Numerical modeling of electrochemical process in Li-Ion battery is an emerging topic of great practical interest. In this work we present a Finite Volume discretization of electrochemical diffusive processes occurring during the operation of Li-Ion batteries. The system of equations is a nonlinear, time-dependent diffusive system, coupling the Li concentration and the electric potential. The system is formulated at length-scale at which two different types of domains are distinguished, one for the electrolyte and one for the active solid particles in the electrode. The domains can be of highly irregular shape, with electrolyte occupying the pore space of a porous electrode. The material parameters in each domain differ by several orders of ...
The ionic conductivity of the organic electrolyte in Li-ion batteries has been modelled. The classic...
Lithium-ion batteries are multiscale systems with processes occurring at different scales. We start ...
Very large mechanical stresses and huge volume changes emerge during intercalation and extraction o...
Numerical modeling of electrochemical process in Li-Ion battery is an emerging topic of great practi...
Pore scale models of Li-ions transport allow to gain insight into the details of the charge and disc...
We propose a novel and efficient numerical approach for solving the pseudo two-dimensional multiscal...
A nonlinear initial boundary value problem for the lithium ion concentration, the electric potential...
In this paper we present a splitting algorithm for a numerical simulation of Li-ion battery electroc...
We develop a direct numerical simulation (DNS) model of multidisciplinary transport coupled with ele...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here rese...
Numerical simulation of electrochemical processes in rechargeable batteries has important applicatio...
In current work, the ionic transport limitations in the Li-ion battery liquid electrolyte with separ...
Very large mechanical stresses and huge volume changes emerge during intercalation and extraction of...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here pres...
The ionic conductivity of the organic electrolyte in Li-ion batteries has been modelled. The classic...
Lithium-ion batteries are multiscale systems with processes occurring at different scales. We start ...
Very large mechanical stresses and huge volume changes emerge during intercalation and extraction o...
Numerical modeling of electrochemical process in Li-Ion battery is an emerging topic of great practi...
Pore scale models of Li-ions transport allow to gain insight into the details of the charge and disc...
We propose a novel and efficient numerical approach for solving the pseudo two-dimensional multiscal...
A nonlinear initial boundary value problem for the lithium ion concentration, the electric potential...
In this paper we present a splitting algorithm for a numerical simulation of Li-ion battery electroc...
We develop a direct numerical simulation (DNS) model of multidisciplinary transport coupled with ele...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here rese...
Numerical simulation of electrochemical processes in rechargeable batteries has important applicatio...
In current work, the ionic transport limitations in the Li-ion battery liquid electrolyte with separ...
Very large mechanical stresses and huge volume changes emerge during intercalation and extraction of...
A novel approach in modeling the ionic transport in the electrolyte of Li-ion batteries is here pres...
The ionic conductivity of the organic electrolyte in Li-ion batteries has been modelled. The classic...
Lithium-ion batteries are multiscale systems with processes occurring at different scales. We start ...
Very large mechanical stresses and huge volume changes emerge during intercalation and extraction o...