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首页> 外文期刊>Journal of aerospace engineering >Permeability of Space Vehicle Fibrous Thermal Protection Blankets in Viscous and Slip Flow Regimes
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Permeability of Space Vehicle Fibrous Thermal Protection Blankets in Viscous and Slip Flow Regimes

机译:粘性和滑流条件下航天器纤维热保护毯的渗透性

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摘要

The permeability of thermal protection blankets is measured by flowing air and helium at pressure differentials of up to 33.3 kPa across the material. Flow in both the viscous and slip regime is demonstrated by varying the average absolute pressures in the experiments from 0.400 to 80.0 kPa. Analysis shows the flow through the fibrous blanket is well characterized by a compressible formulation of Darcy's law with the addition of the Klinkenberg slip factor. The permeability and slip parameter are obtained using multiple linear regression. A comparison between air and helium shows that the slip parameter scales with the square root of the molecular weight. Correlations between the permeability and slip factor for fibrous materials are proposed. The correlations are similar in form with previous correlations developed for rock samples, but the coefficients differ. The measured data show that the capillary radius calculated from permeability is the appropriate length scale for the Knudsen number. (C) 2014 American Society of Civil Engineers.
机译:热防护毯的渗透性是通过使空气和氦气在整个材料上的压差高达33.3 kPa的条件下测量的。通过将实验中的平均绝对压力从0.400 kPa更改为80.0 kPa,可以证明在粘性和滑动状态下的流动。分析表明,通过纤维覆盖层的流动具有很好的特征,可压缩的达西定律公式加上了克林肯贝格滑动系数。使用多元线性回归获得渗透率和滑动参数。空气和氦气之间的比较表明,滑移参数与分子量的平方根成比例。提出了纤维材料的渗透率和滑动系数之间的关系。相关性在形式上与先前为岩石样本开发的相关性相似,但是系数不同。测量数据表明,根据渗透率计算出的毛细管半径是适合克努森数的长度标尺。 (C)2014年美国土木工程师学会。

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