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Experimental and Theoretical Levitation Forces in a Superconducting Bearing for a Real-Scale Maglev System

机译:实际规模磁悬浮系统中超导轴承的实验和理论悬浮力

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摘要

A numerical model based on the critical-state approximation and on a magnetic-energy minimization procedure is presented to simulate the levitation of a system composed of two isolated infinitely long superconductors levitating over permanent-magnet guideways. Three different sets of magnetic guideways are simulated and compared with experimental tests of a linear superconducting magnetic bearing for a prototype of a real magnetic levitation vehicle. In spite of the complexity of the permanent-magnet guideway design, the model serves as a first approach to calculate the vertical levitation force of these superconducting bearings. The measured and calculated force results validate the model applied to study these systems, in addition to some limitations caused by simplifications considered in the theoretical model.
机译:提出了一种基于临界状态近似和磁能最小化过程的数值模型,以模拟由两个悬浮在永磁导轨上的无限长超导体组成的系统的悬浮。模拟了三套不同的电磁导轨,并与用于实际磁悬浮车原型的线性超导磁性轴承的实验测试进行了比较。尽管永磁导轨设计很复杂,但是该模型仍是计算这些超导轴承的垂直悬浮力的第一种方法。测得的力和计算出的力结果验证了用于研究这些系统的模型,此外还有理论模型中考虑的简化所引起的一些局限性。

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