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Magnetic Field Analysis of the Field Coil for 10 MW Class Superconducting Wind Turbines

10 MW급 초전도 풍력발전기 계자코일 전자장 해석

  • 김지형 (제주대 대학원 전기공학과) ;
  • 박사일 (제주대 대학원 풍력특성화협동과정) ;
  • 김호민 (제주대 공대 전기공학과)
  • Received : 2012.07.19
  • Accepted : 2012.09.17
  • Published : 2012.09.30

Abstract

This paper presents the magnetic field analysis of the racetrack double pancake field coil for the 10 MW class superconducting wind turbine which is considered to be the next generation of wind turbines using the 3 Dimensional FEM(Finite Elements Method). Generally, the racetrack-shaped field coil which is wound by the second generation(2G) superconducting wire in the longer axial direction is used, because the racetrack-shaped field coil generates the higher magnetic field density at the minimum size and reduces the synchronous reactance. To analysis the performance of the wind turbines, It is important to calculate the distribution of magnetic flux density at the straight parts and both end sections of the racetrack-shaped high temperature superconductivity(HTS) field coil. In addition, Lorentz force acting on the superconducting wire is calculated by the analysis of the magnetic field and it is important that through this way Lorentz force can be used as a parameter in the mechanical analysis which analyzes the mechanical stress on the racetrack-shaped field coil.

Keywords

References

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  2. Analysis of the Mechanical Characteristics of a 17-MW-Class High-Temperature Superconducting Synchronous Motor vol.28, pp.2, 2015, https://doi.org/10.1007/s10948-014-2810-y