Anand Vikky, Juvekar Vinay A, Thaokar Rochish M
Department of Chemical Engineering, Indian Institute of Technology Bombay, Mumbai 400076, India.
Departmente of Chemical Engineering, Indian Institute of Technology (ISM) Dhanbad, Dhanbad Jharkhand 826004, India.
Langmuir. 2020 Jun 2;36(21):6051-6060. doi: 10.1021/acs.langmuir.9b03969. Epub 2020 May 19.
Drop-interface interaction under an electric field is relevant in commercial desalters wherein water droplets suspended in oil coalesce under an electric field, move down under gravity, and eventually coalesce with the water pool at the bottom of the desalter. In this work, we report our observation that the transition from coalescence to partial coalescence can be described by a critical electrocapillary number and is independent of the Ohnesorge number. On the other hand, the partial coalescence to noncoalescence transition depends upon both the electrocapillary number and the Ohnesorge number. The bridge during partial coalescence exhibits an electrocapillary-number-independent growth and collapse dynamics, although the transition time for growth to collapse depends upon the electrocapillary number (). Lastly, contrary to previous studies, our results indicate that the secondary droplet size varies as unlike the reported in the literature.
在电场作用下的液滴-界面相互作用在商业脱盐器中具有重要意义,在脱盐器中,悬浮在油中的水滴在电场作用下聚结,在重力作用下向下移动,最终与脱盐器底部的水池聚结。在这项工作中,我们报告了我们的观察结果,即从聚结到部分聚结的转变可以用一个临界电毛细管数来描述,并且与奥内佐格数无关。另一方面,从部分聚结到非聚结的转变取决于电毛细管数和奥内佐格数。部分聚结过程中的桥表现出与电毛细管数无关的生长和坍塌动力学,尽管从生长到坍塌的转变时间取决于电毛细管数()。最后,与先前的研究相反,我们的结果表明,二次液滴尺寸的变化与文献中报道的不同。