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On the unsteady-state species separation of a binary liquid mixture in a rectangular thermogravitational column

机译:矩形热引力塔中二元液体混合物的非稳态物种分离

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This paper investigates the unsteady-state species segregation of binary liquid mixtures in rectangular thermogravitational columns. The analysis leads to a procedure to obtain both molecular and thermal diffusion coefficients from transient separation measurements. Two models are presented: first, an ideal model where buoyancy only depends on temperature and second, a general model where buoyancy also varies with composition. Steady-state measurements are not required regardless of which model is chosen. As a result, the new procedure is faster than steady-state procedures. When either the molecular or thermal diffusion coefficient is known a priori, the other can be obtained without knowledge of fluid properties such as density, viscosity, thermal expansion, and compositional coefficients. (c) 2006 American Institute of Physics.
机译:本文研究矩形热引力柱中二元液体混合物的非稳态物种偏析。分析导致从瞬时分离测量获得分子扩散系数和热扩散系数的程序。介绍了两种模型:第一,理想模型的浮力仅取决于温度,第二,一般模型的浮力也随成分而变化。无论选择哪种型号,都不需要进行稳态测量。结果,新过程比稳态过程快。当先验地知道分子扩散系数或热扩散系数时,就可以在不了解流体特性(例如密度,粘度,热膨胀和组成系数)的情况下获得另一个。 (c)2006年美国物理研究所。

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