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首页> 外文期刊>International Journal of Refrigeration >Design and analysis of multi-scale annular fins attached to a pin fin
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Design and analysis of multi-scale annular fins attached to a pin fin

机译:销钉上的多尺度环形翅片的设计与分析

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摘要

The design of efficient fins for reducing cost, space, materials and the energy consumption for heat removal and refrigeration applications is a great challenge. In this paper, consideration is given to the constructal (optimal) design of multi-scale annular fins that are attached to a pin fin. The geometrical scales of the assembly are relaxed to reach the maximal heat transfer removed by the assembly of the fins, subject to the space and materials constraints. Based on a one-dimensional model, analytical solution is performed to deliver the amount of heat transfer density. The direct search method and the Genetic Algorithm (GA) are used to optimize the geometric configuration of the assembly. The optimization results indicate that the increment in the number of geometrical variables of the assembly remarkably enhances the thermal performance of the assembly, however, it imposes excess complexity in the optimization process. The design guidelines for the design of multi-scale fins provided after optimizations, can be useful in the design of variant cooling devices in practical engineering applications. (C) 2017 Elsevier Ltd and IIR. All rights reserved.
机译:用于降低成本,空间,材料和用于除热和制冷应用的能耗的高效翅片是一个很大的挑战。在本文中,考虑了附接到销翅片的多尺度环形翅片的构造(最优)设计。容量放松组件的几何尺度以通过空间和材料的限制来达到通过翅片的组装除去的最大传热。基于一维模型,进行分析解决方案以提供传热密度的量。直接搜索方法和遗传算法(GA)用于优化组件的几何配置。优化结果表明,组件的几何变量数量的增量显着增强了组件的热性能,然而,它在优化过程中施加过多的复杂性。优化后提供多尺寸鳍片设计的设计指南,可用于实际工程应用中的变体冷却装置的设计。 (c)2017年Elsevier Ltd和IIR。版权所有。

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