Lithium iron phosphate is a promising positive electrode material. It shows apparent asymmetry between charge and discharge affecting not only the electrochemical but also the thermal behaviour. Physics based models for batteries are usually parameterized for discharge behaviour, which can lead to inaccuracies in prediction of battery behaviour during charging or dynamic conditions, especially in the case of this battery chemistry. This has consequences for battery modelling and safety. A pseudo 2D electrochemical – 3D thermal model is parameterized for charging using experimental data. Substantial differences in parameters between charge and discharge are seen in the validated model. The model is used to quantify the thermal differences du...
This paper presents an experimental evaluation of thermal and electrical performances of a 26650 cyl...
This paper presents a three dimensional model that simulates the operation of two particular configu...
An electrochemical-thermal coupling model is developed to describe the LiFePO4/graphite battery disc...
Thermal management is of upmost importance for the safe and efficient operation of lithium-ion batte...
Battery models are riddled with incongruous values of parameters considered for validation. In this ...
This work presents two lithium-ion battery models which are implemented in the multiphysics software...
Fast charging is one of the main challenges in Lithium-ion battery applications. Especially at low t...
It is known that temperature variations inside a battery may greatly affect its performance, life, ...
This paper investigates the thermal behaviour of a large lithium iron phosphate (LFP) battery cell b...
To achieve fast charging and high discharge capacity with thick electrodes, the impact of degradatio...
Modelling the electrochemical and thermal behaviours of cylindrical lithium-ion batteries (LIBs) is ...
International audienceThis paper deals with the thermal modeling of a large prismatic Li-ion battery...
International audienceThis chapter proposes an advanced thermal model for lithium-ion battery techno...
The effect of different thermal conditions on battery performance has been evaluated by computer sim...
In this study, an electrochemical-thermal coupled model was developed to investigate the electrical ...
This paper presents an experimental evaluation of thermal and electrical performances of a 26650 cyl...
This paper presents a three dimensional model that simulates the operation of two particular configu...
An electrochemical-thermal coupling model is developed to describe the LiFePO4/graphite battery disc...
Thermal management is of upmost importance for the safe and efficient operation of lithium-ion batte...
Battery models are riddled with incongruous values of parameters considered for validation. In this ...
This work presents two lithium-ion battery models which are implemented in the multiphysics software...
Fast charging is one of the main challenges in Lithium-ion battery applications. Especially at low t...
It is known that temperature variations inside a battery may greatly affect its performance, life, ...
This paper investigates the thermal behaviour of a large lithium iron phosphate (LFP) battery cell b...
To achieve fast charging and high discharge capacity with thick electrodes, the impact of degradatio...
Modelling the electrochemical and thermal behaviours of cylindrical lithium-ion batteries (LIBs) is ...
International audienceThis paper deals with the thermal modeling of a large prismatic Li-ion battery...
International audienceThis chapter proposes an advanced thermal model for lithium-ion battery techno...
The effect of different thermal conditions on battery performance has been evaluated by computer sim...
In this study, an electrochemical-thermal coupled model was developed to investigate the electrical ...
This paper presents an experimental evaluation of thermal and electrical performances of a 26650 cyl...
This paper presents a three dimensional model that simulates the operation of two particular configu...
An electrochemical-thermal coupling model is developed to describe the LiFePO4/graphite battery disc...