To accurately predict the lifetime of commercial cells, multi-physics models can be used, however the accuracy of the model is heavily reliant upon the quality of the input thermodynamics and kinetic parameters. The thermal properties and the variability of the transport and thermodynamic properties with temperature and state-of-charge (SoC) in a high energy 21700 cylindrical cell were measured. The parameters are used in a DFN and 0D thermal model, and the model was tested against experimental data from the commercial cell. The results demonstrate an improved model fit by 27% when including the parameter dependency upon SoC and temperature, compared to without. The maximum power is limited by the negative electrode, which has lower diffusi...
This paper addresses, for the first time, lumped electrochemical-thermal coupled model requirements ...
This paper presents an experimental evaluation of thermal and electrical performances of a 26650 cyl...
We present a one-dimensional, radial, coupled degradation-electrochemical-thermal (DET) model of a l...
In this study, an electrochemical-thermal coupled model was developed to investigate the electrical ...
Substantially reduced energy and power capabilities of lithium-ion cell operating at low temperature...
Thermal management of Li-ion batteries is important because of the high energy content and the risk ...
In this work, a LiFePO4/C commercial cylindrical battery cell is modeled with a P2D model coupled wi...
A 1D electrochemical-thermal model of an electrode pair of a lithium ion battery is developed in Com...
Modelling the electrochemical and thermal behaviours of cylindrical lithium-ion batteries (LIBs) is ...
This paper investigates the thermal behaviour of a large lithium iron phosphate (LFP) battery cell b...
Physico-chemical models allow a deep view into the internal processes and states of lithium-ion batt...
To achieve fast charging and high discharge capacity with thick electrodes, the impact of degradatio...
In this article the high-temperature behavior of a cylindrical lithium iron phosphate/graphite lithi...
Scenarios with rapid energy conversion for lithium-ion batteries are increasingly relevant, due to t...
The key challenge in developing a physico-chemical model is the model parameterization. The paper pr...
This paper addresses, for the first time, lumped electrochemical-thermal coupled model requirements ...
This paper presents an experimental evaluation of thermal and electrical performances of a 26650 cyl...
We present a one-dimensional, radial, coupled degradation-electrochemical-thermal (DET) model of a l...
In this study, an electrochemical-thermal coupled model was developed to investigate the electrical ...
Substantially reduced energy and power capabilities of lithium-ion cell operating at low temperature...
Thermal management of Li-ion batteries is important because of the high energy content and the risk ...
In this work, a LiFePO4/C commercial cylindrical battery cell is modeled with a P2D model coupled wi...
A 1D electrochemical-thermal model of an electrode pair of a lithium ion battery is developed in Com...
Modelling the electrochemical and thermal behaviours of cylindrical lithium-ion batteries (LIBs) is ...
This paper investigates the thermal behaviour of a large lithium iron phosphate (LFP) battery cell b...
Physico-chemical models allow a deep view into the internal processes and states of lithium-ion batt...
To achieve fast charging and high discharge capacity with thick electrodes, the impact of degradatio...
In this article the high-temperature behavior of a cylindrical lithium iron phosphate/graphite lithi...
Scenarios with rapid energy conversion for lithium-ion batteries are increasingly relevant, due to t...
The key challenge in developing a physico-chemical model is the model parameterization. The paper pr...
This paper addresses, for the first time, lumped electrochemical-thermal coupled model requirements ...
This paper presents an experimental evaluation of thermal and electrical performances of a 26650 cyl...
We present a one-dimensional, radial, coupled degradation-electrochemical-thermal (DET) model of a l...