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Calculation of the interaction forces between superconductor and permanent magnet using equivalent current loops in zero field cooling

机译:使用等效电流回路计算超导体和永磁体之间的相互作用力

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The levitation between high temperature superconductors (HTSs) and permanent magnets (PMs) has been applied to the flywheel energy storage systems and magnetic bearing systems for the last nearly twenty years. The interaction forces acting on the levitating body are calculated by the modified frozen-image method. The magnetic dipoles are equivalent to Amperian current loops. The current intensity in loops changes linearly when the PM moves. Under the zero field cooling condition, the expression of vertical force is obtained when the PM traverses vertically, and when the PM traverses horizontally, the expressions of vertical and horizontal forces are obtained. Those expressions of vertical and horizontal forces are gained by calculating the forces between current loops and using superposition theorem of vector. The calculations agree well with the previous experimental data, which means that the deductions of the expressions are reliable.
机译:高温超导体(HTSS)和永磁体(PMS)之间的悬浮件已应用于飞轮储能系统和磁性轴承系统,持续近二十年。作用在悬浮体上的相互作用力通过改性的冰冻图像方法计算。磁性偶极子等同于安培电流环。当PM移动时,循环中的电流强度会线性变化。在零场冷却条件下,当PM垂直横穿时获得垂直力的表达,并且当PM水平横穿时,获得垂直和水平力的表达。通过计算电流环之间的力并使用载体的叠加定理来获得垂直和水平力的那些表达。计算与先前的实验数据一致,这意味着表达的扣除是可靠的。

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