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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Studies on deformation of a 600 kJ modified D-shaped superconducting coil caused by electromagnetic force
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Studies on deformation of a 600 kJ modified D-shaped superconducting coil caused by electromagnetic force

机译:电磁力引起的600 kJ改进型D形超导线圈的变形研究

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As the mechanical causes for instability and loss in superconducting coils become more pronounced as coils increase in scale, it is important to understand the physical behavior of such failure when developing highly reliable and efficient SMES's of a practical scale. However, it is difficult to understand the mechanical behavior of superconducting coils, especially the local deformation or displacement of coil components. It is helpful to use a model to simulate the mechanical behavior of superconducting coils when discussing the instability and mechanical loss caused by such mechanical factors. A simulation model was developed to show the nonlinear mechanical deformation of a modified D-shaped elemental coil with a Rutherford type conductor in a 1 kWh SMES. The nonlinear characteristics of the conductor were explained by the frictional slip between two layers in the conductor. FEM analysis conducted using this model explained well with the mechanical deformations measured in the coil.
机译:随着线圈尺寸的增加,导致超导线圈不稳定和损耗的机械原因变得更加明显,在开发实用规模的高度可靠和高效的SMES时,重要的是要了解这种故障的物理行为。但是,很难理解超导线圈的机械性能,尤其是线圈组件的局部变形或位移。在讨论由此类机械因素引起的不稳定性和机械损耗时,使用模型来模拟超导线圈的机械性能会有所帮助。开发了一个仿真模型,以显示在1 kWh SMES中具有Rutherford型导体的改进的D形单元线圈的非线性机械变形。导体的非线性特性通过导体中两层之间的摩擦滑移来解释。使用该模型进行的有限元分析很好地解释了线圈中测得的机械变形。

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