Theoretical Model of Bubble Growth in Superheated Ethanol-Water Mixture

Chang Cai, Hong Liu, Xi Xi, M. Jia, Weilong Zhang, Yang He
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Abstract

A novel model was developed to investigate the bubble growth characteristics in uniformly superheated ethanol-water (EtOH-H2O) mixture. The influence of the mass fraction of ethanol was discussed in detail. In the proposed model, the energy equation and the component diffusion equation for the liquid were respectively coupled with quadratic temperature and mass fraction distribution within the thermal and concentration boundary layers. The non-random two-liquid equation (NRTL) was adopted to obtain the vapor-liquid equilibrium of the binary mixture at the bubble surface. The comparison between the current calculated bubble radius with the available experimental data demonstrates the accuracy of the bubble growth model. The maximum mass diffusion limited growth rate was also proposed to quantify and illustrate the effect of mass diffusion on bubble growth. The results showed that the later stage of bubble growth in a binary mixture is controlled by both mass diffusion and heat transfer. The bubble growth characteristics strongly depend on the initial mass fraction of ethanol. Within a large concentration range, a higher content of ethanol is adverse to bubble growth at a constant superheat degree. The effect of mass diffusion on bubble growth becomes weaker with an increased initial mass fraction of ethanol.
过热乙醇-水混合物中气泡生长的理论模型
建立了均匀过热乙醇-水(EtOH-H2O)混合物中气泡生长特性的模型。详细讨论了乙醇质量分数的影响。在该模型中,液体的能量方程和组分扩散方程分别与热边界层和浓度边界层内的二次温度和质量分数分布耦合。采用非随机双液方程(NRTL)求解二元混合物在气泡表面的汽液平衡。将目前计算的气泡半径与已有的实验数据进行比较,验证了气泡生长模型的准确性。为了量化和说明质量扩散对气泡生长的影响,还提出了最大质量扩散极限生长速率。结果表明,二元混合物中气泡的后期生长受质量扩散和传热的双重控制。气泡的生长特性很大程度上取决于乙醇的初始质量分数。在较大的浓度范围内,在一定的过热度下,较高的乙醇含量不利于气泡的生长。随着乙醇初始质量分数的增加,质量扩散对气泡生长的影响逐渐减弱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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