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Magnetic superelevation design of Halbach permanent magnet guideway for high-temperature superconducting maglev

机译:高温超导磁悬浮磁悬浮磁铁导轨的磁性超伸设计

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To improve the curve negotiating ability of high-temperature superconducting (HTS) maglev system, a special structure of magnetic superelevation for double-pole Halbach permanent magnet guideway (PMG) was designed. The most significant feature of this design is the asymmetrical PMG that forms a slanting magnetic field without affecting the smoothness of the PMG surface. When HTS maglev vehicle runs through curves with magnetic superelevation, the vehicle will slant due to asymmetry in magnetic field and the flux-pinning effect of onboard HTS bulks. At the same time, one component of the levitation force provides a part of the centripetal force that reduces lateral acceleration of the vehicle and thus enhances its curve negotiating ability. Furthermore, the slant angle of magnetic superelevation can be adjusted by changing the materials and the thickness of the added permanent magnets. This magnetic superelevation method, together with orographic uplift, can be applied to different requirements of PMG designs. Besides, the applicability of this method would benefit future development of high-speed HTS maglev system. (c) 2017 Elsevier B.V. All rights reserved.
机译:为了提高高温超导(HTS)Maglev系统的曲线谈判能力,设计了针对双极升降磁铁导轨(PMG)的磁性超链的特殊结构。这种设计的最重要特征是不对称PMG,其形成倾斜磁场,而不会影响PMG表面的平滑度。当HTS Maglev车辆通过磁性过度的曲线运行时,由于磁场中不对称,车辆将倾斜,并且船上HTS块的磁通循环效果。同时,悬浮力的一个组分提供了一部分向心力,其减少了车辆的横向加速度,从而提高了其曲线谈判能力。此外,可以通过改变材料和添加的永磁体的厚度来调节磁性超薄的倾斜角度。这种磁性超级方法与地形隆起一起可以应用于PMG设计的不同要求。此外,这种方法的适用性将使未来的高速HTS Maglev系统的未来发展。 (c)2017年Elsevier B.V.保留所有权利。

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