Quantifying the velocity field near the wall in microfluidic devices is important because surface effects become significant at micro- to nanometer scales. Recent studies have suggested that the "no-slip" boundary condition breaks down in microscale flows of Newtonian liquids, where the amount of slip is usually extrapolated from velocity components measured far from the wall. This doctoral thesis presents a new technique, multilayer nano-particle image velocimetry (MnPIV), for measuring the tangential velocity components at different distances from and within about 500 nm of the wall and its application to measuring slip. The feasibility of MnPIV was demonstrated using synthetic images of plane Couette flow incorporating Brownian diffus...
A total internal reflection fluorescence microscopy technique coupled with three-dimensional trackin...
Recently, quantitative flow visualization has become an important tool to investigate three-dimensio...
Dans cette thèse, nous adressons trois projets avec l’application de microfluidique Avec le Vélocimé...
Abstract Particle-image velocimetry (PIV) using evanescent-wave illumination has been recently used ...
The subject of this research is the systematic study of the dependence of water slippage inside micr...
For the first time we have been able to measure the flow velocity profile for nanofluidics with a sp...
International audienceThe goal of this paper is to review progress (mostly recent) made in micro and...
abstract: This dissertation describes a novel, low cost strategy of using particle streak (track) im...
Fluid velocities and Brownian effects at nanoscales in the near-wall region of microchannels can be ...
A technique for quantifying velocity profiles of fluids flowing in circular microchannels is present...
International audienceThe manipulation of fluids in micro/nanofabricated systems opens new avenues t...
International audienceThe goal of this work is to make progress in the domain of near-wall velocimet...
Issued as final reportIn terms of colloid science, these experiments have demonstrated that an elect...
Nanoparticleimage velocimetry (nano-PIV), based on total internal reflection fluorescent microscopy,...
A confocal micro-particle image velocimetry (C-μPIV) technique along with associated post-processing...
A total internal reflection fluorescence microscopy technique coupled with three-dimensional trackin...
Recently, quantitative flow visualization has become an important tool to investigate three-dimensio...
Dans cette thèse, nous adressons trois projets avec l’application de microfluidique Avec le Vélocimé...
Abstract Particle-image velocimetry (PIV) using evanescent-wave illumination has been recently used ...
The subject of this research is the systematic study of the dependence of water slippage inside micr...
For the first time we have been able to measure the flow velocity profile for nanofluidics with a sp...
International audienceThe goal of this paper is to review progress (mostly recent) made in micro and...
abstract: This dissertation describes a novel, low cost strategy of using particle streak (track) im...
Fluid velocities and Brownian effects at nanoscales in the near-wall region of microchannels can be ...
A technique for quantifying velocity profiles of fluids flowing in circular microchannels is present...
International audienceThe manipulation of fluids in micro/nanofabricated systems opens new avenues t...
International audienceThe goal of this work is to make progress in the domain of near-wall velocimet...
Issued as final reportIn terms of colloid science, these experiments have demonstrated that an elect...
Nanoparticleimage velocimetry (nano-PIV), based on total internal reflection fluorescent microscopy,...
A confocal micro-particle image velocimetry (C-μPIV) technique along with associated post-processing...
A total internal reflection fluorescence microscopy technique coupled with three-dimensional trackin...
Recently, quantitative flow visualization has become an important tool to investigate three-dimensio...
Dans cette thèse, nous adressons trois projets avec l’application de microfluidique Avec le Vélocimé...