个用于反平行案例的一个主要涡流。发现流动和热性质的变化在过渡方案的开始处是显着的,并且在游离分子状态下更小。

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