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Numerical analysis of the effect of a central cylindrical opening on the heat transfer of radial heat sinks for different orientations

机译:中枢圆柱开口对不同取向径向散热器传热影响的数值分析

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摘要

This paper presents a numerical study aimed to improve the natural convective cooling design of radial heat sinks used for light emitting diode (LED) bulbs. The improved design utilizes a central opening on the bottom that allows an additional natural cooling flow through the center of the fin array. First, the optimum fin spacing of a standard radial heat sink was determined and used as a reference geometry to compare the degree of improvement. By comparing different heat sink orientations, it was found that the opening can improve the orientation sensitivity by reducing the maximum difference in thermal resistance from 47.1% to 22.4%. At the orientations with theta=0 degrees, 90 degrees, and 180 degrees, the thermal resistance of the radial heat sink was reduced by up to 4.3, 30.5, and 14.3 KEW, respectively. The effect of geometric parameters was investigated revealing that a larger opening diameter and height lead to a lower thermal resistance. The numerical model was further used to visualize the natural convective cooling flow through the fin array. For the acquired data set practical Nu-correlations including dimensionless parameters accounting for the height and diameter of the opening are proposed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种数值研究,旨在改善用于发光二极管(LED)灯泡的径向散热器的自然对流冷却设计。改进的设计利用底部的中心开口,允许通过鳍阵列的中心进行额外的自然冷却流。首先,确定标准径向散热器的最佳翅片间距并用作参考几何体以比较改善程度。通过比较不同的散热方向,发现开口可以通过将热阻的最大差从47.1%降低至22.4%来提高取向灵敏度。在θ= 0度的方向上,90度和180度,径向散热器的热阻分别降低了4.3,30.5和14.3 kew。研究了几何参数的效果揭示了更大的开口直径和高度导致较低的热阻。该数值模型进一步用于通过翅片阵列可视化自然对流冷却流。对于所获取的数据集,提出了提出了包括用于开口的高度和直径的无量纲参数的实际Nu相关性。 (c)2017 Elsevier Ltd.保留所有权利。

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