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The Influence of Gas–Wall and Gas–Gas Interactions on the Accommodation Coefficients for Rarefied Gases: A Molecular Dynamics Study

机译:气壁和气体 - 气体相互作用对稀土气体容纳系数的影响:分子动力学研究

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摘要

Molecular dynamics (MD) simulations are conducted to determine energy and momentum accommodation coefficients at the interface between rarefied gas and solid walls. The MD simulation setup consists of two parallel walls, and of inert gas confined between them. Different mixing rules, as well as existing ab-initio computations combined with interatomic Lennard-Jones potentials were employed in MD simulations to investigate the corresponding effects of gas-surface interaction strength on accommodation coefficients for Argon and Helium gases on a gold surface. Comparing the obtained MD results for accommodation coefficients with empirical and numerical values in the literature revealed that the interaction potential based on ab-initio calculations is the most reliable one for computing accommodation coefficients. Finally, it is shown that gas–gas interactions in the two parallel walls approach led to an enhancement in computed accommodation coefficients compared to the molecular beam approach. The values for the two parallel walls approach are also closer to the experimental values.
机译:进行分子动力学(MD)模拟,以确定稀土气和实心壁之间的界面处的能量和动量容纳系数。 MD仿真设置由两个平行墙壁组成,并且在它们之间限制惰性气体。在MD模拟中使用不同的混合规则,以及与内部leennard-jones电位相结合的现有的ab-initio计算,以研究气体表面相互作用强度对金表面上氩气和氦气的容纳系数的相应影响。将获得的MD结果与文献中具有实证和数值的容纳系数的比较显示,基于AB-Initio计算的交互电位是用于计算容纳系数的最可靠的电位。最后,示出了与分子束方法相比,两个平行壁中的气体相互作用导致计算的容纳系数的增强。两个平行墙壁方法的值也更接近实验值。

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