论文标题

部分可观测时空混沌系统的无模型预测

Evaporation-driven liquid flow in sessile droplets

论文作者

Gelderblom, Hanneke, Diddens, Christian, Marin, Alvaro

论文摘要

无柄液滴的蒸发会自发诱导内部毛细管液体流动。由蒸发引起的温度或化学梯度引起的液态气体界面处的表面趋势最小化和/或表面张力差异使液体运动。该流动沿悬浮物质拖动,是控制污渍中材料沉积的钥匙之一,而污渍被干燥的液滴留在后面。该原理的应用范围从对印刷和涂料行业中的污渍形成的控制,到DNA的分析,对血迹的法医和医学研究,再到使用蒸发驱动的纳米技术的自组装。因此,无柄液滴的蒸发不仅引起了流体动力学的巨大兴趣,而且还引起了软物质,化学,生物学,工程,纳米技术和数学社区的兴趣。由于这种广泛的兴趣,对干燥液滴中蒸发驱动的流动的知识仍然分散在不同的领域,导致各种误解和误解。在这篇综述中,我们旨在统一这些观点,并根据最新的实验和理论进步来反思对蒸发驱动的液体流动的当前理解。此外,我们概述了开放问题,并指示了未来研究的有希望的方向。

The evaporation of a sessile droplet spontaneously induces an internal capillary liquid flow. The surface-tension driven minimisation of surface area and/or surface-tension differences at the liquid-gas interface caused by evaporation-induced temperature or chemical gradients set the liquid into motion. This flow drags along suspended material and is one of the keys to control the material deposition in the stain that is left behind by a drying droplet. Applications of this principle range from the control of stain formation in the printing and coating industry, to the analysis of DNA, to forensic and medical research on blood stains, and to the use of evaporation-driven self-assembly for nanotechnology. Therefore, the evaporation of sessile droplets attracts an enormous interest from not only the fluid dynamics, but also the soft matter, chemistry, biology, engineering, nanotechnology and mathematics communities. As a consequence of this broad interest, knowledge on evaporation-driven flows in drying droplets has remained scattered among the different fields, leading to various misconceptions and misinterpretations. In this review we aim to unify these views, and reflect on the current understanding of evaporation-driven liquid flows in sessile droplets in the light of the most recent experimental and theoretical advances. In addition, we outline open questions and indicate promising directions for future research.

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