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Test Particle Monte Carlo Simulation of Return Flux on Various geometric surfaces due to Ambient Scatter of Outgassing Molecules

机译:由于外散分子的环境散射,在各种几何表面上的返回通量测试粒子蒙特卡罗模拟

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The test particle Monte Carlo (TPMC) method is delineated by taking the molecular return flux problem for the flow past a complete sphere as an example and the return flux on a variety of geometric surfaces, including a complete sphere, a circle flat plate, a convex and concave hemisphere, due to ambient scatter of outgassing molecules is simulated by this method. The return flux ratio (RFR) obtained here for the flow past a sphere is in good agreement with previous results. Then, effects of various outgassing and freestream conditions on RFR for flows past three geometric bodies, including a circle flat plate, a convex and concave hemisphere, have been investigated and compared. Moreover, heuristic arguments about geometric, outgassing and freestream governing parameters provide theoretical references for the evaluation and control of return flux contamination.
机译:通过将流量的分子返回通量问题取得完整的球体作为示例,并且在各种几何表面上的返回通量包括完整的球体,包括完整球,圆平板通过该方法模拟凸起和凹半球,由于除气子分子的环境散射。这里获得的返回通量比(RFR)用于流过球体的流量与先前的结果一致。然后,已经研究了在过去三个几何体的RFR上对RFR的各种放气和FreeStream条件的影响,包括圆形平板,凸形和凹入半球。此外,关于几何,外放大和Freestream的启发式论点提供了对返回助污染的评估和控制的理论参考。

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