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Heat and mass transfer from annular fins of different cross-sectional area. Part I. Temperature distribution and fin efficiency

机译:来自不同横截面积的环形散热片的热量和质量传递。第一部分温度分布和散热片效率

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摘要

A numerical analysis is carried out to study efficiency and temperature distribution of annular fins of different fin profiles (constant and variable cross-sectional area) when subjected to simultaneous heat and mass transfer mechanisms. The temperature and humidity ratio differences are driving forces for heat and mass transfer, respectively. Actual psychrometric relations are used in the present work instead of a linear model between humidity ratio and temperature that has been used in the literature. A non-linear model representing heat and mass transfer mechanisms was solved using a finite difference successive over-relaxation method. Solutions are obtained for temperature distribution over the fin surface in addition to fin efficiency for both fully wet and partially wet fin surfaces. The numerical results are compared with those of previous studies. It was found that one of the linear models for the relation between the humidity ratio and temperature is a reasonable approximation.
机译:进行了数值分析,以研究在同时进行传热和传质的同时,不同翅片轮廓(恒定和可变横截面积)的环形翅片的效率和温度分布。温度和湿度比的差异分别是传热和传质的驱动力。在本工作中使用实际的湿度关系代替了文献中使用的湿度比和温度之间的线性模型。使用有限差分连续超松弛方法求解了代表传热和传质机理的非线性模型。除了针对完全湿润和部分湿润的鳍片表面的鳍片效率之外,还获得了用于鳍片表面上的温度分布的解决方案。数值结果与以前的研究进行了比较。发现湿度比和温度之间的关系的线性模型之一是合理的近似值。

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