This paper investigates the thermal behaviour of a large lithium iron phosphate (LFP) battery cell based on its electrochemical-thermal modelling for the predictions of its temperature evolution and distribution during both charge and discharge processes. The electrochemical-thermal modelling of the cell is performed for two cell geometry approaches: homogeneous (the internal region is considered as a single region) and discrete (the internal region is split into smaller regions for each layer inside the cell). The experimental measurements and the predictions of the cell surface temperature achieved with the simulations for both approaches are in good agreement with 1.5 °C maximum root mean square error. From the results, the maximum cell ...
Modelling the electrochemical and thermal behaviours of cylindrical lithium-ion batteries (LIBs) is ...
A multi-dimensional thermal and electrochemical coupled model is developed for Li-ion batteries. The...
Advisors: Pradip Majumdar.Committee members: Kyu Taek Cho; Donald Zinger.Includes bibliographical re...
In this paper, the thermal behaviour of an unbalanced battery module made of large lithium iron phos...
With the rapid development of high-power lithium-ion cells, there are growing demands for the safet...
Thermal management of Li-ion batteries is important because of the high energy content and the risk ...
In this study, an electrochemical-thermal coupled model was developed to investigate the electrical ...
Lithium batteries for energy storage systems are a prominent solution for both stationary and mobile...
International audienceIn this work, a LiFePO4/graphite lithium-ion pouch cell with a rated capacity ...
This paper presents an experimental evaluation of thermal and electrical performances of a 26650 cyl...
This paper deals with the thermal modeling of temperature rise in a pouch lithium -ion battery with ...
To accurately predict the lifetime of commercial cells, multi-physics models can be used, however th...
In Part I of this paper a one-dimensional model was presented that predicted the heat-generation rat...
International audienceThis paper deals with the thermal modeling of a large prismatic Li-ion battery...
International audienceCell temperature is a key parameter in terms of ageing and discharge capacity....
Modelling the electrochemical and thermal behaviours of cylindrical lithium-ion batteries (LIBs) is ...
A multi-dimensional thermal and electrochemical coupled model is developed for Li-ion batteries. The...
Advisors: Pradip Majumdar.Committee members: Kyu Taek Cho; Donald Zinger.Includes bibliographical re...
In this paper, the thermal behaviour of an unbalanced battery module made of large lithium iron phos...
With the rapid development of high-power lithium-ion cells, there are growing demands for the safet...
Thermal management of Li-ion batteries is important because of the high energy content and the risk ...
In this study, an electrochemical-thermal coupled model was developed to investigate the electrical ...
Lithium batteries for energy storage systems are a prominent solution for both stationary and mobile...
International audienceIn this work, a LiFePO4/graphite lithium-ion pouch cell with a rated capacity ...
This paper presents an experimental evaluation of thermal and electrical performances of a 26650 cyl...
This paper deals with the thermal modeling of temperature rise in a pouch lithium -ion battery with ...
To accurately predict the lifetime of commercial cells, multi-physics models can be used, however th...
In Part I of this paper a one-dimensional model was presented that predicted the heat-generation rat...
International audienceThis paper deals with the thermal modeling of a large prismatic Li-ion battery...
International audienceCell temperature is a key parameter in terms of ageing and discharge capacity....
Modelling the electrochemical and thermal behaviours of cylindrical lithium-ion batteries (LIBs) is ...
A multi-dimensional thermal and electrochemical coupled model is developed for Li-ion batteries. The...
Advisors: Pradip Majumdar.Committee members: Kyu Taek Cho; Donald Zinger.Includes bibliographical re...