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Optimization of magnet end-winding geometry

机译:优化磁体末端绕组的几何形状

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摘要

A simple, almost entirely analytic, method for the optimization of stress-reduced magnet-end winding paths for ribbon-like superconducting cable is presented. This technique is based on characterization of these paths as developable surfaces, i.e., surfaces whose intrinsic geometry is flat. The method is applicable to winding mandrels of arbitrary geometry. Computational searches for optimal winding paths are easily implemented via the technique. Its application to the end configuration of cylindrical Superconducting Super-Collider (SSC)-type magnets is discussed. The method may be useful for other engineering problems involving the placement of thin sheets of material.
机译:提出了一种简单的,几乎完全解析的方法,用于优化带状超导电缆的降低应力的磁体端绕组路径。该技术基于将这些路径表征为可展开的表面,即其固有几何形状平坦的表面。该方法适用于缠绕任意几何形状的心轴。通过该技术可以轻松地执行最佳绕组路径的计算搜索。讨论了其在圆柱超导超碰撞机(SSC)型磁体的最终配置中的应用。该方法对于涉及材料薄片放置的其他工程问题可能是有用的。

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