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THE TRANSPORT PROPERTIES OF FLUID MIXTURES NEAR THE VAPOR-LIQUID CRITICAL LINE

机译:蒸气-液体临界线附近流体混合物的传输特性

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We apply the mode-coupling theory for the dynamics of critical fluctuations to binary fluid mixtures near the vapor-liquid critical line and derive a set of coupled equations for the mode-coupling contributions to the diffusion coefficients of the relevant hydrodynamic modes. An approximate solution of the mode-coupling integrals yields representative equations for the effects of the critical fluctuations on the thermal conductivity, the viscosity, the mutual diffusivity and the thermal-diffusion coefficient, which are valid not only in the asymptotic critical region but also describe the crossover to regular behavior far away from the critical line. The ''crossover'' functions depend on the thermodynamic properties of the mixtures, background values of all the transport coefficients and two concentration-dependent cutoff wave numbers. We compare the proposed crossover model with experimental thermal-conductivity data for mixtures of carbon dioxide and ethane in the critical region and find good agreement between theory and experiment. (C) 1996 American Institute of Physics. [References: 65]
机译:我们将临界波动动力学的模式耦合理论应用于气液临界线附近的二元流体混合物,并为模式耦合对相关水动力模式的扩散系数的贡献导出了一组耦合方程。模态耦合积分的近似解产生了代表性方程,用于说明临界波动对热导率,粘度,互扩散系数和热扩散系数的影响,这些方程不仅在渐近临界区域有效,而且可以描述与常规行为的交叉远离临界线。 “交叉”功能取决于混合物的热力学性质,所有传输系数的背景值以及两个浓度相关的截止波数。我们将提出的交叉模型与关键区域内二氧化碳和乙烷混合物的实验热导率数据进行了比较,发现理论与实验之间具有良好的一致性。 (C)1996年美国物理研究所。 [参考:65]

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