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The effect of capillary wicking action of microano structures on pool boiling critical heat flux

机译:微纳米结构的毛细作用对池沸腾临界热通量的影响

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It is well known that nanoparticles deposited on a heating surface during nanofluids boiling can change the characteristics of the heating surface and increase the critical heat flux (CHF) dramatically. We considered a new approach to investigate the nanoparticle surface effect on CHF enhancement using surfaces modified with artificial micro, nano, and microano structures similar to deposited nanoparticle structures through the anodic oxidation on the zirconium alloy heater. We examined the effect of the capillary wicking action ability on the CHF enhancement due to the micro, nano, and microano structured surfaces. The results demonstrated that the CHF enhancement on the modified surfaces was a consequence of the capillary wicking action ability of the artificial microano structures through the high-speed visualization of the capillary wicking action.
机译:众所周知,在纳米流体沸腾期间沉积在加热表面上的纳米颗粒可改变加热表面的特性并显着增加临界热通量(CHF)。我们考虑了一种新方法来研究纳米颗粒表面对CHF增强的影响,该方法使用经过人工微,纳米和微/纳米结构修饰的表面,类似于通过锆合金加热器上的阳极氧化沉积的纳米颗粒结构。我们检查了毛细管吸液作用能力对CHF增强的影响,这归因于微米,纳米和微米/纳米结构表面。结果表明,通过对毛细管芯吸作用的高速可视化,人造微/纳米结构的毛细管芯吸作用能力是CHF在改性表面上增强的结果。

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