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首页> 外文期刊>International Journal of Thermophysics >Equation of State of He-H2 and He-D2 Dense Fluid Mixtures at High Pressures and Temperatures
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Equation of State of He-H2 and He-D2 Dense Fluid Mixtures at High Pressures and Temperatures

机译:高压和高温下He-H2 和He-D2 稠密流体混合物的状态方程

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摘要

The fluid variational theory is used to calculate the Hugoniot equation of state (EOS) of He, D2, He + H2, and He + D2 fluid mixtures with different He:H2 and He:D2 compositions at high pressures and temperatures. He, H2, and D2 are the lightest elements. Therefore, the quantum effect is included via a first-order quantum correction in the framework of the Wigner-Kirkwood expansion. An examination of the reliability of the above computations is performed by comparing experiments and calculations, in which the calculation procedure used for He and D2 is adopted also for He + D2 and He + H2, since no experimental data for the mixtures are available to conduct these comparisons. Good agreement in both comparisons is found. This result may be seen as an indirect verification of the calculation procedures used here, at least, in the pressure and temperature domains covered by the experimental data for He and D2 used for comparisons, which is nearly up to 40 GPa and 105 K. Also, the equation of state of He + H2 fluid mixtures with different compositions is predicted over a wide range of temperatures and pressures.
机译:利用流体变分理论,计算了He:H2不同的He,D2 ,He + H2 和He + D2 混合流体的Hugoniot状态方程(EOS) He:D2 在高压和高温下的组成。 He,H2 和D2 是最轻的元素。因此,在Wigner-Kirkwood展开的框架中,通过一阶量子校正将量子效应包括在内。通过比较实验和计算,对上述计算的可靠性进行了检验,其中He + D2 和He + H2 也采用了He和D2 的计算过程。 ,因为没有混合物的实验数据可用于进行这些比较。在两个比较中发现良好的一致性。至少在He和D2 的实验数据所覆盖的压力和温度域中,该结果至少可以被视为对此处使用的计算程序的间接验证,该数据接近40 GPa,并且105K。此外,在广泛的温度和压力范围内,可以预测组成不同的He + H2 混合流体的状态方程。

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