纳米流体
材料科学
微通道
散热片
传热
强化传热
沸腾
热力学
纳米颗粒
临界热流密度
传热系数
化学工程
复合材料
纳米技术
物理
工程类
作者
Guido Marseglia,Maria Grazia De Giorgi,Pedro Pontes,R. Solipa,Reinaldo Rodrigues de Souza,A.L.N. Moreira,Ana Moita
标识
DOI:10.1016/j.expthermflusci.2023.111052
摘要
This paper investigates the advantages and challenges associated with two-phase flows, specifically flow boiling of pure liquids and nanofluids, for cooling applications in microchannel heat sinks. The study explores various two-phase flow patterns, their related issues, and examines the potential of nanoparticles to enhance heat transfer. Alumina (Al2O3), gold (Au), and silver (Ag) nanoparticles at different concentrations were tested. Experimental tests were conducted under different working conditions using various working fluids, including water, Al2O3 1wt%, Ag 1 wt%, Au 1 wt%, Au 0.75 wt%, Au 0.5 wt%. The heat fluxes used were 1.026kW/m2, 1.696 W/m2 and 2.403kW/m2, while the volumetric flows ranged between 0.5mL/min and 1.5mL/min. The observed results indicate that even for the lowest particle concentration tested, the water-Au nanofluid exhibits superior cooling performance compared to the other examined fluids. The findings suggest that although two-phase flow conditions may not yield significant benefits, even small concentrations of nanoparticles (ϕ << 1%) can significantly impact heat transfer mechanisms. This approach provides a cost-effective and efficient alternative for cooling microchannel heat sinks without necessitating the use of two-phase flow conditions.
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