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Electromagnetic force and eddy current loss in dynamic behavior of a superconducting magnetically levitated vehicle

机译:超导磁悬浮车辆动力学行为中的电磁力和涡流损失

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摘要

A magnetically levitated vehicle is being designed to travel between Tokyo and Osaka in about 1 h at a 500-km/h speed. When the car runs at a high speed, it moves laterally and vertically from its balanced position at low frequencies. The authors present calculations of electromagnetic forces and eddy currents generated in the onboard cryostat containing the superconducting magnet as a result of these motions. They show that the electromagnetic forces, eddy current losses and damping constants of the motion, especially for the lateral and vertical motions, depend on the materials of the radiation shield and the inner vessel in the magnet and change with the frequencies of car motion. The magnitudes of forces, losses, and damping constants in lateral motion are compared with those in vertical motion. To evaluate these quantities, numerical calculations were performed with a two-dimensional finite-element method.
机译:设计了一种磁悬浮车辆,以500公里/小时的速度在东京和大阪之间行驶约1小时。当汽车高速行驶时,它会从平衡位置以低频横向和垂直移动。作者介绍了由于这些运动而在包含超导磁体的车载低温恒温器中产生的电磁力和涡流的计算。他们表明,电磁力,涡流损耗和运动的阻尼常数(尤其是横向运动和垂直运动)取决于辐射屏蔽层和磁体中的内部容器的材料,并随汽车运动的频率而变化。将横向运动中的力,损耗和阻尼常数的大小与垂直运动中的大小进行比较。为了评估这些数量,使用二维有限元方法进行了数值计算。

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