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Numerical study of thin superconducting plates subjected to transverse magnetic fields

机译:经受横向磁场的薄超导板的数值研究

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Electromagnetic properties of the superconductors predestine them to serve as materials for the efficient and lightmagnetic shields. Very high attenuation factors are possible to be obtained. Superconducting elements of differentgeometry can be used. However, shielding effect is limited by the critical current of a superconductor.This work describes the model of an arbitrarily shaped thin superconducting plates made of BSCCO, with the focus oncircular and rectangular samples. The plates are subjected to transverse magnetic fields of different strength and shape.Changes of critical current density are considered. The distribution of the shielded magnetic field and shielding current ispresented.Results show that the magnetic field attenuation occurs and depend on the shape and material of a plate. It was alsoobserved that coarse meshes can be used to obtain reliable results concerning magnetic field distribution, thus savingcomputational time.
机译:超导体的电磁特性预先用作高效和光的材料磁屏蔽。可以获得非常高的衰减因子。不同的超导元素可以使用几何体。然而,屏蔽效果受超导体的临界电流限制。这项工作描述了由BSCCO制成的任意形状的薄超导板的模型,重点圆形和矩形样本。平板经受不同强度和形状的横向磁场。考虑临界电流密度的变化。屏蔽磁场和屏蔽电流的分布是提出了。结果表明,磁场衰减发生并取决于板的形状和材料。还有观察到粗网格可用于获得关于磁场分布的可靠结果,从而节省计算时间。

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