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An Electric-Circuit Model on the Inter-Tape Contact Resistance and Current Sharing for REBCO Cable and Magnet Applications

机译:击退电缆互联接触电阻和电流共享电路模型及磁铁应用

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REBCO coated conductor has demonstrated high current capacity that can enable high-field magnets for high energy physics and fusion applications. However, quench protection is still one of the main challenges to be addressed for these applications. In addition, and value variations along the length of REBCO tapes exist in commercial production. The inter-tape contact resistance plays a key role to develop the self protection capability in cables and magnets by enabling current sharing and suppressing excessive eddy currents. Here we propose an electric-circuit model to describe the inter-tape contact resistance and its impact on the current sharing between REBCO tapes. We report the experiments on a 2-stacked tape REBCO cable with local drop to validate the model. With the developed model, we study the upper limit of the contact resistance which allows current sharing between tapes. We also study the impact of variation in and values in tapes on the cable performance. Our model is expected to provide useful insight into the current sharing and target values for inter-tape contact resistance in REBCO cables and magnets for various applications.
机译:Rebco涂层导体已经证明了高电流能力,可以为高能物理和融合应用启用高场磁体。然而,淬火保护仍然是这些应用程序所解决的主要挑战之一。此外,在商业生产中存在沿rebco磁带长度的价值变化。磁带间接触电阻通过使电流共享和抑制过度涡流来开发电缆和磁体中的自保护能力。在这里,我们提出了一种电路模型来描述胶带间接触电阻及其对Rebco磁带之间电流共享的影响。我们在带有本地下降的2堆叠磁带击败电缆上报告实验,以验证模型。通过开发的模型,我们研究了接触电阻的上限,允许磁带之间的电流共享。我们还研究了电缆性能磁带中变化和值的影响。我们的型号预计将对REBCO电缆和磁铁中的磁带电阻电阻的电流共享和目标值提供有用的洞察,用于各种应用。

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