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NUMERICAL STUDY OF HEAT AND MASS TRANSFER DURING EVAPORATION OF A THIN LIQUID FILM

机译:薄液膜蒸发过程中传热传质的数值研究

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A numerical study of mixed convection heat and mass transfer with film evaporation in a vertical channel is developed. The emphasis is focused on the effects of vaporization of three different liquid films having widely different properties, along the isothermal and wetted walls on the heat and mass transfer rates in the channel. The induced laminar downward flow is a mixture of blowing dry air and vapour of water, methanol or acetone, assumed as ideal gases. A two-dimensional steady state and elliptical flow model, connected with variable thermo-physical properties, is used and the phase change problem is based on thin liquid film assumptions. The governing equations of the model are solved by a finite volume method and the velocity-pressure fields are linked by SIMPLE algorithm. The numerical results, including the velocity, temperature and concentration profiles, as well as axial variations of Nusselt numbers, Sherwood number and dimensionless film evaporation rate are presented for two values of inlet temperature and Reynolds number. It was found that lower the inlet temperature and Re, the higher the induced flows cooling with respect of most volatile film. The better mass transfer rates related with film evaporation are found for a system with low mass diffusion coefficient.
机译:建立了在垂直通道内混合对流传热和传质与薄膜蒸发的数值研究。重点集中在沿等温壁和湿壁沿通道的传热和传质速率,对具有不同特性的三种不同液体薄膜进行汽化的影响。诱导的层流向下流动是吹干空气和水,甲醇或丙酮(假定是理想气体)的蒸气的混合物。使用具有可变热物理特性的二维稳态和椭圆流动模型,并且相变问题基于薄液膜假设。通过有限体积法求解模型的控制方程,并通过SIMPLE算法链接速度-压力场。给出了入口温度和雷诺数两个数值的数值结果,包括速度,温度和浓度曲线,以及Nusselt数,Sherwood数和无因次薄膜蒸发速率的轴向变化。已经发现,入口温度和Re越低,就大多数挥发性膜而言,感应流冷却越高。对于具有低质量扩散系数的系统,发现了与薄膜蒸发有关的更好的传质速率。

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