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首页> 外文期刊>The Canadian Journal of Chemical Engineering >Analysis of Non-Isothermal Viscous Flow Coalescence at Micro Scale
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Analysis of Non-Isothermal Viscous Flow Coalescence at Micro Scale

机译:微尺度下非等温粘性流动聚结的分析

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摘要

The non-isothermal coalescence of two spherical bodies caused by capillary-induced viscous flow was analyzed. Based on this analysis, a new dimensionless number (K number) was introduced for defining thermal coalescence regimes. Based on the value of this number, coalescence may or may not be affected by thermal effects in different cases. To make this clearer, the conventional coalescence models of Frenkel-Eshelby and Pokluda were modified by assuming viscosity as a temperature dependent variable. This was conducted by considering the effects of temperature on the viscosity of the involved material through evaluating different expressions including linear and Reynolds and Williams-Landel-Ferry (WLF) equations. The results of the modified models for the bridge growth rate show that temperature changes significantly affect the kinetics of coalescence, particularly when the characteristic times of coalescence and heat conduction are in the same order, i.e., moderate K numbers. This analysis is applicable for diverse situations since viscous flow coalescence occurs in various physical and industrial applications of particles or droplets.
机译:分析了由毛细管诱导的粘性流动引起的两个球体的非等温聚结。基于该分析,引入了新的无量值(K编号),用于定义热聚结制度。基于该数量的值,聚结可能或可能不会受到不同情况的热效应的影响。为了使该更清晰,通过假设粘度作为温度依赖性变量来修改Frenkel-eShelby和Pokluda的传统聚结模型。这是通过考虑温度对所涉及的材料的粘度的影响来进行,通过评估包括线性和雷诺和Williams-Landel-Ferry(WLF)方程的不同表达式。用于桥梁生长速率的改性模型的结果表明,温度变化显着影响聚结的动力学,特别是当聚结和热传导的特性时间以相同的顺序时,即中等k编号。该分析适用于多种情况,因为在颗粒或液滴的各种物理和工业应用中发生粘性流动聚会。

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