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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Additional AC losses due to alternating magnetic field component longitudinal to strand axis in the armature winding of fully superconducting generators
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Additional AC losses due to alternating magnetic field component longitudinal to strand axis in the armature winding of fully superconducting generators

机译:完全超导发电机的电枢绕组中与股线轴垂直的交变磁场分量会导致额外的交流损耗

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摘要

The armature winding of fully superconducting generators will be constructed by multiply stacked cables of multifilamentary superconducting strands. In the superconducting cable exposed to an alternating transverse magnetic field, additional AC losses called longitudinal losses are generated by a field component longitudinal to the strand, because the angle between the axes of the strand and the final cable changes spatially with periods of cabling pitches. The longitudinal losses depend upon the structure of the cable, the direction and pitch in each level of cabling, etc. The additional losses are evaluated in electromagnetic environments of the armature winding. The structure of the cable is discussed to minimize the total AC loss under a stability condition.
机译:完全超导发电机的电枢绕组将由多丝超导绞合线的多层堆叠电缆构成。在暴露于交变横向磁场的超导电缆中,由于线束纵向的磁场分量会产生额外的称为纵向损耗的交流损耗,这是因为线束与最终电缆的轴之间的角度随电缆间距的周期而空间变化。纵向损耗取决于电缆的结构,每层电缆的方向和间距等。在电枢绕组的电磁环境中会评估其他损耗。讨论了电缆的结构,以最大程度地减少稳定条件下的交流损耗。

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