IEEE Transactions on Applied Superconductivity · 2013 · 41 citations · 14 references
Conventional Machine DesignFinite Element MethodElectrical EngineeringElectric MachineEngineeringHts Racetrack CoilMotor DriveMechatronicsElectrical DriveHeat TransferPower ElectronicsAc Loss Estimation
This paper studies 2G high-temperature superconducting (HTS) coils for electric machine armature windings, using finite element method (FEM) and H formulation. A FEM model for 2G HTS racetrack coil is built in COMSOL, and is well validated by comparing calculated ac loss with experimental measurements. The FEM model is used to calculate transport loss in HTS armature windings, using air-cored design. We find that distributed winding used in conventional machine design is an effective way to reduce transport loss of HTS armature winding, in terms of air-cored design. Based on our study, we give suggestions on the design of low loss HTS armature winding.
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Mark Ainslie, Victor M. Rodriguez-Zermeno, Zhiyong Hong et al. · Superconductor Science and Technology · 2011 · 130 citations
Superconducting Material, High Temperature Superconductors, Electric Machine +16