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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >An experimental IR thermographic method for the evaluation of the heat transfer coefficient of liquid-cooled short pin fins arranged in line
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An experimental IR thermographic method for the evaluation of the heat transfer coefficient of liquid-cooled short pin fins arranged in line

机译:红外热成像实验方法,用于评估排成一行的液冷短销鳍片的传热系数

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摘要

The last developments in the electronic fields bring to high specific thermal fluxes to dissipate. These high thermal fluxes, localized on small exchange surface areas, often require cooling systems based on liquid in forced convection; a typical one is the cold plate. This normally has short fins on the liquid side and its heat exchange performance is strongly influenced by the fin efficiency that is related to the fins shape and arrangement. In the most part of the case the fins on the liquid side have a small aspect ratio and so the tri-dimensional fluid dynamic effects on the fin tips are not negligible in relation to the thermal exchange capabilities. This research work is aimed to evaluate the convective heat transfer coefficient, i.e. the Nusselt number, of short pin fins cooled by means of water in forced convection. In particular the work is focused on the geometry (circular, square, triangular, rhomboidal) shape effect for three pins in line assembled and the thermal analysis is performed by using a quantitative infrared method developed in a previous work. The thermal analysis is related to ink flow visualizations in order to better understand the effects of the main flow field on the thermal exchange capacities of every pin inside the line. The results show a dependence for the Nusselt trends on the pin position; this is due to the shadow effect of the pin upstream with respect to the one downstream. This behavior is strongly influenced on the pin geometry and particularly there is a better behavior for the triangular and rhomboidal pins. (C) 2005 Elsevier Inc. All rights reserved.
机译:电子领域的最新发展带来了高比热通量的消散。这些高热通量位于较小的交换表面积上,通常需要基于强制对流的冷却系统。典型的是冷盘。这通常在液体侧具有短的散热片,并且其热交换性能受到与散热片形状和布置有关的散热片效率的强烈影响。在大多数情况下,液体侧的散热片的纵横比较小,因此,相对于热交换能力,在散热片尖端上的三维流体动力学影响不可忽略。这项研究工作旨在评估在强制对流中用水冷却的短针鳍的对流传热系数,即Nusselt数。特别地,该工作集中于在线装配的三个销的几何形状(圆形,正方形,三角形,菱形)效果,并且通过使用先前工作中开发的定量红外方法进行热分析。热分析与墨水流动的可视化相关,以便更好地了解主流场对生产线内每个引脚的热交换容量的影响。结果表明,Nusselt趋势与销钉位置有关;这是由于上游销相对于下游销的阴影效应。此行为严重影响了销的几何形状,尤其是三角形和菱形的销具有更好的行为。 (C)2005 Elsevier Inc.保留所有权利。

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