International audienceA physical-based model has been developed and validated to unravel the complex relationships between the global solid oxide cells response and the reaction mechanisms taking place in the electrodes. This numerical tool combines three length-scales modules from the electrode microstructure up to the single repeat unit. This model allows computing the local distribution of reaction kinetic rates, current densities, and gas composition as function of the cell operating conditions. To validate the multiscale model, a special experimental setup has been developed to measure the local polarization curves along the cell length. For this purpose, a specific design of the interconnect has been proposed in order to probe the loc...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...
International audienceA physical-based model has been developed and validated to unravel the complex...
International audienceA physical-based model has been developed and validated to unravel the complex...
International audienceA physical-based model has been developed and validated to unravel the complex...
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...
Mitigating degradation is essential for extending the lifetime of solid oxide electrochemical cells ...
Solid Oxide Cells (SOCs) can work efficiently in reversible operation, allowing the energy storage a...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...
International audienceA physical-based model has been developed and validated to unravel the complex...
International audienceA physical-based model has been developed and validated to unravel the complex...
International audienceA physical-based model has been developed and validated to unravel the complex...
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...
Mitigating degradation is essential for extending the lifetime of solid oxide electrochemical cells ...
Solid Oxide Cells (SOCs) can work efficiently in reversible operation, allowing the energy storage a...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...
A multiscale model is built to understand how microscale characteristics and the thermo‐chemical and...