Erworben im Rahmen der Schweizer Nationallizenzen (http://www.nationallizenzen.ch)A linear stability analysis is presented for the miscible interface formed by placing a heavier fluid above a lighter one in a vertically oriented capillary tube. The analysis is based on the three-dimensional Stokes equations, coupled to a convection-diffusion equation for the concentration field, in cylindrical coordinates. A generalized eigenvalue problem is formulated, whose numerical solution yields both the growth rate and the two-dimensional eigenmodes as functions of the governing parameters in the form of a Rayleigh number and a dimensionless interfacial thickness. The dispersion relations show that for all values of the governing parameters the three...
Both surface tension and buoyancy force in stable stratification act to restore perturbed interfaces...
The linear stability of variable viscosity, miscible core–annular flows is investigated. Consistent ...
We study numerically and theoretically the gravity-driven flow of a viscous liquid film coating the ...
A linear stability analysis is presented for variable-viscosity miscible fluids in an unstable confi...
A recent experiment showed that cylindrical segments of water filling a hydrophilic stripe on an oth...
We investigate the stability of slowly smearing phase boundary that appears at the contact of two mi...
The evolution of small disturbances to a horizontal interface separating two miscible liquids is exa...
The goal of this experimental/computational investigation (joint with Prof Maxworthy at USC) has bee...
We consider the effect of high rotation rates on two liquid layers that initially form concentric cy...
A computational study based on the Stokes equations is conducted to investigate the effects of gravi...
Direct numerical simulations (DNS) are presented of three-dimensional, Rayleigh–Taylor instability (...
We consider the effect of high rotation rates on two liquid layers that initially form concentric cy...
This research project focuses on the dynamics of interfacial regions between miscible fluids. While ...
A linear stability analysis of the Rayleigh???Taylor problem for an incompressible fluid undergoing ...
The linear stability characteristics of pressure-driven core-annular pipe flow of two immiscible flu...
Both surface tension and buoyancy force in stable stratification act to restore perturbed interfaces...
The linear stability of variable viscosity, miscible core–annular flows is investigated. Consistent ...
We study numerically and theoretically the gravity-driven flow of a viscous liquid film coating the ...
A linear stability analysis is presented for variable-viscosity miscible fluids in an unstable confi...
A recent experiment showed that cylindrical segments of water filling a hydrophilic stripe on an oth...
We investigate the stability of slowly smearing phase boundary that appears at the contact of two mi...
The evolution of small disturbances to a horizontal interface separating two miscible liquids is exa...
The goal of this experimental/computational investigation (joint with Prof Maxworthy at USC) has bee...
We consider the effect of high rotation rates on two liquid layers that initially form concentric cy...
A computational study based on the Stokes equations is conducted to investigate the effects of gravi...
Direct numerical simulations (DNS) are presented of three-dimensional, Rayleigh–Taylor instability (...
We consider the effect of high rotation rates on two liquid layers that initially form concentric cy...
This research project focuses on the dynamics of interfacial regions between miscible fluids. While ...
A linear stability analysis of the Rayleigh???Taylor problem for an incompressible fluid undergoing ...
The linear stability characteristics of pressure-driven core-annular pipe flow of two immiscible flu...
Both surface tension and buoyancy force in stable stratification act to restore perturbed interfaces...
The linear stability of variable viscosity, miscible core–annular flows is investigated. Consistent ...
We study numerically and theoretically the gravity-driven flow of a viscous liquid film coating the ...