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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Influence of strand deviations from nominal geometry on AC losses in multistrand Superconducting cables
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Influence of strand deviations from nominal geometry on AC losses in multistrand Superconducting cables

机译:多股超导电缆中绞合线偏离标称几何形状对交流损耗的影响

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The modeling of current distribution and ac losses in multistrand superconducting cables is strictly related to the evaluation of the cable electric parameters. A perfect knowledge of these parameters is however impossible due to the complicated manufacturing process. Strand deviations from the nominal geometry and interstrand conductance changes occur in the cable compaction process. Statistical approaches can however be applied to deal with these issues. This paper reports a sensitivity analysis aimed to determine the effects of strand deviations from the nominal geometry. The deviations, however, are not directly imposed on the mutual inductances matrix, as this approach can lead to misleading results if the final matrices do not correspond to physically possible configurations. The statistical deviations are imposed on the strands geometry, keeping the strands in physically possible locations by means of geometric constraints. A code for the electromagnetic analysis of superconducting cables is then applied to the calculation of current distribution and ac losses in the different configurations, evaluating the relevance of the main parameters variation.
机译:多股超导电缆中的电流分布和交流损耗的建模与电缆电气参数的评估紧密相关。但是由于复杂的制造过程,不可能完全了解这些参数。在电缆压紧过程中会发生与标称几何形状的股线偏差和股间电导率变化。但是,可以采用统计方法来处理这些问题。本文报告了一种敏感性分析,旨在确定线束偏离标称几何形状的影响。但是,偏差不会直接施加在互感矩阵上,因为如果最终矩阵与物理上可能的配置不符,此方法可能会导致误导结果。统计偏差被施加到钢绞线的几何形状上,通过几何约束将钢绞线保持在物理上可能的位置。然后将用于超导电缆电磁分析的代码应用于不同配置中的电流分布和交流损耗的计算,从而评估主要参数变化的相关性。

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