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A numerical investigation for the heat and mass transfer between parallel flow of air and desiccant falling film in a fin-tube arrangement

机译:翅片管结构中空气与干燥剂降膜平行流动之间传热传质的数值研究

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摘要

A numerical investigation was conducted to study the heat and mass transfer between a falling film of calcium chloride desiccant solution and a parallel flow of air in a rectangular fin-tube arrangement. A control volume finite difference method was used to solve the governing equations for the air and the liquid desiccant solution subjected to the appropriate boundary conditions. A model was used to predict temperature distribution on the fin surface. In this model, two approaches were employed to determine the temperature distribution of the fin surface. The first approach utilized the analytical expression for the temperature distribution of a circular fin having the same area as the rectangular fin. The second approach used a finite difference algorithm to directly predict the temperature distribution of the rectangular fin surface. Both approaches were used to study the performance of the fin-tube arrangement for dehumidification of air at various operating conditions. The effects on the air dehumidification process, due to changing the inlet conditions of air and desiccant film; their mass flow rates; and the fin height were predicted. The results were used to developed correlations to predict the heat and mass transfer coefficients (on the airside) between the air and the liquid desiccant. These correlations can accurately be used to predict the outlet air and liquid desiccant conditions from the fin-tube arrangement. Correlations were developed to predict the rate of heat and mass transfer between the air and the desiccant film. Several numerical experiments showed agreement with the available data in literature.
机译:进行了数值研究,以研究在矩形翅片管结构中氯化钙干燥剂溶液的降膜与平行气流之间的传热和传质。使用控制体积有限差分法来求解在适当边界条件下空气和液体干燥剂溶液的控制方程。使用模型来预测散热片表面的温度分布。在该模型中,采用了两种方法来确定鳍片表面的温度分布。第一种方法将解析表达式用于具有与矩形翅片相同面积的圆形翅片的温度分布。第二种方法使用有限差分算法直接预测矩形翅片表面的温度分布。两种方法都用于研究翅片管装置在各种工况下除湿空气的性能。改变空气和干燥剂薄膜的入口条件,对空气除湿过程的影响;它们的质量流量;和鳍的高度被预测。结果用于建立相关性,以预测空气和液体干燥剂之间的传热和传质系数(在空气侧)。这些相关性可以准确地用于从翅片管布置中预测出口空气和液体干燥剂的状况。建立了相关性以预测空气和干燥剂薄膜之间的热量和质量传递速率。几个数值实验表明与文献中的可用数据一致。

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