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The driving torque of a rotating levitated cylindrical permanent magnet above a superconductor

机译:超导体上方旋转的悬浮圆柱状永磁体的驱动转矩

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摘要

Due to the Meissner effect, a permanent magnet is levitated, when released above a high temperature superconductor. When there is an inhomogeneous temperature field around the magnet, the magnet might start to oscillate with increasing amplitude until it remains in a continuous rotation. A mathematical model for the described effect is presented which couples heat transfer and electromagnetic forces with the equation of motion, yielding to a multiphysics task. In a detailed analysis it is found, that the torque which drives the rotation of the magnet, is explicitly given in terms of Bessel functions and the Fourier coefficients of order zero and one of the temperature field of the surrounding air.
机译:由于迈斯纳效应,永磁体在高温超导体上方释放时会悬浮。当磁体周围存在不均匀的温度场时,磁体可能会开始以增大的幅度振荡,直到保持连续旋转。提出了一种用于描述效果的数学模型,该模型将热传递和电磁力与运动方程式耦合在一起,从而完成了多物理场任务。在详细的分析中发现,驱动磁铁旋转的转矩明确地由贝塞尔函数和零阶傅立叶系数以及周围空气的温度场之一给出。

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