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首页> 外文期刊>International Journal of Heat and Mass Transfer >Surface orientation effects on heat transfer performance of spray cooling
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Surface orientation effects on heat transfer performance of spray cooling

机译:表面取向对喷雾冷却传热性能的影响

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In this study, the heat transfer performances of spray cooling for upward, vertical, and downward surfaces under different nozzle-to-surface distances, inlet pressures, nozzle types, and surface areas were investigated experimentally. Almost no difference in heat transfer performance can be found among the different orientations in single-phase and two-phase regimes. A considerable orientation dependency of the critical heat flux (CHF) can be observed in medium-spray volumetric fluxes: the CHF of the vertical surface is higher than that of the upward and downward surfaces. The orientation dependency of the CHF reduces as the inlet pressure increases, implying that an increase in droplet diameter or decrease in droplet velocity would enhance this dependency. The surface orientation has no significant effect on surface liquid film flow and temperature distribution. In this paper, interaction between the vapour and spray (or surface wall) is proposed and verified to be the main mechanism that affects orientation dependency by intermittent spray cooling. A macrolayer model for the CHF is semi-empirically introduced to account for the orientation effects and provide a quantitative evaluation of these effects. Finally, based upon this model, a general correlation for the CHF is proposed.
机译:在这项研究中,实验研究了在不同的喷嘴到表面距离,入口压力,喷嘴类型和表面积的情况下,喷雾冷却对向上,垂直和向下表面的传热性能。在单相和两相状态下,不同方向之间的传热性能几乎没有差异。在中等喷雾体积通量中,可以观察到临界热通量(CHF)的显着取向依赖性:垂直表面的CHF高于上下表面的CHF。 CHF的方向依赖性随入口压力的增加而减小,这意味着液滴直径的增大或液滴速度的减小将增强这种依赖性。表面取向对表面液膜流动和温度分布没有显着影响。在本文中,蒸气与喷雾(或表面壁)之间的相互作用被提出并被证实是通过间歇喷雾冷却影响取向依赖性的主要机理。半经验法引入了CHF的宏层模型,以说明取向效应并提供对这些效应的定量评估。最后,基于该模型,提出了CHF的一般相关性。

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