Basu Saptarshi, Rao D Chaitanya Kumar, Chattopadhyay Ankur, Chakraborty Joita
Department of Mechanical Engineering, Indian Institute of Science, Bangalore 560012, India.
Phys Rev E. 2021 Jan;103(1-1):013101. doi: 10.1103/PhysRevE.103.013101.
We experimentally investigate the dissolution of microscale sessile alcohol droplets in water under the influence of impermeable vertical confinement. The introduction of confinement suppresses the mass transport from the droplet to bulk medium in comparison with the nonconfined counterpart. Along with a buoyant plume, flow visualization reveals that the dissolution of a confined droplet is hindered by a mechanism called levitated toroidal vortex. The morphological changes in the flow due to the vortex-induced impediment alters the dissolution rate, resulting in enhancement of droplet lifetime. Further, we have proposed a modification in the key nondimensional parameters [Rayleigh number Ra^{'} (signifying buoyancy) and Sherwood number Sh^{'} (signifying mass flux)] and droplet lifetime τ_{c}^{'}, based on the hypothesis of linearly stratified droplet surroundings (with revised concentration difference ΔC^{'}), taking into account the geometry of the confinements. We show that experimental results on droplet dissolution under vertical confinement corroborate scaling relations Sh^{'}∼Ra^{'}^{1/4} and τ_{c}^{'}∼ΔC^{'}^{-5/4}. We also draw attention to the fact that the revised scaling law incorporating the geometry of confinements proposed in the present work can be extended to other known configurations such as droplet dissolution inside a range of channel dimensions, as encountered in a gamut of applications such as microfluidic technology and biomedical engineering.
我们通过实验研究了在不可渗透的垂直约束影响下,微尺度静态酒精液滴在水中的溶解情况。与无约束的情况相比,约束的引入抑制了液滴向本体介质的质量传输。通过流动可视化发现,除了浮力羽流外,受限液滴的溶解还受到一种称为悬浮环形涡旋的机制的阻碍。由涡旋诱导的阻碍导致的流动形态变化改变了溶解速率,从而延长了液滴寿命。此外,基于线性分层液滴周围环境(具有修正的浓度差ΔC')的假设,并考虑到约束的几何形状,我们对关键无量纲参数[瑞利数Ra'(表示浮力)和舍伍德数Sh'(表示质量通量)]以及液滴寿命τc'提出了一种修正。我们表明,垂直约束下液滴溶解的实验结果证实了标度关系Sh'∼Ra'^1/4和τc'∼ΔC'^-5/4。我们还提请注意,本工作中提出的纳入约束几何形状的修正标度律可以扩展到其他已知构型,如在微流体技术和生物医学工程等一系列应用中遇到的一系列通道尺寸内的液滴溶解。