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首页> 外文期刊>International Journal of Heat and Mass Transfer >Pseudo-boiling and concentration gradient in an enclosed supercritical binary mixture
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Pseudo-boiling and concentration gradient in an enclosed supercritical binary mixture

机译:封闭超临界二元混合物中的伪沸点和浓度梯度

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Recent publications have shown the effectiveness of the analogy between fluids at sub- and supercritical pressures and confirmed there is a distinguishable crossover between liquid-like and gas-like behavior in supercritical fluids. This work is devoted to extending such an analogy to miscible zeotropic binary mixtures, whose well-known feature in liquid-gas coexistence under a subcritical pressure is the concentration difference between liquid and gas. Due to the availability of thermophysical properties, C_2H_6 - CO_2 binary mixture is taken as a reference fluid. Through numerical simulations for the steady states of an enclosed binary mixture at supercritical pressures subjected to temperature differences, this paper reveals the coexistence of liquid-like and gas-like states is featured by a concentration gradient naturally established by the critically enhanced Soret effect. It suggests that the concentration gradient is enhanced as the critical pressure is approached or as the temperature difference is enlarged. Besides, the low heat-conducting nature of the gas-like state compared to the liquid-like one gives rise to a pressure drop. This work gives new insights into the similarities of binary mixtures under sub- and supercritical pressures. For the convenience of latter studies, an open-source code is provided to calculate the physical properties of C_2H_6 - CO_2 binary mixture.
机译:最近的出版物表明了子和超临界压力下的流体之间的类比的有效性,并确认了在超临界流体中的液体样和气相等行为之间存在可区分的交叉。该工作致力于将这种类比延伸到可混溶的横熵二元混合物,其亚临界压力下的液体 - 气体共存中的众所周知的特征是液体和气体之间的浓度差异。由于热神经性质的可用性,C_2H_6 - CO_2二元混合物作为参考流体。通过数值模拟在经受温度差异的超临界压力下进行封闭二元混合物的稳定状态,本文揭示了液体样和气体状态的共存,其浓度梯度是由批评增强的索引效应自然建立的。它表明,随着接近临界压力或随着温度差的增大而增加,浓度梯度被提高。此外,与液体状的液体状状态相比,气体状状态的低热传导性质产生了压降。这项工作介绍了在子和超临界压力下的二元混合物相似性的新见解。为了便于后一种研究,提供了一种开源代码以计算C_2H_6 - CO_2二元混合物的物理性质。

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