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Comparison of Methods to Compute High-Temperature Gas Viscosity

机译:高温气体粘度计算方法的比较

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A review of the basic equations for computing the viscosity of neutral and ionized species is presented. Four commonly used methods for determining viscosity of a gas mixture are discussed. The performance and accuracy of these methods are tested for 11-species air and hydrogen-helium gas mixtures for temperatures ranging from 200 to 20,000 K. The Gupta-Yos mixing rule gives acceptable results for weakly or nonionized flows and requires half the computer time of solving the full mullicomponent equations. The Armaly-Sutton mixing rule is applicable to higher temperature, more strongly ionized flows as long as the tuning parameters for the method are appropriately set. The Wilke mixing rule is the least-accurate method, is actually slower than the Gupta-Yos mixing rules, and should be used only as a method of last resort.
机译:介绍了计算中性和离子化物质粘度的基本方程式。讨论了确定气体混合物粘度的四种常用方法。这些方法的性能和准确性已针对200至20,000 K范围内的11种空气和氢-氦气体混合物进行了测试。Gupta-Yos混合规则为弱流或非电离流提供了可接受的结果,并且需要一半的计算机时间求解完整的多元方程。只要适当设置该方法的调整参数,Armaly-Sutton混合规则适用于较高温度,更强电离的流动。 Wilke混合规则是最不准确的方法,实际上比Gupta-Yos混合规则慢,并且应仅用作最后的方法。

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