Natural Convection heat transfer enhancement from rectangular fin arrays with diverse geometrical perforations

K. P. Venkitaraj, Sanooj Siddikh
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引用次数: 3

Abstract

Heat dissipation is a drastic issue to handle due to continued integration, miniaturization, compacting and lightening of equipment. Heat dissipaters are not only chosen for their thermal performance; but also for other design parameters that includes weight, cost and reliability, depending on application. Present study has been taken place with circular perforated fin array with different perforation diameter. The main objective of this paper is the Numerical study to quantify Natural Convection heat transfer enhancement of fins array with different types of perforations like Circular, Elliptical, Square and Triangular based on its performance as well as with saving in material by mass. The variables for this natural convection cooling with the help of finned surfaces are geometrical parameters and positioning of perforation. In this study, the steady state heat transfer from the solid fin and perforated fin arrays are compared. The optimized parameters are analysed for better heat transfer coefficient. The increase in the heat transfer coefficient was achieved with perforated fins for area corresponding to 12mm perforation diameter, which shows better enhanced heat transfer coefficient as opposed to the solid fin array with saving in material by mass.
具有不同几何穿孔的矩形翅片阵列增强自然对流换热
由于设备的持续集成、小型化、紧凑型和轻量化,散热是一个亟待解决的问题。选择散热器不仅要考虑其散热性能;但也包括其他设计参数,包括重量,成本和可靠性,取决于应用。本文采用不同孔径的圆孔翅片阵列进行了研究。本文的主要目的是通过数值研究来量化圆形、椭圆形、方形和三角形等不同穿孔类型的翅片阵列在性能和节省材料质量的基础上对自然对流换热的增强。在翅片表面的帮助下,这种自然对流冷却的变量是几何参数和穿孔的位置。本研究比较了固体翅片和穿孔翅片阵列的稳态传热。为了获得更好的传热系数,对优化参数进行了分析。孔径为12mm的穿孔翅片可以提高换热系数,与固体翅片阵列相比,可以更好地提高换热系数,节省材料质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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