Experimental Study of Wickless Heat Pipe with Flat Evaporator for Used in Cooling of Electronic Components

Samah Ihsan Adnan, A. Ahmad, A. Abdulrasool
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引用次数: 1

Abstract

In this paper, systematic experimental investigations were carried out for a wickless heat pipe with flat evaporator having dimensions (100x100x30) mm. Flat-square electrical element was used to simulate the heat source of electronic part with dimensions of (100x100) mm. The aim of this paper presents the effect of fill ratio and cooling water mass flow rate on thermal performance of a wickless heat pipe. Experiments were performed to evaluate performance of wickless heat pipe for range of input power from 10 W to 100 W. The fill ratios used in the present work were 15%, 25%50% and 85%. The cooling water mass flow rate was also changed from 0.0083 kg/s to 0.033 kg/s. Experimental results showed that the maximum value of wall evaporator temperature was 115°C at input power of 100 W and a fill ratio of 15%. Results also showed that the maximum value of the total resistance was 0.8°C/W.
平板蒸发器无芯热管用于电子元件冷却的实验研究
本文对尺寸为(100x100x30) mm的平板蒸发器无芯热管进行了系统的实验研究,采用平板方形电元件模拟尺寸为(100x100) mm的电子部件的热源,研究了填充比和冷却水质量流量对无芯热管热工性能的影响。在10 ~ 100 W的输入功率范围内,对无芯热管的性能进行了试验研究。本工作采用的填充率分别为15%、25%、50%和85%。冷却水质量流量由0.0083 kg/s增加到0.033 kg/s。实验结果表明,当输入功率为100 W,填充率为15%时,壁式蒸发器温度最大值为115℃。总电阻的最大值为0.8°C/W。
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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