Comparison of pressure drop and heat transfer performance for liquid metal cooled mini-channel with different coolants and heat sink materials

被引:0
|
作者
Adeel Muhammad
Deepak Selvakumar
Alfredo Iranzo
Qaiser Sultan
Jian Wu
机构
[1] Harbin Institute of Technology,School of Energy Science and Engineering
[2] University of Sevilla,Energy Engineering Department, School of Engineering
[3] Institute of Space Technology,Key Laboratory of Aerospace Thermophysics
[4] Ministry of Industry and Information Technology,undefined
关键词
Liquid metal; Mini-channel; Heat sink materials; Maximum heat flux; Pumping power;
D O I
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中图分类号
学科分类号
摘要
In this study, 3-D numerical simulations are conducted for single-phase flow and conjugate heat transfer in mini-channel heat sinks subjected to constant heat flux. The effects of using different gallium alloys (EGaInSn, EGaIn, GaSn, and GaIn) and various substrate materials (copper alloy, aluminum, tungsten, and silicon) on the temperature distribution, pumping power, pressure drop, maximum heat flux, and the total thermal resistance are comprehensively investigated for a series of Reynolds number (300–1900). Among all coolants considered, it is found that EGaIn reduces the flow resistance most efficiently. It is also found that the substrate material’s conductivity significantly influences the thermal resistance of the mini-channel. The higher conductivity leads to lower thermal resistance. In addition, when comparing to other gallium alloys, the GaIn alloy with higher thermal conductivity and specific heat shows better thermal performance. Finally, numerical results of the pumping power and pressure drop for gallium alloys are compared and discussed with the prediction by analytical correlations.
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页码:289 / 300
页数:11
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