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New tracer diffusion correlation for real systems over wide ranges of temperature and density

机译:新的示踪剂扩散相关性,适用于温度和密度范围广的实际系统

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摘要

In this work a new model for tracer diffusivities (D12) of real systems is proposed. It is applicable for gases, liquids and supercritical fluids over wide ranges of temperature and density. It was derived on the basis of a very accurate hard sphere expression, following a systematic derivation whereby the softness of repulsive interactions and the contribution of attractive forces were taken into account by means of effective diameters and by coupling an attractive exponential term. The model is explicit and requires only temperature, density, and one diffusive parameter. The validation was accomplished with the largest database ever compiled - 314 binary systems and 5421 data points - giving rise to an average deviation of only 4.40%. Finally it must be emphasized the reliable estimation capability of the new model, i.e. its capacity to predict D_(12) at temperatures and densities far away from the conditions of the experimental data utilized to fit its parameter.
机译:在这项工作中,提出了一种用于实际系统的示踪剂扩散率(D12)的新模型。它适用于温度和密度范围较宽的气体,液体和超临界流体。它是在非常精确的硬球表达式的基础上得出的,是在系统推导之后得出的,其中通过有效直径和耦合有吸引力的指数项来考虑排斥作用的柔和性和吸引力的贡献。该模型是显式的,仅需要温度,密度和一个扩散参数。验证是使用有史以来最大的数据库完成的-314个二进制系统和5421个数据点-产生的平均偏差仅为4.40%。最后,必须强调新模型的可靠估计能力,即在远离用于拟合其参数的实验数据条件的温度和密度下预测D_(12)的能力。

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