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Numerical Investigation into the Flow Characteristics of Gas Mixtures in Knudsen Pump with Variable Soft Sphere Model

机译:可变软球模型Chaudsen泵气体混合物流动特性的数值研究

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摘要

In Knudsen pumps with geometric configuration of rectangle, gas flows are induced by temperature gradients along channel walls. In this paper, the direct simulation Monte Carlo (DSMC) method is used to investigate numerically the flow characteristics of H2–N2 mixtures in the Knudsen pump. The variable soft sphere (VSS) model is applied to depict molecular diffusion in the gas mixtures, and the results obtained are compared with those calculated from a variable hard sphere (VHS) model. It is demonstrated that pressure is crucial to affecting the variation of gas flow pattern, but the gas concentration in H2–N2 mixtures and the collision model do not change the flow pattern significantly. On the other hand, the velocity of H2 is larger than that of N2. The velocities of H2 and N2 increase if the concentration of H2 rises in the gas mixtures. The results of velocity and mass flow rate obtained from VSS and VHS models are different. Finally, a linear relation between the decrease of mass flow rate and the increase of H2 concentration is proposed to predict the mass flow rate in H2–N2 mixtures.
机译:在具有矩形几何构造的Chaudsen泵中,通过沿通道壁的温度梯度诱导气体流动。在本文中,使用直接仿真蒙特卡罗(DSMC)方法来进行数值研究KNUDSEN泵中H2-N2混合物的流动特性。施加可变软球(VSS)模型以描绘气体混合物中的分子扩散,并将获得的结果与由可变硬球(VHS)模型计算的结果进行比较。结果表明,压力对影响气体流动模式的变化是至关重要的,但H2-N2混合物中的气体浓度和碰撞模型不会显着改变流动模式。另一方面,H 2的速度大于N2的速度。如果气体混合物中的H 2升高,则H2和N2的速度增加。从VSS和VHS模型获得的速度和质量流量的结果不同。最后,提出了质量流速降低与H2浓度的增加之间的线性关系,以预测H2-N2混合物中的质量流速。

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