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Subcooled flow boiling of alumina/water nanofluid in a channel with a hot spot: An experimental study

机译:带有热点的通道中氧化铝/水纳米流体的过冷流动沸腾:实验研究

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摘要

Nanofluids are the fluids with nanoscale particles in size which have capability to improve the heat transfer coefficient in many cases. In this experimental study, the subcooled flow boiling of alumina/water nanofluid with volume fraction of 0.25% along a channel with a hot spot is carried out. The purpose of this experimental test rig is to create the most resemblance condition to an Internal Combustion Engine (ICE) water jacket coolant to study the effect of fluid velocity and surface roughness on the coolant while boiling taking place. The setup consists of a 12 mm circular heater that is placed on the lower wall of a channel with 20 x 30 mm(2) cross section. The fluid velocities and surface roughness are 0.5, 0.7,0.9 m/s and 0.65,4.4,15.1 mu m respectively. The experimental results show that by increasing the surface roughness and fluid velocity the surface heat fluxes increase. The pure force convective and the flow boiling heat transfer coefficients of the nanofluid are also increased with respect to pure water. Based on the experimental measured data, two new independent empirical correlations are presented for the flow channel. These two models can be used to determine the subcooled flow boiling heat transfer inside a channel with a hot spot with good accuracy. (C) 2015 Elsevier Ltd. All rights reserved.
机译:纳米流体是具有纳米级粒径的流体,在许多情况下具有改善传热系数的能力。在该实验研究中,沿着具有热点的通道对体积分数为0.25%的氧化铝/水纳米流体进行了过冷流沸腾。该实验测试台的目的是为内燃机(ICE)水套冷却液创造最相似的条件,以研究沸腾时流体速度和表面粗糙度对冷却液的影响。该设置包括一个12 mm的圆形加热器,该加热器放置在横截面为20 x 30 mm(2)的通道的下壁上。流体速度和表面粗糙度分别为0.5、0.7、0.9m / s和0.65、4.4、15.1μm。实验结果表明,通过增加表面粗糙度和流体速度,表面热通量增加。相对于纯水,纳米流体的纯力对流和流沸腾传热系数也增加了。基于实验测得的数据,为流道提出了两个新的独立的经验相关性。这两个模型可用于确定具有热点的通道内过冷流动沸腾传热的准确性。 (C)2015 Elsevier Ltd.保留所有权利。

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