The performance of a circular electrochemical wall shear rate probe under unsteady flow conditions is analysed through a combined ezxperimental, numerical and analytical approach. The experiments are performed with a ferri- and ferrocyanide redox couple and compared to finite element analysis of the two-dimensional time-dependent convection-diffusion equation. The results are related to the analytical Leveque solution for steady flow and for some cases to Pedley's model for heat transfer in reversing shear flow (Pedley 1976). The steady flow analyses showed that in our experiments axial diffusion is only of minor importance but that for the lower Peclet numbers
In scanning electrochemical microscopy (SECM), an approach curve performed in feedback mode involves...
Fully implicit steady-state finite difference simulations have been developed, which incorporate rad...
Experiments were carried out in the wavy flow between concentric cylinders with the inner cylinder r...
The performance of a circular electrochemical wall shear rate probe under unsteady flow conditions i...
International audienceRehimi et al. [1] numerically studied the frequency response of an electrochem...
The measurement of the mass transfer rate to flush mounted wall electrodes is a commonly used method...
Electrochemical techniques can be used to measure the time averaged velocity gradient and the two co...
In this study, an inverse method is presented so as to determine the wall shear rate in a scraped su...
An experimental study and direct numerical simulation of near-wall turbulent flow and ionic mass tra...
Transport processes in an upright, concentric, annular, electrochemical reactor filled with RedOx el...
This contribution deals with a new theory describing mass transport in the vicinity of the measuring...
Results of numerical calculations and their comparison with analytical expressions or experimental d...
International audienceParallel plate disks (PPD) are often used for analyzing the effect of small am...
Autocalibration electrodiffusion (ED) wall friction measurements at low Peclet numbers are improved ...
The direction-sensitive electrodiffusion (ED) probes consist of three working electrodes (segments),...
In scanning electrochemical microscopy (SECM), an approach curve performed in feedback mode involves...
Fully implicit steady-state finite difference simulations have been developed, which incorporate rad...
Experiments were carried out in the wavy flow between concentric cylinders with the inner cylinder r...
The performance of a circular electrochemical wall shear rate probe under unsteady flow conditions i...
International audienceRehimi et al. [1] numerically studied the frequency response of an electrochem...
The measurement of the mass transfer rate to flush mounted wall electrodes is a commonly used method...
Electrochemical techniques can be used to measure the time averaged velocity gradient and the two co...
In this study, an inverse method is presented so as to determine the wall shear rate in a scraped su...
An experimental study and direct numerical simulation of near-wall turbulent flow and ionic mass tra...
Transport processes in an upright, concentric, annular, electrochemical reactor filled with RedOx el...
This contribution deals with a new theory describing mass transport in the vicinity of the measuring...
Results of numerical calculations and their comparison with analytical expressions or experimental d...
International audienceParallel plate disks (PPD) are often used for analyzing the effect of small am...
Autocalibration electrodiffusion (ED) wall friction measurements at low Peclet numbers are improved ...
The direction-sensitive electrodiffusion (ED) probes consist of three working electrodes (segments),...
In scanning electrochemical microscopy (SECM), an approach curve performed in feedback mode involves...
Fully implicit steady-state finite difference simulations have been developed, which incorporate rad...
Experiments were carried out in the wavy flow between concentric cylinders with the inner cylinder r...