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Effect of surface roughness on pool boiling heat transfer in subcooled water-CuO nanofluid

机译:表面粗糙度对过冷水-CuO纳米流体池沸腾传热的影响

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摘要

We investigated the effect of surface roughness on pool boiling heat transfer in subcooled water-CuO nanofluid. Experiment was performed using 0.1% volumetric water-CuO nanofluid and pure water for comparison. The following results were obtained. The heat flux tended to increase as the liquid subcooling increased in the region of low wall superheat. However, the effect of liquid subcooling gradually decreased as the wall superheat increased. The heat flux of pure water and nanofluid was almost similar in the region of low wall superheat. As the wall superheat increased, however, the heat flux of nanofluid decreased compared to that of pure water. This was attributable to the fact that the nanoparticles mixed with pure water reduced the heat flux by deteriorating boiling on the heat transfer surface. The heat flux increased as the surface roughness increased in the pure water, but the effect of surface roughness on heat flux was unclear in the nanofluid. This was attributable to the decreased difference of surface roughness, which was caused by the coating or deposition of nanoparticles on the heat transfer surface during the experiment.
机译:我们研究了表面粗糙度对过冷水-CuO纳米流体中池沸腾传热的影响。使用0.1%体积的水-CuO纳米流体和纯水进行实验以进行比较。获得了以下结果。在低壁过热区域,随着液体过冷的增加,热通量趋于增加。但是,随着壁过热的增加,液体过冷的效果逐渐降低。在低壁过热区域,纯水和纳米流体的热通量几乎相似。但是,随着壁过热的增加,与纯水相比,纳米流体的热通量下降了。这归因于这样的事实,即与纯水混合的纳米颗粒通过使传热表面上的沸腾恶化而降低了热通量。在纯水中,热通量随表面粗糙度的增加而增加,但是在纳米流体中,表面粗糙度对热通量的影响尚不清楚。这归因于表面粗糙度的减小,这是由于在实验期间纳米颗粒在传热表面上的涂覆或沉积所引起的。

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