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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Influence of Thickness on the Levitation Force of High-T_c Bulk over a Permanent Magnetic Guideway with Numerical Method
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Influence of Thickness on the Levitation Force of High-T_c Bulk over a Permanent Magnetic Guideway with Numerical Method

机译:厚度对永磁导轨上高T_c块的悬浮力的影响

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摘要

Levitation forces of a high temperature superconductor (HTS) bulk with a different thickness over a permanent magnet railway (PMR) is studied mathematically. Several cylindrical models of HTS bulk with a diameter of 30 mm and a different thickness over a PMR are researched by the magnetic field vector method (H-method). A 3D-modeling numerical method using finite element method (FEM) is used to simulate the electromagnetic behavior of the models. The thickness of the HTS bulk increases with 1 mm from 4 mm to 15 mm. The simulation results show that the thickness of the HTS bulk and the minigap between the bottom surface of the bulk and the top surface of the PMR have much influence on the levitation forces. With a certain applied magnetic field, there is a certain thickness value of the bulk, which means the levitation force will not increase obviously with the increase of the thickness while the thickness larges the value.
机译:用数学方法研究了永磁体铁路(PMR)上不同厚度的高温超导体(HTS)的悬浮力。通过磁场矢量方法(H方法)研究了直径为30 mm且在PMR上具有不同厚度的HTS块的几个圆柱模型。使用有限元方法(FEM)的3D建模数值方法用于模拟模型的电磁行为。 HTS块的厚度从4毫米增加到15毫米,增加了1毫米。仿真结果表明,高温超导块的厚度以及块的底面与PMR顶面之间的最小间隙对悬浮力有很大的影响。在一定的磁场作用下,块体有一定的厚度值,这意​​味着悬浮力不会随着厚度的增加而明显增加,而厚度越大。

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