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首页> 外文期刊>International Journal of Refrigeration >Investigation of refrigeration efficiency for fully wet circular porous fins with variable sections by combined heat and mass transfer analysis
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Investigation of refrigeration efficiency for fully wet circular porous fins with variable sections by combined heat and mass transfer analysis

机译:传热与传质分析相结合研究变截面全湿圆形多孔翅片的制冷效率

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摘要

Temperature distribution equation and refrigeration efficiency for fully wet circular porous fins with variable sections are introduced in this study by a new modified wet fin parameter presented by Sharqawy and Zubair. This parameter can be calculated without knowing the fin tip condition by considering the temperature and humidity ratio differences for the driving forces of heat and mass transfer, respectively. It's assumed that heat and mass convective coefficients vary with fin temperature and heat transfer through porous media is simulated using passage velocity from the Darcy's model. After presenting the governing equation, Least Square Method (LSM) and fourth order Runge-Kutta method (NUM) are applied for predicting the temperature distribution in the sample aluminum porous fins. After that, effects of porosity, Darcy number, Rayleigh number, Lewis number and etc. on fin efficiency are examined. As a main outcome, for reaching to high values of fin efficiency, rectangular fin should be used instead of convex and triangular sections.
机译:通过由Sharqawy和Zubair提出的新的改进的湿翅片参数,介绍了可变截面的全湿圆形多孔翅片的温度分布方程和制冷效率。通过分别考虑传热和传质驱动力的温度和湿度比差,可以在不知道翅片尖端条件的情况下计算该参数。假设热量和质量对流系数随散热片温度而变化,并且使用达西模型的通过速度模拟通过多孔介质的传热。提出控制方程后,应用最小二乘法(LSM)和四阶Runge-Kutta方法(NUM)来预测铝多孔翅片中的温度分布。之后,检查孔隙率,达西数,瑞利数,路易斯数等对散热片效率的影响。作为主要结果,为了达到较高的翅片效率值,应使用矩形翅片代替凸形和三角形截面。

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