Lithium-ion capacitors (LiC) are considered as one of the major options for high power applications due to their high power capability. However, thermal runaway associated with the LiC systems in automotive applications due to high-current solicitation can significantly result in a considerable reduction in the vehicles’ performance and life cycle. The purpose of a thermal management system (TMS) is to maintain the energy storage system at an optimum target temperature following by performance and life cycle tradeoff. This paper aims at proposing a passive TMS using phase change materials (PCM). In this regard, the passive TMS is designed, and the performance of the system is analyzed and validated, utilizing Simcenter AMEsim® and the compu...
A passive thermal management system is examined for an electric vehicle battery pack. Phase change m...
Li-Ion batteries will play an important role in reaching emission targets by sustaining the further ...
In order to improve the working performance of the lithium-ion battery pack in continuous operation ...
International audienceBattery thermal management is necessary for electric vehicles (EVs), especiall...
International audienceBattery thermal management is necessary for electric vehicles (EVs), especiall...
Lithium-ion (Li-ion) batteries in electric vehicles (EVs) present a promising solution to energy and...
Battery thermal management (BTM) system is indispensable for compact lithium-ion (Li-ion) energy sto...
This paper presents the concept of a passive thermal management system (TMS), including natural conv...
This paper investigates heat transfer with phase change materials (PCMs) in passive thermal manageme...
Lithium-ion (Li-ion) batteries have emerged as a promising energy source for electric vehicle (EV) a...
© 2022 Elsevier Ltd. All rights reserved. This is the accepted manuscript version of an article whic...
Lithium-ion (Li-ion) batteries have emerged as a promising energy source for electric vehicle (EV) a...
A novel passive thermal management system (TMS) based on copper foam and paraffin composite phase ch...
The market of electric storage systems is widely dominated by Lithium ion batteries, whose peculiari...
Thermal Management of Li-ion batteries plays a significant role in large power applications by addre...
A passive thermal management system is examined for an electric vehicle battery pack. Phase change m...
Li-Ion batteries will play an important role in reaching emission targets by sustaining the further ...
In order to improve the working performance of the lithium-ion battery pack in continuous operation ...
International audienceBattery thermal management is necessary for electric vehicles (EVs), especiall...
International audienceBattery thermal management is necessary for electric vehicles (EVs), especiall...
Lithium-ion (Li-ion) batteries in electric vehicles (EVs) present a promising solution to energy and...
Battery thermal management (BTM) system is indispensable for compact lithium-ion (Li-ion) energy sto...
This paper presents the concept of a passive thermal management system (TMS), including natural conv...
This paper investigates heat transfer with phase change materials (PCMs) in passive thermal manageme...
Lithium-ion (Li-ion) batteries have emerged as a promising energy source for electric vehicle (EV) a...
© 2022 Elsevier Ltd. All rights reserved. This is the accepted manuscript version of an article whic...
Lithium-ion (Li-ion) batteries have emerged as a promising energy source for electric vehicle (EV) a...
A novel passive thermal management system (TMS) based on copper foam and paraffin composite phase ch...
The market of electric storage systems is widely dominated by Lithium ion batteries, whose peculiari...
Thermal Management of Li-ion batteries plays a significant role in large power applications by addre...
A passive thermal management system is examined for an electric vehicle battery pack. Phase change m...
Li-Ion batteries will play an important role in reaching emission targets by sustaining the further ...
In order to improve the working performance of the lithium-ion battery pack in continuous operation ...