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Dependence of Lift and Stability on Arrangement of Multiple HTS Bulks in an Active-maglev System

机译:主动磁悬浮系统中多个HTS散装的升力和稳定性依赖

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摘要

We present the dependence of lift and stability on the arrangement of multiple HTS bulks in an active-angle system composed of HTS bulk and an electromagnet. We experimentally investigated the inflence of asymmetric magnetic field distribution in a field-cooling process on the characteristics of levitation such as levitation force and stable-levitation region. In spite of unstable levitation, levitation force was increased with the distance between the axes of the bulk and electromagnet. It may be considered that unstable levitation is caused by asymmetric supercurrent distribution within the bulk. We investigated a suitable arrangement of multiple HTS bulks in an active-maglev system experimentally. Levitation force was measured in four types of multiple-bulk arrangements. It as revealed in the experiment that the levitation force was influenced by the distance between the bulks and that the maximum levitation force was obtained when the bulks were located near the inner boundary of the electromagnet windings. It is believed that the most suitable arrangement is closely related to magnetic field distribution; i.e. electromagnetic diemsions (inner and outer radii, thickness).
机译:我们提出了由HTS本体和电磁体组成的主动角系统中多个HTS本体的布置对升力和稳定性的依赖性。我们通过实验研究了磁场冷却过程中不对称磁场分布对悬浮特性(如悬浮力和稳定悬浮区域)的影响。尽管悬浮不稳定,但悬浮力随主体和电磁体轴之间的距离而增加。可以认为不稳定的悬浮是由主体内不对称的超电流分布引起的。我们实验研究了主动磁悬浮系统中多个HTS块的合适布置。在四种类型的多体布置中测量了悬浮力。实验表明,悬浮力受块体之间的距离的影响,当块体位于电磁线圈内边界附近时,可获得最大的悬浮力。据认为,最合适的布置与磁场分布密切相关。即电磁损伤(内半径和外半径,厚度)。

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