Pore scale models of Li-ions transport allow to gain insight into the details of the charge and discharge processes in Li-ion batteries. These models are diffusion type PDE-systems with very complex, nonlinear interface conditions on the interfaces between the active particles in the porous electrodes and the electrolyte. In this work, we discuss two approaches for the treatment of these interface conditions in conjunction with a cell-centered Finite Volume (FV) discretization of the governing equations. The first approach treats exactly the fluxes on the interface, but approximates the Butler-Volmer flux. This approach requires less memory because it does not introduce unknowns on the interface. The second approach introduces unknowns on t...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here rese...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here pres...
Numerical modeling of electrochemical process in Li-Ion battery is an emerging topic of great practi...
Numerical modeling of electrochemical process in Li-Ion battery is an emerging topic of great practi...
Lithium-ion batteries are multiscale systems with processes occurring at different scales. We start ...
A class of numerical models known under different names (Newman model, DFN, P2D, porous electrode th...
We develop a direct numerical simulation (DNS) model of multidisciplinary transport coupled with ele...
We propose a novel and efficient numerical approach for solving the pseudo two-dimensional multiscal...
Lithium-ion batteries are commonly modeled using a volume-averaged formulation (porous electrode the...
A nonlinear initial boundary value problem for the lithium ion concentration, the electric potential...
This paper presents the current state of mathematical modelling of the electrochemical behaviour of ...
International audienceThe future development of electric vehicles is now strictly linked with their ...
Numerical simulations of microscopic transport processes in porous electrodes of lithium‐ion batteri...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here rese...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here pres...
Numerical modeling of electrochemical process in Li-Ion battery is an emerging topic of great practi...
Numerical modeling of electrochemical process in Li-Ion battery is an emerging topic of great practi...
Lithium-ion batteries are multiscale systems with processes occurring at different scales. We start ...
A class of numerical models known under different names (Newman model, DFN, P2D, porous electrode th...
We develop a direct numerical simulation (DNS) model of multidisciplinary transport coupled with ele...
We propose a novel and efficient numerical approach for solving the pseudo two-dimensional multiscal...
Lithium-ion batteries are commonly modeled using a volume-averaged formulation (porous electrode the...
A nonlinear initial boundary value problem for the lithium ion concentration, the electric potential...
This paper presents the current state of mathematical modelling of the electrochemical behaviour of ...
International audienceThe future development of electric vehicles is now strictly linked with their ...
Numerical simulations of microscopic transport processes in porous electrodes of lithium‐ion batteri...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here rese...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here pres...