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Flow Boiling Heat Transfer and Two-Phase Flow instability of Nanofluids In a Minichannel

机译:微通道中纳米流体的流沸腾传热和两相流不稳定性

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Recent studies of single-phase convective heat transfer of nanofluids reveal that, unlike the promising hypohesis in the early works, there is no significant improvement in the overall thermal performance of nanofluids over that of the base fluids when both heat transfer and hydrodynamic characteristics are considered. Meanwhile, very few studies have been devoted to investigating two-phase heat transfer of nanofluids, and it remains inconclusive whether the same pessimistic outlook should be expected. In this work, an experimental study of forced convective flow boiling and two-phase flow was conducted for Al_2O_3-water nanofluids through a minichannel. General flow boiling heat transfer characteristics were measured, and the effects of nanofluids on the onset of nucleate boiling (ONB) were studied. Two-phase flow instabilities were also explored with an emphasis on the transition boundaries of onset of flow instabilities (OFI). It was found that the presence of nanoparticles delays ONB and suppresses OFI, and the extent is correlated to the nanoparticle volume concentration. These effects were attributed to the change of surface wettability and the thinning of thermal boundary layer in the nanofluid flow. Additionally, it was observed that the pressure-drop type flow instability prevails in nanofluid two-phase flow, however, the oscillation amplitudes of the pressure, temperature and mass flux measurements are reduced.
机译:纳米流体单相对流传热的最新研究表明,与早期工作中令人鼓舞的假设不同,与传热和流体动力学特性同时考虑,纳米流体的整体热性能与基础流体相比没有明显改善。 。同时,很少有研究致力于研究纳米流体的两相传热,并且是否可以期待同样的悲观前景还没有定论。在这项工作中,通过微通道对Al_2O_3-水纳米流体进行了强制对流沸腾和两相流动的实验研究。测量了一般流动沸腾的传热特性,并研究了纳米流体对核沸腾(ONB)发生的影响。还研究了两相流动不稳定性,重点是流动不稳定性(OFI)发作的过渡边界。发现纳米粒子的存在延迟了ONB并抑制了OFI,并且程度与纳米粒子的体积浓度相关。这些效应归因于纳米流体流中表面润湿性的变化和热边界层的变薄。另外,观察到在纳米流体两相流中普遍存在压降型流动不稳定性,但是,压力,温度和质量通量测量值的振荡幅度减小了。

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