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首页> 外文期刊>The Korean journal of chemical engineering >An Extension of the Group Contribution Method for Estimating Thermodynamic and Transport Properties. Part Ⅲ. Noble Gases
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An Extension of the Group Contribution Method for Estimating Thermodynamic and Transport Properties. Part Ⅲ. Noble Gases

机译:用于估算热力学和传输性质的基团贡献方法的扩展。第三部分。稀有气体

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Earlier work on the group contribution method applied to the Kihara potential is extended to noble gases for the estimation of second virial coefficients, dilute gas viscosities and diffusivities with a single set of gas group parameters. Group parameters are determined when second virial coefficient and viscosity data of pure gases are satisfactorily fitted within the experimental uncertainties. Parameters for gas groups (He, Ne, Ar, Kr and Xe) are found to provide good predictions of mixture properties: second virial cross coefficients, mixture viscosities, and binary diffusion coefficients. Application of the model shows that second virial coefficient data are represented with good results comparable to the values by means of the corresponding states correlation. The reliability of the present model in viscosity predictions is proved by comparison with the Lucas method. Prediction results of diffusivity are in excellent agreement with literature data and compare well with values obtained by means of the Fuller method.
机译:应用于Kihara势的基团贡献方法的早期工作已扩展到稀有气体,以使用一组气体组参数估算第二维里系数,稀气体粘度和扩散率。当纯净气体的第二维里系数和粘度数据令人满意地符合实验不确定性时,即可确定组参数。发现气体组的参数(He,Ne,Ar,Kr和Xe)可以很好地预测混合物的特性:第二维里交叉系数,混合物粘度和二元扩散系数。该模型的应用表明,通过相应的状态相关性,可以表示第二维里系数数据,其结果可与这些值媲美。通过与Lucas方法的比较证明了本模型在粘度预测中的可靠性。扩散率的预测结果与文献数据非常吻合,并且与通过富勒方法获得的值进行了很好的比较。

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