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Heat and Mass Transfer Enhancement for Falling Film Absorption Process in Vertical Plate Absorber by Adding Copper Nanoparticle

机译:添加铜纳米粒子增强垂直板吸收器降膜吸收过程的传热传质

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This paper examined the effect of nanoparticles on the absorption of vapor into a liquid film of lithium bromide aqueous solution flowing down over a cooled vertical channel. For this, we realized a two-dimensional code which solves the governing equations using Comsol Multiphysics. In this model, the cooling water flows countercurrent to a solution of concentrated lithium bromide mixed with the copper nanoparticles. After the validation of the model, the effects of parameters such as Reynolds number, solid volume fraction of copper nanoparticles, inlet concentration and inlet temperature of solution on the performance of the absorption are presented and discussed. The important results indicate that the mass and heat transfer in binary nanofluids are enhanced more than that in base fluid and the efficiency of the nanofluid becomes higher to that of the base fluid for a lower Reynolds number and the inlet concentration and for a higher inlet temperature of solution.
机译:本文研究了纳米颗粒对蒸气在冷却的垂直通道上向下流动的溴化锂水溶液的液膜中吸收的影响。为此,我们实现了使用Comsol Multiphysics解决二维控制方程的二维代码。在此模型中,冷却水与浓缩的溴化锂与铜纳米粒子混合的溶液逆流流动。模型验证后,提出并讨论了雷诺数,铜纳米粒子的固体体积分数,溶液的入口浓度和入口温度等参数对吸收性能的影响。重要结果表明,在较低的雷诺数和较低的入口浓度以及较高的入口温度下,二元纳米流体的传质和传热比基础流体中的传质和传热增强,并且纳米流体的效率高于基础流体。解决方案。

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