Title : ( Simulating phase change during the droplet deformation and impact on a wet surface in a square microchannel: An application of oil drops collision )
Authors: A. Asadollahi , S. Rashidi , Javad Abolfazli Esfahani , R. Ellahi ,Access to full-text not allowed by authors
Abstract
This paper is an attempt to simulate the mathematical modelling on drop deformation in a saturated medium due to its movement and collision onto the liquid film. The reactions between fluid-fluid interaction and wall are completely simulated. Computations are performed for a two-dimensional domain under the influence of a saturation situation (that is saturation vapor and liquid co-exist) by the lattice Boltzmann method. The effects of different parameters, such as Weber number, collision angle on the drop deformation and its collision onto the liquid film, radius and initial position of the droplet are investigated. A stronger wave forms in the liquid film after collision of the drop for the case of inclined collision in comparison with the normal one. Additionally, a 5.5% increment in the maximum height of the created wave for Rdp = 22 Lu and normal collision when the initial position of the drop moves from H =0.5L to H =0.25 L is found.
Keywords
, Simulating, phase change, droplet deformation, impact, wet surface, square microchannel, oil drops collision@article{paperid:1069564,
author = {A. Asadollahi and S. Rashidi and Abolfazli Esfahani, Javad and R. Ellahi},
title = {Simulating phase change during the droplet deformation and impact on a wet surface in a square microchannel: An application of oil drops collision},
journal = {European Physical Journal Plus},
year = {2018},
volume = {133},
number = {306},
month = {August},
issn = {2190-5444},
pages = {1--16},
numpages = {15},
keywords = {Simulating; phase change; droplet deformation;
impact; wet surface; square microchannel;
oil drops collision},
}
%0 Journal Article
%T Simulating phase change during the droplet deformation and impact on a wet surface in a square microchannel: An application of oil drops collision
%A A. Asadollahi
%A S. Rashidi
%A Abolfazli Esfahani, Javad
%A R. Ellahi
%J European Physical Journal Plus
%@ 2190-5444
%D 2018