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首页> 外文期刊>International Journal of Heat and Mass Transfer >Numerical simulation of evaporation and drying of a bi-component droplet
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Numerical simulation of evaporation and drying of a bi-component droplet

机译:双组分液滴蒸发干燥的数值模拟

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摘要

A mathematical model to describe the evaporation and drying behavior of a single quiescent spherical bi-component droplet containing evaporating liquid and dissolved solid substance is developed with primary focus on the application of this model to study the evaporation and drying of a droplet of polymer (Polyvinylpyrrolidone - PVP) in water and Mannitol in water. The water evaporation rate is computed using a convective two-film model with modifications to account for solid layer formation. The non-ideality effect induced by the presence of PVP or Mannitol on vapor pressure of water is accounted through the calculation of activity coefficient of water in either system. The problem under consideration is governed by the continuity (diffusion) and energy equations, which are solved using a finite difference method. The effect of drying conditions such as gas velocity, temperature, and relative humidity on evaporation and drying rate is studied. It is concluded that the present model effectively captures the initial stages of single droplet drying.
机译:建立了描述单个包含蒸发液体和溶解固体物质的静态球形双组份液滴的蒸发和干燥行为的数学模型,主要致力于该模型在研究聚合物(聚乙烯吡咯烷酮)液滴的蒸发和干燥中的应用-PVP)和甘露醇在水中。使用对流两层膜模型计算水的蒸发速率,该模型经过修改以考虑固体层的形成。通过计算任一系统中水的活度系数,可以计算出PVP或甘露醇的存在对水蒸气压产生的非理想影响。所考虑的问题由连续性(扩散)和能量方程式控制,这些方程式使用有限差分法求解。研究了干燥条件如气体速度,温度和相对湿度对蒸发和干燥速率的影响。结论是,本模型有效地捕获了单滴干燥的初始阶段。

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