期刊文献+

Optimization of Dimples in Microchannel Heat Sink with Impinging Jets Part A: Mathematical Model and the Influence of Dimple Radius 被引量:7

Optimization of Dimples in Microchannel Heat Sink with Impinging Jets——Part A: Mathematical Model and the Influence of Dimple Radius
原文传递
导出
摘要 With increasing heat fluxes caused by electronic components, dimples have attracted wide attention by researchers and have been applied to microchannel heat sink in modern advanced cooling technologies. In this work, the combination of dimples, impinging jets and microchannel heat sink was proposed to improve the heat transfer performance on a cooling surface with a constant heat flux 500 W/cm^2. A mathematical model was advanced for numerically analyzing the fluid flow and heat transfer characteristics of a microchannel heat sink with impinging jets and dimples(MHSIJD), and the velocity distribution, pressure drop, and thermal performance of MHSIJD were analyzed by varying the radii of dimples. The results showed that the combination of dimples and MHSIJ can achieve excellent heat transfer performance; for the MHSIJD model in this work, the maximum and average temperatures can be as low as 320 K and 305 K, respectively when mass flow rate is 30 g/s; when dimple radius is larger than 0.195 mm, both the heat transfer coefficient and the overall performance h/ΔP of MHSIJD are higher than those of MHSIJ. With increasing heat fluxes caused by electronic components, dimples have attracted wide attention by researchers and have been applied to microchannel heat sink in modem advanced cooling technologies. In this work, the combination of dimples, impinging jets and microchannel heat sink was proposed to improve the heat transfer performance on a cooling surface with a constant heat flux 500 W/cm2. A mathematical model was ad- vanced for numerically analyzing the fluid flow and heat transfer characteristics of a microchannel heat sink with impinging jets and dimples (MHSIJD), and the velocity distribution, pressure drop, and thermal performance of MI-ISIJD were analyzed by varying the radii of dimples. The results showed that the combination of dimples and MHSIJ can achieve excellent heat transfer performance; for the MHSIJD model in this work, the maximum and average temperatures can be as low as 320 K and 305 K, respectively when mass flow rate is 30 g/s; when dimple radius is larger than 0.195 mm, both the heat transfer coefficient and the overall performance h/AP of MHSIJD are higher than those of MHSIJ.
出处 《Journal of Thermal Science》 SCIE EI CAS CSCD 2018年第3期195-202,共8页 热科学学报(英文版)
基金 financially supported by the National Natural Science Foundation of China(Grant No.51778511) the Hubei Provincial Natural Science Foundation of China(Grant No.2018CFA029) the Key Project of ESI Discipline Development of Wuhan University of Technology(WUT Grant No.2017001)
关键词 数学模型 半径比 水池 喷气 微通道 优化 冷却技术 Microchannel with Impinging Jet Dimple Heat Transfer Enhancement Thermal Resistance Numerical Simulation
  • 相关文献

参考文献4

二级参考文献6

共引文献57

同被引文献23

引证文献7

二级引证文献19

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部