采用u型管热管的MWCNT-LA NEPCM散热器,提高了电子处理器冷却的热管理和能源效率

S. Kalaiselvam , A. Lakshmi Kanthan Bharathi , A. Ameelia Roseline
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引用次数: 0

摘要

本研究研究了一种多壁碳纳米管注入月桂酸(MWCNT-LA)散热器的效率,该散热器采用u型管热管填充正戊烷,用于电子处理器的冷却。在不同的热负荷和填充率下进行了实验评估,以评估处理器的稳定性和能效。研究了多壁碳纳米管注入月桂酸相变材料的不同热管辅助散热器模块的节能性能、热阻、再生时间和最佳热管填充比。结果表明,正戊烷填充率为50%的MWCNT-LA散热器模块在高热负荷下表现最佳,在填充率为50%、热负荷为75%时热阻最低,为0.63°C/W。这种设计的效率是未填充热管版本的3.58倍,以最小的冷却风扇能耗实现了78%的节能。开发的散热器设计通过利用潜热储存和提高热管传热效率来改善热管理,从而优化热性能,散热和温度调节。这些改进提高了数据中心冷却应用中处理器的运行可靠性和能源效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced thermal management and energy efficiency in electronic processor cooling using MWCNT-LA NEPCM heat sink with U-tube heat pipes
This study investigates the efficiency of a multi-walled carbon nanotube-infused lauric acid (MWCNT-LA) heatsink with U-tube heat pipes filled with n-pentane for electronic processor cooling. Experimental evaluations were conducted under varying heat loads and filling ratios to assess processor stability and energy efficiency. The investigation focused on energy savings, the thermal resistance of different heat pipe-assisted heatsink modules with multi-walled carbon nanotube-infused lauric acid phase change material, with its regeneration time, and optimal heat pipe filling ratio. Results showed that the MWCNT-LA heat sink module with 50% n-pentane filling performed best under higher heat loads, achieving the lowest thermal resistance of 0.63 °C/W at 50% filling ratio and 75% heat load. This design was 3.58 times more effective than the unfilled heat pipe version and achieved 78% energy savings with minimal cooling fan energy consumption. The developed heat sink design improves thermal management by utilizing latent heat storage and enhancing heat transport efficiency through the heat pipe, thus optimizing thermal performance, heat dissipation, and temperature regulation. These improvements increased the operational reliability and energy efficiency of processors in data center cooling applications.
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