Interfacial transport of a passive scalar from a gas to a thin liquid film is considered. The base flow in the liquid is laminar, with linear velocity profile produced by gas shear. The velocity disturbances imposed by waves are simulated by an inviscid, constant-vorticity model. Numerically computed roil waves are shown to enhance interfacial transport by modifying the convection pattern below the crest and by inducing a mixing effect on the substrate. It is argued that the entire wave spectrum is active in this enhancement of interfacial transport. (C) 1998 Elsevier Science Ltd. All rights reserved
Interfacial waves in fluid flow have widespread applications in meteorology, oceanography and astro...
In this work, the dynamics of a thin liquid film sheared by a turbulent gas flow are investigated nu...
This study is aimed at experimental investigation of hydrodynamics and convective heat transfer in g...
A liquid film falling vertically along a wall results in the formation of waves at the liquid-gas in...
Consider the dynamics of a thin laminar liquid film flowing over an inclined wall in the presence of...
A model is developed to describe the interfacial shear stress at a wavy interface with wave characte...
International audienceDirect numerical simulation is employed to study the effect of small-scale wal...
200 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1988.This thesis is concerned with...
This dissertation considers the genesis and dynamics of interfacial instability in vertical laminar...
Large amplitude interfacial waves are an important feature of annular gas-liquid two-phase flow. The...
An investigation has been made of the surface phenomena accompanying liquid film flow on vertical pl...
We revisit the stability of a deformable interface that separates a fully-developed turbulent gas o...
International audienceThe non-linear dynamics of thin liquid films sheared by a laminar gas flow in ...
A model with constant vorticity in the liquid phase has been applied to the study of interfacial wav...
Abstract: Gas-liquid mass transfer across falling films is a widespread technique for evaluating abs...
Interfacial waves in fluid flow have widespread applications in meteorology, oceanography and astro...
In this work, the dynamics of a thin liquid film sheared by a turbulent gas flow are investigated nu...
This study is aimed at experimental investigation of hydrodynamics and convective heat transfer in g...
A liquid film falling vertically along a wall results in the formation of waves at the liquid-gas in...
Consider the dynamics of a thin laminar liquid film flowing over an inclined wall in the presence of...
A model is developed to describe the interfacial shear stress at a wavy interface with wave characte...
International audienceDirect numerical simulation is employed to study the effect of small-scale wal...
200 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1988.This thesis is concerned with...
This dissertation considers the genesis and dynamics of interfacial instability in vertical laminar...
Large amplitude interfacial waves are an important feature of annular gas-liquid two-phase flow. The...
An investigation has been made of the surface phenomena accompanying liquid film flow on vertical pl...
We revisit the stability of a deformable interface that separates a fully-developed turbulent gas o...
International audienceThe non-linear dynamics of thin liquid films sheared by a laminar gas flow in ...
A model with constant vorticity in the liquid phase has been applied to the study of interfacial wav...
Abstract: Gas-liquid mass transfer across falling films is a widespread technique for evaluating abs...
Interfacial waves in fluid flow have widespread applications in meteorology, oceanography and astro...
In this work, the dynamics of a thin liquid film sheared by a turbulent gas flow are investigated nu...
This study is aimed at experimental investigation of hydrodynamics and convective heat transfer in g...