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Analysis of Evaporating Mist Flow for Enhanced Convective Heat Transfer

机译:增强对流换热的蒸发雾流分析

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摘要

Enhancement of forced convective heat transport through the use of evaporating mist flow is investigated analytically and by numerical simulation. A two-phase mist, consisting of finely dispersed water droplets in an airstream, is introduced at the inlet of a longitudinally-finned heat sink. The latent heat absorbed by the evaporating droplets significantly reduces the sensible heating of the air inside the heat sink which translates into higher heat-dissipation capacities. The flow and heat transfer characteristics of mist flows are studied through a detailed numerical analysis of the mass, momentum and energy transport equations for the mist droplets and the airstream, which are treated as two separate phases. The coupling between the two phases is modeled through interaction terms in the transport equations. The effects of inlet mist droplet size and concentration on the thermal performance of the heat sink are analyzed parametrically. The results provide insight into the complex transport processes associated with mist flows. The simulations indicate that significantly higher heat transfer coefficients are obtained with mist flows as compared to air flows, highlighting the potential for the use of mist flows for enhanced thermal management applications.
机译:通过分析和数值模拟,研究了利用蒸发雾流增强强迫对流传热的方法。由气流中细微分散的水滴组成的两相雾在纵向翅片散热器的入口处引入。蒸发液滴吸收的潜热显着降低了散热器内部空气的显热,从而转化为更高的散热能力。通过对雾滴和气流的质量,动量和能量传输方程的详细数值分析,研究了雾流的流动和传热特性,将雾气和气流视为两个独立的相。两相之间的耦合通过输运方程中的相互作用项进行建模。通过参数分析了入口雾滴的大小和浓度对散热器热性能的影响。结果提供了与雾流相关的复杂运输过程的见解。仿真表明,与空气流相比,雾流获得的传热系数明显更高,这突出了将雾流用于增强的热管理应用的潜力。

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