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Characteristics of an Evaporating Thin Film in a Microchannel

机译:微通道中蒸发薄膜的特性

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摘要

An evaporating meniscus in a microchannel is investigated through an augmented Young–Laplace model and the kinetic theory-based expression for mass transport across a liquid–vapor interface. The complete expression for mass transport is employed without any approximations and boundary conditions for the film profile are developed. The thin film and the intrinsic-meniscus regions are distinguished based on the disjoining pressure variation along the meniscus. While heat transfer in the thin-film region is found to be relatively insensitive to channels larger than a few micrometers in radius, that in the intrinsic meniscus is quite sensitive to channel size. The role of evaporation suppression due to capillary pressure in both regions is discussed. Compared to the relatively small contribution to overall heat transfer from the thin-film region, the micro-region (defined here as extending from the non-evaporating region to a location where the film is 1 lm thick) is found to account for more than 50% of the total heat transfer.
机译:通过增强的Young-Laplace模型和基于动力学理论的表达式,研究了微通道中蒸发的弯液面在液体-蒸汽界面上的传质。使用质量传递的完整表达式而没有任何近似,并且为薄膜轮廓确定了边界条件。薄膜和固有弯月面区域是根据沿着弯月面的分离压力变化来区分的。虽然发现薄膜区域中的热传递对半径大于几微米的通道相对不敏感,但固有弯月面中的热传递对通道尺寸非常敏感。讨论了在两个区域中由于毛细管压力引起的蒸发抑制的作用。与从薄膜区域对整体热传递的相对较小贡献相比,发现微观区域(此处定义为从非蒸发区域延伸到薄膜厚度为1 lm的位置)占总传热的50%。

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