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首页> 外文期刊>The Journal of Chemical Physics >Calculation of the transport properties of carbon dioxide. III. Volume viscosity, depolarized Rayleigh scattering, and nuclear spin relaxation
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Calculation of the transport properties of carbon dioxide. III. Volume viscosity, depolarized Rayleigh scattering, and nuclear spin relaxation

机译:计算二氧化碳的传输特性。三,体积粘度,去极化瑞利散射和核自旋弛豫

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Transport properties of pure carbon dioxide have been calculated from the intermolecular potential. using the classical trajectory method. Results are reported in the dilute-gas limit for volume viscosity, depolarized Rayleigh scattering, and nuclear spin relaxation for temperatures ranging from 200 to 1000 K. Three recent carbon dioxide potential energy hypersurfaces have been investigated. Calculated values for the rotational collision number for all three intermolecular surfaces are consistent with the measurements and indicate that the temperature dependence of the Brau-Jonkman correlation is not applicable for carbon dioxide. The results for the depolarized Rayleigh scattering cross section and the nuclear spin relaxation cross section show that calculated values for the generally more successful potentials differ from the observations by 9% at about 290 K, although agreement is obtained for nuclear spin relaxation at about 400 K. (C) 2004 American Institute of Physics.
机译:已从分子间电势计算了纯二氧化碳的传输性质。使用经典轨迹法。结果表明,在200-1000 K的温度范围内,体积粘度,去极化瑞利散射和核自旋弛豫的稀释气体极限值。最近研究了三个二氧化碳势能超表面。所有三个分子间表面的旋转碰撞数的计算值与测量值一致,表明Brau-Jonkman相关性的温度依赖性不适用于二氧化碳。去极化瑞利散射截面和核自旋弛豫截面的结果表明,尽管在大约400 K处获得了核自旋弛豫的共识,但通常更成功的电势的计算值与观测值相差9%。 (C)2004美国物理研究所。

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