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首页> 外文期刊>Physica, C. Superconductivity and its applications >Spatially-resolved measurement on time-dependent electromagnetic behavior in alternating current carrying coated conductor
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Spatially-resolved measurement on time-dependent electromagnetic behavior in alternating current carrying coated conductor

机译:交流电涂覆导体中随时间变化的电磁行为的空间分辨测量

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Establishment of processing technology for multifilamentary coated conductors (CCs) is a key issue for superconducting electric power applications from the viewpoint of AC loss reduction. On the other hand, CCs sometimes have local inhomogeneity in the superconducting layers, and that will cause a current blocking in a filament or inhomogeneity of critical current among filaments in a multifilamentary CC. Therefore, we need an assessment method for local electromagnetic behavior on AC loss properties of CCs. In this study, we developed a method for visualizing time-dependent AC loss distribution in CCs by using scanning Hall probe microscopy. We succeeded in visualizing local current density, electric field and loss density simultaneously with a spatial resolution of a few hundred micrometers. The measurement system has possible scanning area of 150 × 50 mm~2 and current capacity of 500 A. This enables us to discuss the local electromagnetic behavior on a practical scale of CCs. We believe that this visualization method will be a very powerful tool to estimate the feasibility of processing technology for multifilamentary CCs.
机译:从减少交流电损耗的角度来看,建立多芯涂层导体(CC)的处理技术是超导电力应用的关键问题。另一方面,CC有时在超导层中具有局部不均匀性,这将导致灯丝中的电流阻塞或多丝CC中的灯丝之间的临界电流不均匀。因此,我们需要一种评估CC交流损耗特性的局部电磁行为的方法。在这项研究中,我们开发了一种通过使用扫描霍尔探针显微镜可视化CC中随时间变化的AC损耗分布的方法。我们成功地以数百微米的空间分辨率可视化了局部电流密度,电场和损耗密度。该测量系统可能的扫描面积为150×50 mm〜2,电流容量为500A。这使我们能够在CC的实际规模上讨论局部电磁行为。我们认为,这种可视化方法将是一种非常强大的工具,可用于评估多丝CC的加工技术的可行性。

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