4 citations · 5 across the 4 of their papers we have counts for
7 papers
A Continuum of Physics-Based Lithium-Ion Battery Models Reviewed
Ferran Brosa Planella, Weilong Ai, Adam M. Boyce +13
Physics-based electrochemical battery models derived from porous electrode theory are a very powerful tool for understanding lithium-ion batteries, as well as for improving their d…
On Uncertainty Quantification in the Parametrization of Newman-type Models of Lithium-ion Batteries
Jose Morales Escalante, Smita Sahu, Jamie M. Foster +1
We consider the problem of parameterizing Newman-type models of Li-ion batteries focusing on quantifying the inherent uncertainty of this process and its dependence on the discharg…
DandeLiion v1: An extremely fast solver for the Newman model of lithium-ion battery (dis)charge
Ivan Korotkin, Smita Sahu, Simon O'Kane +2
DandeLiion (available at dandeliion.com) is a robust and extremely fast solver for the Doyle Fuller Newman (DFN) model, the standard electrochemical model for (dis)charge of a plan…
Charge transport modelling of lithium ion batteries
Giles W Richardson, Jamie M Foster, Rahifa Ranom +2
This paper presents the current state of mathematical modelling of the electrochemical behaviour of lithium-ion batteries as they are charged and discharged. It reviews the models…
Generalised single particle models for high-rate operation of graded lithium-ion electrodes: systematic derivation and validation
G. Richardson, I. Korotkin, R. Ranom. M. Castle +1
A derivation of the single particle model (SPM) is made from a porous electrode theory model (or Newman model) of half-cell (dis)charge for an electrode composed of uniformly sized…
Binder migration during drying of lithium-ion battery electrodes: modelling and comparison to experiment
Francesc Font, Bartosz Protas, Giles Richardson +1
The drying process is a crucial step in electrode manufacture as it can affect the component distribution within the electrode. Phenomena such as binder migration can have negative…