Numerical simulations of bubble formation from submerged needles under non-uniform direct current electric field

No Thumbnail Available

Date

2013-10

Journal Title

Journal ISSN

Volume Title

Publisher

AIP

Abstract

In several chemical and space industries, small bubbles are desired for efficient interaction between the liquid and gas phases. In the present study, we show that non-uniform electric field with appropriate electrode configurations can reduce the volume of the bubbles forming at submerged needles by up to three orders of magnitude. We show that localized high electric stresses at the base of the bubbles result in slipping of the contact line on the inner surface of the needle and subsequent bubble formation occurs with contact line inside the needle. We also show that for bubble formation in the presence of highly non-uniform electric field, due to high detachment frequency, the bubbles go through multiple coalescences and thus increase the apparent volume of the detached bubbles.

Description

Keywords

Mechanical Engineering, Electric fields, Drops and Bubbles

Citation

Endorsement

Review

Supplemented By

Referenced By