Energies · 2019 · 77 citations · 40 references
Electric MachineEngineeringEnergy EfficiencyMotor DriveElectrothermalPower ElectronicsRefrigerationElectrical DriveRecent ProgressEnhanced CoolingElectrical EngineeringEnergy HarvestingAerospace Electric PowerMechatronicsPropulsionHeat TransferCost MetricsEnergy Efficient DriveEnergy ManagementAerospace EngineeringElectric AircraftThermal ManagementThermal EngineeringElectric Motors
Enhanced cooling, coupled with novel designs and packaging of semiconductors, has revolutionized communications, computing, lighting, and electric power conversion. It is time for a similar revolution that will unleash the potential of electrified propulsion technologies to drive improvements in fuel-to-propulsion efficiency, emission reduction, and increased power and torque densities for aviation and beyond. High efficiency and high specific power (kW/kg) electric motors are a key enabler for future electrification of aviation. To improve cooling of emerging synchronous machines, and to realize performance and cost metrics of next-generation electric motors, electromagnetic and thermomechanical co-design can be enabled by innovative design topologies, materials, and manufacturing techniques. This paper focuses on the most recent progress in thermal management of electric motors with particular focus on electric motors of significance to aviation propulsion.
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Closed loop pulsating heat pipes
Piyanun Charoensawan, Sameer Khandekar, M. Groll et al. · Applied Thermal Engineering · 2003 · 402 citations
Thermal management of electric machines
Yinye Yang, Berker Bilgin, Michael Kasprzak et al. · IET Electrical Systems in Transportation · 2016 · 165 citations
Electrical Engineering, Transportation Industry, Engineering +12