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AC loss of multifilamentary superconducting AC wire caused bylongitudinal and azimuthal AC magnetic field components

机译:纵向和方位交流磁场分量引起的多丝超导交流电线的交流损耗

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AC loss characteristics of multifilamentary NbTi AC wires under AC external magnetic field were experimentally and theoretically investigated. The authors measured AC transport current losses of AC wires with various twist pitches under the AC external magnetic field which included longitudinal and transverse components. It was shown by the measurement that the AC transport current losses decreased with decreasing the twist pitches when the external and self longitudinal fields were in the same direction. The measured dependence of the AC losses on the twist pitches and the applied longitudinal field component were well explained by their previously derived model. They also theoretically estimated the AC losses caused by the longitudinal and azimuthal field components. It was found that the AC losses can be substantially reduced by properly selecting the twist pitch and the external longitudinal field component
机译:通过实验和理论研究了复丝NbTi交流电线在交流外部磁场下的交流损耗特性。作者测量了在交流外部磁场(包括纵向分量和横向分量)下,各种扭距的交流电线的交流输电电流损耗。通过测量表明,当外部和自身纵向磁场在相同方向上时,交流传输电流损耗随着扭曲间距的减小而减小。交流损耗对扭转螺距和所施加的纵向场分量的测量依赖性由其先前推导的模型很好地解释了。他们还从理论上估算了由纵向场和方位场分量引起的交流损耗。已经发现,通过适当选择扭距和外部纵向磁场分量,可以大大降低交流损耗。

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