This thesis explores a rigorous approach to model the behaviour of an electrochemical cell. A simple planar electrochemical cell consisting of stainless steel electrodes separated by a sulfuric acid electrolyte layer is modeled from first principles. The model is a dynamic model and is valid under constant temperature conditions. The dynamic model is based on the Poisson-Nernst-Planck electrodiffusion theory and physical attributes such as the impact of nonlinear polarization, the stoichiometric reactions of the electrolyte and changes to the transport coefficients are investigated in stages. The system of partial differential equations has been solved using a finite element software package. The simulation results are compared with experim...
Using the linear Poisson-Nernst-Planck impedance-response continuum model, we investigate the possib...
International audienceElectrochemistry is central to many applications, ranging from biology to ener...
Using the linear Poisson–Nernst–Planck impedance-response continuum model, we investigate the possi...
This thesis explores a rigorous approach to model the behaviour of an electrochemical cell. A simple...
This thesis presents the one-dimensional equations, numerical method and simulations of a model to c...
This thesis presents the one-dimensional equations, numerical method and simulations of a model to c...
International audienceA dynamic physically based model has been developed to unravel the relationshi...
International audienceA dynamic physically based model has been developed to unravel the relationshi...
International audienceA dynamic physically based model has been developed to unravel the relationshi...
International audienceA dynamic physically based model has been developed to unravel the relationshi...
International audienceA dynamic physically based model has been developed to unravel the relationshi...
This study demonstrates a simulation based on a full coupling of electrochemical kinetics with the 3...
The deliverable reports on the progress in the development of a kinetic and electrochemical model. K...
A complete phenomenological description of the electrode polarisation and of the non-blocking charac...
The typical weak point of existing SOFC cell-level models is the evaluation of the electrode effecti...
Using the linear Poisson-Nernst-Planck impedance-response continuum model, we investigate the possib...
International audienceElectrochemistry is central to many applications, ranging from biology to ener...
Using the linear Poisson–Nernst–Planck impedance-response continuum model, we investigate the possi...
This thesis explores a rigorous approach to model the behaviour of an electrochemical cell. A simple...
This thesis presents the one-dimensional equations, numerical method and simulations of a model to c...
This thesis presents the one-dimensional equations, numerical method and simulations of a model to c...
International audienceA dynamic physically based model has been developed to unravel the relationshi...
International audienceA dynamic physically based model has been developed to unravel the relationshi...
International audienceA dynamic physically based model has been developed to unravel the relationshi...
International audienceA dynamic physically based model has been developed to unravel the relationshi...
International audienceA dynamic physically based model has been developed to unravel the relationshi...
This study demonstrates a simulation based on a full coupling of electrochemical kinetics with the 3...
The deliverable reports on the progress in the development of a kinetic and electrochemical model. K...
A complete phenomenological description of the electrode polarisation and of the non-blocking charac...
The typical weak point of existing SOFC cell-level models is the evaluation of the electrode effecti...
Using the linear Poisson-Nernst-Planck impedance-response continuum model, we investigate the possib...
International audienceElectrochemistry is central to many applications, ranging from biology to ener...
Using the linear Poisson–Nernst–Planck impedance-response continuum model, we investigate the possi...