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甲烷传输与弛豫特性的计算。I. 剪切粘度、磁粘效应和自扩散

Calculation of the transport and relaxation properties of methane. I. Shear viscosity, viscomagnetic effects, and self-diffusion.

作者信息

Hellmann Robert, Bich Eckard, Vogel Eckhard, Dickinson Alan S, Vesovic Velisa

机构信息

Institut für Chemie, Universität Rostock, D-18059 Rostock, Germany.

出版信息

J Chem Phys. 2008 Aug 14;129(6):064302. doi: 10.1063/1.2958279.

Abstract

Transport properties of pure methane gas have been calculated in the rigid-rotor approximation using the recently proposed intermolecular potential energy hypersurface [R. Hellmann et al., J. Chem. Phys. 128, 214303 (2008)] and the classical-trajectory method. Results are reported in the dilute-gas limit for shear viscosity, viscomagnetic coefficients, and self-diffusion in the temperature range of 80-1500 K. Compared with the best measurements, the calculated viscosity values are about 0.5% too high at room temperature, although the temperature dependence of the calculated values is in very good agreement with experiment between 210 and 390 K. For the shear viscosity, the calculations indicate that the corrections in the second-order approximation and those due to the angular-momentum polarization are small, less than 0.7%, in the temperature range considered. The very good agreement of the calculated values with the experimental viscosity data suggests that the rigid-rotor approximation should be very reasonable for the three properties considered. In general, the agreement for the other measured properties is within the experimental error.

摘要

利用最近提出的分子间势能超曲面[R. 赫尔曼等人,《化学物理杂志》128, 214303 (2008)]和经典轨迹方法,在刚性转子近似下计算了纯甲烷气体的输运性质。报告了在80 - 1500 K温度范围内,稀薄气体极限下的剪切粘度、粘磁系数和自扩散的结果。与最佳测量值相比,计算得到的粘度值在室温下约高0.5%,不过在210至390 K之间,计算值的温度依赖性与实验结果非常吻合。对于剪切粘度,计算表明在考虑的温度范围内,二阶近似中的修正以及角动量极化引起的修正很小,小于0.7%。计算值与实验粘度数据的非常吻合表明,对于所考虑的这三种性质,刚性转子近似应该是非常合理的。总体而言,其他测量性质的吻合度在实验误差范围内。

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