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首页> 外文期刊>The Journal of Chemical Physics >Calculation of the transport properties of carbon dioxide.II.Thermal conductivity and thermomagnetic effects
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Calculation of the transport properties of carbon dioxide.II.Thermal conductivity and thermomagnetic effects

机译:二氧化碳传输特性的计算II。热导率和热磁效应

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摘要

The 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 thermal conductivity and thermomagnetic coefficients for temperatures ranging from 200 K to 1000 K.Three recent carbon dioxide potential energy hypersurfaces have been investigated.Since thermal conductivity is influenced by vibrational degrees of freedom,not included in the rigid-rotor classical trajectory calculation,a correction for vibration has also been employed.The calculations indicate that the second-order thermal conductivity corrections due to the angular momentum polarization(<2%)and velocity polarization(< 1 %)are both small.Thermal conductivity values calculated using the potential energy hypersurface by Bukowski et al(1999)are in good agreement with the available experimental data.They underestimate the best experimental data at room temperature by 1% and in the range up to 470 K by 1%-3%,depending on the data source.Outside this range the calculated values,we believe,may be more reliable than the currently available experimental data.Our results are consistent with measurements of the thermomagnetic effect at 300 K only when the vibrational degrees of freedom are considered fully.This excellent agreement for these properties indicates that particularly the potential surface of Bukowski et al.provides a realistic description of the anisotropy of the surface.
机译:使用经典轨迹法从分子间的电势计算出纯二氧化碳的传输特性,结果在200 K至1000 K温度范围内的稀薄气体极限热导率和热磁系数中进行了报道。由于导热自由度受振动自由度的影响,因此未进行刚体经典轨迹计算,因此还对振动进行了修正。计算表明,由于角动量极化(<2%)和速度极化(<1%)都很小.Bukowski等人(1999)用势能超表面计算的热导率值与现有的实验数据吻合良好。室温下1%且在470 K范围内可达1的最佳实验数据%-3%,取决于数据源。我们认为,在此范围之外的计算值可能比当前可用的实验数据更可靠。我们的结果与仅在振动度为300 K时测量热磁效应一致对于这些特性的极好的一致性表明,特别是Bukowski等人的潜在表面提供了表面各向异性的现实描述。

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