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首页> 外文期刊>International communications in heat and mass transfer >Heat transfer and entropy generation analysis of nanofluids thermocapillary convection around a bubble in a cavity
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Heat transfer and entropy generation analysis of nanofluids thermocapillary convection around a bubble in a cavity

机译:腔内气泡周围纳米流体热毛细管对流的传热和熵产生分析

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摘要

In view of the fact that thermocapillary convection is an important heat transfer mechanism in nucleate boiling, and nanofluids is used to be heat transfer medium extensively. The present paper reports the numerical investigation of nanofluids thermocapillary convection around a gas bubble in a cavity, and the effects of nanoparticles volume fraction and size on flow characteristics, heat transfer performance and entropy generation are studied. The results show that, with more nanoparticles add to base fluid can enhance the heat transfer performance of gas bubble thermocapillary convection, the convective intensity is reduced, and the local entropy generation decreases and its distribution becomes more uniform. However, with larger nanoparticles diameter the results are just the opposite, namely, the heat transfer performance is weakened, the convective intensity is enhanced and the total entropy generation increases and its distribution becomes more nonuniform. These findings are of significance for the heat transfer enhancement in nanofluid boiling heat transfer.
机译:鉴于热毛细管对流是成核沸腾中的重要传热机制,并且纳米流体被广泛用作传热介质。本文报道了围绕腔中气泡的纳米流体热毛细管对流的数值研究,并研究了纳米颗粒的体积分数和大小对流动特性,传热性能和熵产生的影响。结果表明,在基液中添加更多的纳米颗粒可以增强气泡热毛细对流的传热性能,对流强度降低,局部熵产生减少,分布更加均匀。但是,当纳米颗粒直径较大时,结果恰好相反,即传热性能减弱,对流强度增强,总熵产生增加,其分布变得更加不均匀。这些发现对于增强纳米流体沸腾传热中的传热具有重要意义。

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