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首页> 外文期刊>Superconductor Science & Technology >Study of ac loss in Bi-2223/Ag tape under the simultaneous action of ac transport current and ac magnetic field shifted in phase
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Study of ac loss in Bi-2223/Ag tape under the simultaneous action of ac transport current and ac magnetic field shifted in phase

机译:交流输运电流和交流磁场同相同时作用下Bi-2223 / Ag胶带中的交流损耗研究

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Investigation of ac loss under the simultaneous action of the transport ac current and the external ac magnetic field is of prime importance for the reliable prediction of dissipation in electric power devices such as motors/generators, transformers and transmission cables. An experimental rig allowing us to perform ac loss measurements in such conditions, on short (10 cm) tape samples of high-temperature superconductor Bi-2223/Ag, was designed and tested. Both the electromagnetic and thermal methods were incorporated, allowing us to combine the better sensitivity of the former and the higher reliability of the latter. Our main aim was to see how the ac loss depends on the phase shift between the transport current and the external magnetic field. Such a shift could have different values in various applications. While in a transformer winding, the maximum phase shift at full load will probably not exceed a few degrees, in a three phase transmission cable in tri-axial configuration it is around 120 deg. Therefore, we explored the whole range of phase shifts from 0 to 360 deg. Surprisingly, the maxima of dissipation did not coincide with zero shift as expected from qualitative considerations.
机译:在传输交流电流和外部交流磁场的同时作用下,研究交流损耗对于可靠地预测电动机/发电机,变压器和传输电缆等电力设备中的损耗至关重要。设计并测试了一个实验设备,该设备使我们能够在短条件下(10厘米)高温超导体Bi-2223 / Ag的短带样品上进行交流损耗测量。电磁方法和热方法都被结合在一起,使我们能够将前者的更好的灵敏度和后者的更高的可靠性相结合。我们的主要目的是了解交流损耗如何取决于传输电流和外部磁场之间的相移。这种变化在各种应用中可能具有不同的值。在变压器绕组中,满载时的最大相移可能不会超过几度,而在三轴配置的三相传输电缆中,相移约为120度。因此,我们探索了从0度到360度的整个相移范围。出乎意料的是,耗散的最大值与定性考虑所期望的零位移不一致。

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