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Losses in HTS carrying AC transport currents in AC external magnetic fields

机译:在交流外部磁场中承载交流传输电流的HTS的损耗

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Any high-temperature superconductor (HTS) that is developed for power applications will have an optimal working point in temperature (T), magnetic field (B), and transport current (I), when the cost of both the conductor and the AC losses are considered. To optimise the use of an HTS in a specific application, there is a need for design tools based on models of the AC losses. The models can be of the form Pac=Pac(T, B, I, f), where f is the frequency. In this paper we present a semi-empirical model and apply it to experimental results of AC losses measured on a multifilamentary Bi-2223 tape produced for DC applications. The model is based on the Bean critical state model and it accounts for the combined action of a DC transport current and an AC magnetic field applied parallel to the face of the tape. To measure the losses we used a calorimetric apparatus in which T, B, I, and f can be varied independently of each other.
机译:当导体和交流电都损失时,为电源应用开发的任何高温超导体(HTS)都将在温度(T),磁场(B)和传输电流(I)方面具有最佳工作点被考虑。为了在特定应用中优化HTS的使用,需要基于AC损耗模型的设计工具。这些模型可以采用以下形式:Pac = Pac(T,B,I,f),其中f是频率。在本文中,我们提出了一个半经验模型,并将其应用于在为直流应用生产的多丝Bi-2223胶带上测量的交流损耗的实验结果。该模型基于Bean临界状态模型,并且考虑了平行于磁带表面施加的直流传输电流和交流磁场的组合作用。为了测量损耗,我们使用了量热仪,其中T,B,I和f可以彼此独立地变化。

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