论文标题

取决于液滴的大小和液体和底物的液滴尺寸和特性

Fluid flow structures in an evaporating sessile droplet depending on the droplet size and properties of liquid and substrate

论文作者

Turchaninova, M. N., Melnikova, E. S., Gavrilina, A. A., Barash, L. Yu.

论文摘要

我们根据底物与流体热导电率,流体挥发性,接触角和液滴大小的比率,研究了数值上准稳态的内部流动液液滴中的静态蒸发液滴。对于1-己醇,1-丁醇和乙醇的液滴获得了温度分布和涡流结构。为此,已经共同考虑了蒸发的无柄滴,液滴和底物的热传导的影响以及空气中蒸气的扩散的影响。该方程已通过使用ANSYS Fluent通过有限元方法求解。获得了涡流的数量和方向的相图,以接触角的函数以及底物与流体热导电率的比率,并分析各种参数值。特别是,已经考虑了重力对液滴形状的影响和液滴尺寸的影响。我们发现,高挥发性液滴的相图不包含与反向单涡流相对应的子区域,并且它们的单涡流子区域变得更加复杂。较大尺寸的液滴的相图不是对应于常规单个涡流和三个涡旋的Contian子区域。我们演示了单涡次区域如何随着液滴尺寸的逐渐增加而消失。

We investigate numerically quasi-steady internal flows in an axially symmetrical evaporating sessile droplet depending on the ratio of substrate to fluid thermal conductivities, fluid volatility, contact angle and droplet size. Temperature distributions and vortex structures are obtained for droplets of 1-hexanol, 1-butanol and ethanol. To this purpose, the hydrodynamics of an evaporating sessile drop, effects of the thermal conduction in the droplet and substrate and diffusion of vapor in air have been jointly taken into account. The equations have been solved by finite element method using ANSYS Fluent. The phase diagrams demonstrating the number and orientation of the vortices as functions of the contact angle and the ratio of substrate to fluid thermal conductivities, are obtained and analyzed for various values of parameters. In particular, influence of gravity on the droplet shape and the effect of droplet size have been considered. We have found that the phase diagrams of highly volatile droplets do not contain a subregion corresponding to a reversed single vortex, and their single-vortex subregion becomes more complex. The phase diagrams for droplets of larger size do not contian subregions corresponding to a regular single vortex and to three vortices. We demonstrate how the single-vortex subregion disappears with a gradual increase of the droplet size.

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