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Experimental Evaluation of the Convective Heat Transfer Coefficients in a Nanofluid-Cooled Milli Channels Heat Sink

机译:纳米流体冷却的Milli通道散热器中对流传热系数的实验评估

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The convective heat transfer process and flow characteristics of aluminum oxide (Al_2O_3)/water nanofluid flowing through milli channels with a hydraulic diameters of 2 mm, with a constant heat flux boundary condition, was investigated. Using experimental equipment, the effect of some factors like volume fractions, Reynolds number and Peclet number are evaluated. Furthermore, an experimental model for Nusselt number is presented in order to show the enhancement of the convective heat transfer compared with a single-phase model in milli channel. Suggestions and direction for future developments for the use of nanofluids in milli channels are also presented.
机译:研究了在恒定的热通量边界条件下,流经水力直径为2 mm的毫通道的氧化铝(Al_2O_3)/水纳米流体的对流传热过程和流动特性。使用实验设备,评估一些因素(如体积分数,雷诺数和佩克雷特数)的影响。此外,提出了Nusselt数的实验模型,以显示与毫通道中的单相模型相比,对流换热的增强。还提出了在毫通道中使用纳米流体的建议和未来发展的方向。

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