This paper presents the concept of a hybrid thermal management system (TMS) including natural convection, heat pipe, and air cooling assisted heat pipe (ACAH) for electric vehicles. Experimental and numerical tests are described to predict the thermal behavior of a lithium titanate oxide (LTO) battery cell in a fast discharging process (8C rate). Specifications of different cooling techniques are deliberated and compared. The mathematical models are solved by COMSOL Multiphysics® (Stockholm, Sweden), the commercial computational fluid dynamics (CFD) software. The simulation results are validated against experimental data with an acceptable error range. The results specify that the maximum cell temperatures for the cooling systems of natural...
Building from previous successful results from the Authors, a Loop Heat Pipe (LHP) based Battery The...
Lithium-ion (Li-ion) batteries are preferred energy storage systems for vehicular applications due t...
Thermal management is crucial in many engineering applications because it affects the electrical, ma...
This paper presents the concept of a hybrid thermal management system (TMS) including natural convec...
Thermal management of lithium-ion (Li-ion) batteries in Electrical Vehicles (EVs) is important due t...
Thermal management system (TMS) for commonly used lithium-ion (Li-ion) batteries is an essential req...
This paper presents the concept of a passive thermal management system (TMS), including natural conv...
Over the last few decades investigating the performance of thermal management in the high charge/dis...
The aim of the present work is to develop and test an innovative cooling system for the thermal mana...
Electric Vehicles (EVs) are at the centre of the recent industrial sustainable revolution and are id...
A novel cooling method for Electric Vehicles battery modules by means of Loop Heat Pipe and graphite...
The present investigation aims to devise a thermal management system (TMS) for electric vehicles abl...
Battery thermal management is critical in achieving performance and the extended life of batteries i...
A battery thermal management system (BTMS) plays a significant role in an electric vehicle (EV)'s ba...
Aiming to improve on key Electric Vehicles issues, such as maximum temperature during fast charging,...
Building from previous successful results from the Authors, a Loop Heat Pipe (LHP) based Battery The...
Lithium-ion (Li-ion) batteries are preferred energy storage systems for vehicular applications due t...
Thermal management is crucial in many engineering applications because it affects the electrical, ma...
This paper presents the concept of a hybrid thermal management system (TMS) including natural convec...
Thermal management of lithium-ion (Li-ion) batteries in Electrical Vehicles (EVs) is important due t...
Thermal management system (TMS) for commonly used lithium-ion (Li-ion) batteries is an essential req...
This paper presents the concept of a passive thermal management system (TMS), including natural conv...
Over the last few decades investigating the performance of thermal management in the high charge/dis...
The aim of the present work is to develop and test an innovative cooling system for the thermal mana...
Electric Vehicles (EVs) are at the centre of the recent industrial sustainable revolution and are id...
A novel cooling method for Electric Vehicles battery modules by means of Loop Heat Pipe and graphite...
The present investigation aims to devise a thermal management system (TMS) for electric vehicles abl...
Battery thermal management is critical in achieving performance and the extended life of batteries i...
A battery thermal management system (BTMS) plays a significant role in an electric vehicle (EV)'s ba...
Aiming to improve on key Electric Vehicles issues, such as maximum temperature during fast charging,...
Building from previous successful results from the Authors, a Loop Heat Pipe (LHP) based Battery The...
Lithium-ion (Li-ion) batteries are preferred energy storage systems for vehicular applications due t...
Thermal management is crucial in many engineering applications because it affects the electrical, ma...