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Theory of ac loss in power transmission cables with second generation high temperature superconductor wires

机译:第二代高温超导体输电电缆的交流损耗理论

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摘要

While a considerable amount of work has been done in an effort to understand ac losses in power transmission cables made of first generation high temperature superconductor (HTS) wires, use of second generation (2G) HTS wires brings in some new considerations. The high critical current density of the HTS layer in 2G wires reduces the surface superconductor hysteretic losses, for which a new formula is derived. Instead, gap and polygonal losses, flux transfer losses in imbalanced two-layer cables and ferromagnetic losses for wires with NiW substrates constitute the principal contributions. A formula for the flux transfer losses is also derived with a paramagnetic approximation for the substrate. Current imbalance and losses associated with the magnetic substrate can be minimized by orienting the substrates of the inner winding inward and the outer winding outward.
机译:为了了解由第一代高温超导体(HTS)导线制成的输电电缆的交流损耗,已经进行了大量工作,而第二代(2G)HTS导线的使用带来了一些新的考虑。 2G导线中HTS层的高临界电流密度降低了表面超导体的磁滞损耗,为此得出了一个新公式。相反,间隙和多边形损耗,不平衡两层电缆中的通量传递损耗以及带有NiW衬底的导线的铁磁损耗是主要的贡献。磁通量传递损耗的公式也可以通过对衬底的顺磁近似得出。通过使内部绕组的基底和外部绕组的基底取向,可以使与磁性基底相关的电流不平衡和损耗最小化。

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