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Inverse-thermocapillary evaporation in a thin liquid film of self-rewetting fluid

机译:在自重润湿液的薄液膜中反相热蒸发

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Purpose - The present study aims to investigate the inverse-thermocapillary effect in an evaporating thin liquid film of self-rewetting fluid, which is a dilute aqueous solution (DAS) of long-chain alcohol. Design/methodology/approach - A long-wave evolution model modified for self-rewetting fluids is used to study the inverse thermocapillary characteristics of an evaporating thin liquid film. The flow attributed to the inverse thermocapillary action is manifested through the streamline plots and the evaporative heat transfer characteristics are quantified and analyzed. Findings - The thermocapillary flow induced by the negative surface tension gradient drives the liquid from a low-surface-tension (high temperature) region to a high-surface-tension (low temperature) region, retarding the liquid circulation and the evaporation strength. The positive surface tension gradients of self-rewetting fluids induce inverse-thermocapillary flow. The results of different working fluids, namely, water, heptanol and DAS of heptanol, are examined and compared. The thermocapillary characteristic of a working fluid is significantly affected by the sign of the surface tension gradient and the inverse effect is profound at a high excess temperature. The inverse thermocapillary effect significantly enhances evaporation rates. Originality/value - The current investigation on the inverse thermocapillary effect in a self-rewetting evaporating thin film liquid has not been attempted previously. This study provides insights on the hydrodynamic and thermal characteristics of thermocapillary evaporation of self-rewetting liquid, which give rise to significant thermal enhancement of the microscale phase-change heat transfer devices.
机译:目的 - 本研究旨在探讨蒸发薄液膜中的逆热量效果,其是长链醇的稀水溶液(DAS)。设计/方法/方法 - 用于自润湿流体改造的长波演化模型用于研究蒸发薄液膜的逆热毛细血管特性。归因于逆热量动作的流动通过流线图表现出蒸发的传热特性和分析。结果 - 由负面张力梯度引起的热量量流动从低表面张力(高温)区域驱动液体到高表面张力(低温)区域,延迟液体循环和蒸发强度。自重润湿液的正表面张力梯度诱导反热量流动。检查和比较不同工作流体,即水,庚醇和DAS的不同工作流体的结果。工作流体的热量量特性受到表面张力梯度的迹象的显着影响,并且在高度过高的温度下深度效果深度。逆热量效应显着提高了蒸发速率。原创性/值 - 目前尚未尝试对自润湿蒸发薄膜液中的反相热缺陷效果的当前研究。本研究提供了对自润湿液体热毛细血管蒸发的流体动力学和热特性的见解,这引起了微观相变传热装置的显着热增强。

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