Experiment of Enhanced Pool Boiling Heat Transfer on Coupling Effects of Nano-Structure and Synergistic Micro-Channel

Linsong Gao, Jizu Lv, Min-li Bai, Chengzhi Hu, L. Du, Yubai Li
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Abstract

The manipulation of micro- or nano-structure is a promising method to improve pool boiling heat transfer performance. However, most studies just focus on the micro- or nano-structure without considering the combination micro- and nano-structure. In this paper, we fabricated synergistic microchannel, nano-structure, and micro-nano structure surface on the nickel by different technologies. Pool boiling of DI water under saturated condition was experimentally investigated. Result shows at the wall superheat of 18 K, the heat transfer coefficient of micro-nano structure, nano-structure and synergistic micro-channel surface are 16400, 13050, and 13400 W/m2 K higher 89%, 50%, and 54% than that of smooth surface, respectively. The improved heat transfer is attributed to active nucleation sites and capillary flow.
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强化池沸腾换热对纳米结构与协同微通道耦合效应的影响
微纳米结构是改善池沸腾换热性能的一种很有前途的方法。然而,大多数研究只关注微纳米结构,而没有考虑微纳米结构的结合。本文采用不同的工艺在镍表面制备了协同微通道、纳米结构和微纳结构表面。对饱和条件下去离子水的池沸进行了实验研究。结果表明:当壁面过热为18 K时,微纳结构、纳米结构和协同微通道表面的换热系数分别比光滑表面高89%、50%和54%,分别为16400、13050和13400 W/m2 K。热传递的改善是由于活跃的成核位置和毛细管流动。
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