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Viscous slip coefficients for binary gas mixtures measured from mass flow rates through a single microtube

机译:根据通过单个微管的质量流量测得的二元混合气的粘滞滑移系数

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The viscous slip coefficient for helium-argon binary gas mixture is extracted from the experimental values of the mass flow rate through a microtube. The mass flow rate is measured by the constant-volume method. The viscous slip coefficient was obtained by identifying the measured mass flow rate through a microtube with the corresponding analytical expression, which is a function of the Knudsen number. The measurements were carried out in the slip flow regime where the first-order slip boundary condition can be applied. The measured viscous slip coefficients of binary gas mixtures exhibit a concave function of the molar ratio of the mixture, showing a similar profile with numerical results. However, from the detailed comparison between the measured and numerical values with the complete and incomplete accommodation at a surface, it is inappropriate to estimate the viscous slip coefficient for the mixture numerically by employing separately measured tangential momentum accommodation coefficient for each component. The time variation of the molar ratio in the downstream chamber was measured by sampling the gas from the chamber using the quadrupole mass spectrometer. In our measurements, it is indicated that the volume flow rate of argon is larger than that of helium because of the difference in the tangential momentum accommodation coefficient. Published by AIP Publishing.
机译:从通过微管的质量流量的实验值中提取出氦-氩二元气体混合物的粘性滑移系数。质量流量通过恒定体积法测量。粘性滑移系数是通过使用相应的分析表达式确定通过微管的测量质量流量而获得的,该表达式是克努森数的函数。测量是在滑流状态下进行的,其中可以应用一阶滑移边界条件。测得的二元混合气的粘滑系数显示出混合气摩尔比的凹函数,与数值结果相似。然而,从在表面具有完全和不完全容纳的测量值和数值之间的详细比较中,通过对每个分量采用单独测量的切向动量容纳系数来数字地估计混合物的粘滑系数是不合适的。通过使用四极质谱仪对来自反应室的气体进行采样来测量下游反应室中摩尔比的时间变化。在我们的测量中,表明由于切向动量调节系数的差异,氩气的体积流量大于氦气的体积流量。由AIP Publishing发布。

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