The thermal management system of batteries plays a significant role in the operation of electric vehicles (EVs). The purpose of this study is to survey various parameters enhancing the performance of a heat pipe-based battery thermal management system (HP-BTMS) for cooling the lithium-ion batteries (LIBs), including the ambient temperature, coolant temperature, coolant flow rate, heat generation rate, start-up time, inclination angle of the heat pipe, and length of the condenser/evaporator section. This review provides knowledge on the HP-BTMS that can guarantee achievement of the optimum performance of an EV LIB at a high charge/discharge rate
Batteries are promising sources of green and sustainable energy that have been widely used in variou...
Batteries are essential to mobilization and electrification as they are used in a wide range of appl...
The development of electric vehicle batteries have resulted in very high energy density lithium-ion ...
A battery thermal management system (BTMS) plays a significant role in an electric vehicle (EV)'s ba...
Thermal management system (TMS) for commonly used lithium-ion (Li-ion) batteries is an essential req...
A battery thermal management system (BTMS) with functions of heat dissipation and heating by using o...
Electric Vehicles (EVs) are at the centre of the recent industrial sustainable revolution and are id...
Lithium-ion batteries have the advantages of high energy density, high average output voltage, long ...
Thermal management of lithium-ion (Li-ion) batteries in Electrical Vehicles (EVs) is important due t...
Building from previous successful results from the Authors, a Loop Heat Pipe (LHP) based Battery The...
The heat generation of lithium ion batteries in electric vehicles (EVs) leads to a degradation of en...
In the present study, the thermal performance of a power battery cooling system using copper tubes a...
The temperature of electric vehicle batteries needs to be controlled through a thermal management sy...
The performance of an electric vehicle depends on the battery used. While, in the operation of an el...
Lithium-ion (Li-ion) battery, as a promising future main power source, has attracted tremendous atte...
Batteries are promising sources of green and sustainable energy that have been widely used in variou...
Batteries are essential to mobilization and electrification as they are used in a wide range of appl...
The development of electric vehicle batteries have resulted in very high energy density lithium-ion ...
A battery thermal management system (BTMS) plays a significant role in an electric vehicle (EV)'s ba...
Thermal management system (TMS) for commonly used lithium-ion (Li-ion) batteries is an essential req...
A battery thermal management system (BTMS) with functions of heat dissipation and heating by using o...
Electric Vehicles (EVs) are at the centre of the recent industrial sustainable revolution and are id...
Lithium-ion batteries have the advantages of high energy density, high average output voltage, long ...
Thermal management of lithium-ion (Li-ion) batteries in Electrical Vehicles (EVs) is important due t...
Building from previous successful results from the Authors, a Loop Heat Pipe (LHP) based Battery The...
The heat generation of lithium ion batteries in electric vehicles (EVs) leads to a degradation of en...
In the present study, the thermal performance of a power battery cooling system using copper tubes a...
The temperature of electric vehicle batteries needs to be controlled through a thermal management sy...
The performance of an electric vehicle depends on the battery used. While, in the operation of an el...
Lithium-ion (Li-ion) battery, as a promising future main power source, has attracted tremendous atte...
Batteries are promising sources of green and sustainable energy that have been widely used in variou...
Batteries are essential to mobilization and electrification as they are used in a wide range of appl...
The development of electric vehicle batteries have resulted in very high energy density lithium-ion ...