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Investigation of gas flow in micro-filters and modification of scaling law

机译:微型过滤器中气流的研究和定标律的修改

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摘要

In this study, important micro gas flow features including slip velocity, compressibility, and rarefaction effects for flow micro-filters are investigated. In this regard the compressible Navier-Stokes equations with wall slip and temperature jump boundary conditions are solved for a proper range of Knudsen numbers. For the filters, the ratio of the open orifice area to the total area is selected as 0.6 in order to compare the results with the literature. Considering that the filter holes repeat in a periodic fashion, gas flow is simulated through only one hole by imposing periodicity conditions. The simulation results are compared with the empirical scaling laws developed in the last works and a modified relation for the scaling law is presented. This modified relation predicts high-accuracy pressure drop through the micro-filters in the slip regime.
机译:在这项研究中,重要的微型气体流动特征包括滑移速度,可压缩性和流动微型过滤器的稀疏效应被研究。在这方面,针对壁滑和温度跃变边界条件的可压缩的Navier-Stokes方程,可以在适当的Knudsen数范围内求解。对于过滤器,将开孔面积与总面积之比选择为0.6,以便将结果与文献进行比较。考虑到过滤器孔以周期性方式重复,通过施加周期性条件来模拟仅通过一个孔的气流。将仿真结果与最近工作中得出的经验比例定律进行了比较,并给出了比例定律的修正关系。这种修改的关系预测在滑移状态下通过微过滤器的高精度压降。

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