刚性液滴中瞬时反应传质的非等温增强因子

Usuf Middya , P. Ray, B.K. Dutta
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引用次数: 0

摘要

液滴与周围流体之间的传质以及伴随的瞬时化学反应在许多工业过程中是重要的。对于表现为刚性粒子的小液滴,耦合输运-反应现象通过移动边界机制发生。在非等温条件下,考虑连续相扩散阻力,对该问题进行了理论分析。为了使反应锋固定,对相关输运方程进行了坐标变换。在较宽的系统参数范围内,给出了增强系数和界面温升的计算结果。结果表明,增强因子和界面温升最大值以及其他一些有趣的特征可以在物理基础上得到解释。
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Non-isothermal enhancement factor for mass transfer with instantaneous reaction in a rigid drop

Mass transfer between liquid drops and a surrounding fluid with an accompanying instantaneous chemical reaction is important in a number of industrial processes. For small drops which behave as rigid particles the coupled transport-reaction phenomenon occurs through a moving boundary mechanism. Here we present a theoretical analysis of the problem under non-isothermal conditions by considering the continuous phase diffusional resistance. The relevant transport equations are subjected to a coordinate transformation in order to immobilize the reaction front. Computed results for the enhancement factor and interfacial temperature rise are presented for a wide range of relevant system parameters. The results show enhancement factor and interfacial temperature rise maxima and some other interesting features that can be explained on a physical basis.

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