Abstract – Three-dimensional simulations are presented on the motion of a neutrally buoyant drop between two parallel plates at a finite-Reynolds-number in plane Poiseuille flow, under conditions of negligible gravitational force. The full Navier-Stokes equations are solved by a finite difference/front tracking method that allows a fully deformable interface between the drop and the suspending medium and the inclusion of the surface tension. In the limit of a small Reynolds number ( 1<), the direction of motion of the drop depends on the ratio of the viscosity of the drop fluid to the viscosity of the ambient fluid. At finite Reynolds numbers, the drop migrates to an equilibrium lateral position about halfway between the wall and the cen...
Oscillation, coalescence, and collision of drops are studied numerically using a Finite-Difference/F...
© 2018 WIT PressThis paper presents Direct Numerical Simulation (DNS) of the falling motion of singl...
Drop impact onto a solid surface is a complex phenomenon, which is depending on a variety of factors...
A finite difference/front tracking method is used to study the motion of three-dimensional deformabl...
A finite difference / front tracking method is used to examine the lateral migration of a three-dime...
The migration of a deformable drop in simple shear flow at finite Reynolds numbers is investigated n...
We analyze the motion and deformation of a buoyant drop suspended in an unbounded fluid which is und...
The extensional flow and break-up of fluids has long interested many authors. A slender viscous flui...
Full numerical simulations of two- and three-dimensional bubbles and drops in shear flows are presen...
A numerical investigation is conducted for a drop of viscous liquid, suspended in another liquid of ...
The lift force on a deformable liquid sphere moving in steady, plane Poiseuille-Stokes flow and subj...
The yield conditions for the displacement of fluid droplets from solid boundaries are studied throug...
The objective of the present work has been to investigate two major aspects of spray processes: drop...
A boundary integral method is presented for drop deformation between two parallel walls for non-unit...
The fall of drops in three-dimensional stationary homogeneous turbulent flow is investigated. Equati...
Oscillation, coalescence, and collision of drops are studied numerically using a Finite-Difference/F...
© 2018 WIT PressThis paper presents Direct Numerical Simulation (DNS) of the falling motion of singl...
Drop impact onto a solid surface is a complex phenomenon, which is depending on a variety of factors...
A finite difference/front tracking method is used to study the motion of three-dimensional deformabl...
A finite difference / front tracking method is used to examine the lateral migration of a three-dime...
The migration of a deformable drop in simple shear flow at finite Reynolds numbers is investigated n...
We analyze the motion and deformation of a buoyant drop suspended in an unbounded fluid which is und...
The extensional flow and break-up of fluids has long interested many authors. A slender viscous flui...
Full numerical simulations of two- and three-dimensional bubbles and drops in shear flows are presen...
A numerical investigation is conducted for a drop of viscous liquid, suspended in another liquid of ...
The lift force on a deformable liquid sphere moving in steady, plane Poiseuille-Stokes flow and subj...
The yield conditions for the displacement of fluid droplets from solid boundaries are studied throug...
The objective of the present work has been to investigate two major aspects of spray processes: drop...
A boundary integral method is presented for drop deformation between two parallel walls for non-unit...
The fall of drops in three-dimensional stationary homogeneous turbulent flow is investigated. Equati...
Oscillation, coalescence, and collision of drops are studied numerically using a Finite-Difference/F...
© 2018 WIT PressThis paper presents Direct Numerical Simulation (DNS) of the falling motion of singl...
Drop impact onto a solid surface is a complex phenomenon, which is depending on a variety of factors...