散热片的几何形状和数量对作为电子设备冷却替代方案的散热片温度分布的影响

F. Subekti, S. Wahyudi, Femiana Gapsari
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引用次数: 0

摘要

本研究旨在确定铜材料散热片的几何形状对散热片表面温度分布的影响。本研究使用的材料是纯铜,散热鳍片的形状是波纹状的,增加了 5、6 和 7 个鳍片的数量,输入温度从 40 摄氏度到 80 摄氏度不等,气流变化从 0.2 米/秒到 1 米/秒不等。第一步是使用 Autodesk Inventor 创建散热器设计。然后使用 Autodesk CFD 对该方案进行模拟,以求解连续性、动量、湍流和能量方程。根据所采用的方法,可以发现增加散热片数量的变化会影响表面温度的下降。翅片 5 波纹上的最高温度下降了 24.1 摄氏度,热能传递率增加了 0.4657 瓦,对流传热系数增加了 3.47 瓦/米²C。努塞尔特数增加了 271。鳍片性能使效率提高了 63.4%,效果提高了 1.61%。这项研究的结果有望为散热板提供可广泛采用的实用替代方案,对未来的热学发展大有希望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PENGARUH GEOMETRI DAN PENAMBAHAN JUMLAH SIRIP TERHADAP DISTRIBUSI TEMPERATUR HEAT SINK SEBAGAI ALTERNATIF PENDINGINAN PADA PIRANTI ELEKTRONIK
This study aims to determine the effect of the geometry shape of the copper material heat sink fins on the surface temperature distribution of the heat sink. The material used in this research is pure copper, the shape of the heat sink fins is made rippled with the addition of the number of fins 5, 6, and 7 and the input temperature is varied from 40 C to 80 C with airflow variations from 0.2 m/s to 1 m/s. The first step is to create a heat sink design with Autodesk Inventor. Then the plan is simulated with Autodesk CFD to solve the continuity, momentum, turbulence, and energy equations. Based on the method that has been carried out, it is found that the addition of variations in the number of fins affects the decrease in surface temperature. The highest temperature drop on fin 5 ripples is 24.1 C. The heat energy transfer rate increased by 0.4657 W. The convection heat transfer coefficient  increased by 3.47 W/m²C. Nusselt number shows an increase of 271. Fin performance has increased efficiency by  63.4 %, and effectiveness by 1.61. The results of this study are expected to provide practical alternatives that can be widely adopted on a heatsink plate that is very promising for future thermal developments.
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