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Spray cooling characteristics of nanofluids for electronic power devices

机译:电子功率器件纳米流体的喷雾冷却特性

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摘要

The performance of a single spray for electronic power devices using deionized (DI) water and pure silver (Ag) particles as well as multi-walled carbon nanotube (MCNT) particles, respectively, is studied herein. The tests are performed with a flat horizontal heated surface using a nozzle diameter of 0.5 mm with a definite nozzle-to-target surface distance of 25 mm. The effects of nanoparticle volume fraction and mass flow rate of the liquid on the surface heat flux, including critical heat flux (CHF), are explored. Both steady state and transient data are collected for the two-phase heat transfer coefficient, boiling curve/ cooling history, and the corresponding CHF. The heat transfer removal rate can reach up to 274 W/cm2 with the corresponding CHF enhancement ratio of 2.4 for the Ag/water nanofluids present at a volume fraction of 0.0075% with a low mass flux of 11.9 × 10−4 kg/cm2s.
机译:本文研究了分别使用去离子(DI)水和纯银(Ag)颗粒以及多壁碳纳米管(MCNT)颗粒的单次喷雾用于电力电子设备的性能。测试是在平坦的水平加热表面上进行的,喷嘴直径为0.5毫米,喷嘴到目标的确定表面距离为25毫米。探索了纳米颗粒的体积分数和液体的质量流量对表面热通量(包括临界热通量(CHF))的影响。收集稳态和瞬态数据以获取两相传热系数,沸腾曲线/冷却历史以及相应的CHF。 Ag /水纳米流体的热传递去除率可以达到274W / cm 2 ,相应的CHF增强比为2.4,以0.0075%的体积分数存在,低质量通量为11.9 ×10 −4 kg / cm 2 s。

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