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ALTERNATIVE SOLUTIONS FOR LONGITUDINAL FINS OF RECTANGULAR, TRAPEZOIDAL, AND CONCAVE PARABOLIC PROFILES

机译:矩形,梯形和凹形抛物面型纵向翅片的替代解决方案

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The traditional thermal analysis of fins is based on the assumption of specified thermal boundary conditions at the base and tip of the fin. For situations when the fin base is in contact with a fluid experiencing condensation and the fin is required to remove the energy released by the fluid, the base is subjected to two boundary conditions: a fixed temperature and a fixed heat flux. This paper develops solutions for the temperature distribution in the fins under these conditions. Solutions are provided for rectangular, trapezoidal, and concave parabolic (finite tip thickness). Results illustrating the relationship between the dimensionless heat flux, the fin parameter, and dimensionless tip temperature are provided for all three geometries. The case of convective fin tip is also considered and lead to a relationship between the dimensionless heat flux, the fin parameter, and the Biot number at the tip. The results presented here provide tools that not only complement the traditional analyses but are believed to have more direct relevance for fin designers.
机译:翅片的传统热分析基于翅片的底座和尖端的特定热边界条件的假设。对于翅片基部与经历冷凝的流体接触的情况,需要除去流体释放的能量时,底座经受两个边界条件:固定温度和固定的热通量。本文在这些条件下开发了翅片温度分布的解决方案。为矩形,梯形和凹形抛物线提供溶液(有限尖端厚度)。用于所有三个几何形状提供无量度热通量,翅片参数和无量纲尖端温度的关系的结果。还考虑了对流翅片尖端的情况,并导致无量纲热通量,鳍参数和尖端的Biot数之间的关系。这里提出的结果提供了不仅补充传统分析的工具,而且被认为对Fin设计人员具有更直接的相关性。

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