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Analytical investigation of porous pin fins with variable section in fully-wet conditions

机译:全湿条件下变截面多孔销鳍的分析研究

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摘要

The present work investigates the temperature distribution, heat transfer rate, efficiency and optimization of porous pin fins in fully wet conditions. The thickness varies along the length of the fin and the lateral surface equation is defined as functions that include diversification fins (rectangular, triangular, convex parabolic and concave parabolic sections). Fins are made of aluminium and the tips of fins are insulated. Furthermore, it is assumed that the heat transfer coefficient depends on temperature and in the fin it changes according to temperature changes. In order to derivethe heat transfer equation, energy balance and Darcy model are used. After presenting the governing equation to obtain the temperature distribution, least squares method (LSM) is applied. Comparison of the results between analytical solution and numerical outcome (fourth order Runge–Kutta method) shows that LSM is a convenient and powerful method in engineering problems. Then the effects of various geometric and thermophysical parameters (power index for geometry (n), porosity, Biot number and relative humidity) on the dimensionless temperature fin, efficiency and heat transfer rate are examined. Optimum design analysis was also carried out.
机译:本工作研究了在完全湿润条件下多孔销的温度分布,传热速率,效率和优化。厚度沿散热片的长度变化,侧面方程定义为包括多样化散热片(矩形,三角形,凸抛物线形和凹抛物线形截面)的函数。鳍片是铝制的,鳍片的尖端是绝缘的。此外,假设传热系数取决于温度,并且翅片中的传热系数根据温度变化而变化。为了导出传热方程,使用了能量平衡和达西模型。提出控制方程式以获得温度分布后,应用最小二乘法(LSM)。对解析解和数值结果(四阶Runge–Kutta方法)之间的结果进行比较,表明LSM是解决工程问题的便捷而有效的方法。然后检查了各种几何和热物理参数(几何功率指数(n),孔隙率,比奥数和相对湿度)对无量纲温度翅片,效率和传热速率的影响。还进行了最佳设计分析。

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