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Uniform current distribution conductor of HTS power cable withvariable tape-winding pitches

机译:胶带缠绕间距可变的HTS电力电缆的均匀电流分布导体

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In the multilayer conductor, the inner layers have higher impedance than the outer layers. As a result, the current concentrates in the outer layers. Our early study showed that its AC losses were reduced to one-tenth by making the current of each layer uniform. From such a point of view, a trial to realize the uniform current distribution was made by adjusting the winding pitches of high-temperature superconducting (HTS) tapes layer by layer. A 1 m long conductor was fabricated, where the inner layer had longer winding pitch than the outer layer. Experimental results showed that the currents flowing in individual layers were almost the same and that this conductor had lower AC losses than the nonuniform current distribution conductor
机译:在多层导体中,内层具有比外层更高的阻抗。结果,电流集中在外层。我们的早期研究表明,通过使每一层的电流均匀,可以将其交流损耗降低到十分之一。从这种观点出发,尝试通过逐层调节高温超导(HTS)带的缠绕节距来实现均匀的电流分布。制作了一个1 m长的导体,其中内层的绕组节距比外层长。实验结果表明,各层中流动的电流几乎相同,并且该导体的交流损耗比不均匀的电流分布导体低

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