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Analytical method for levitation force calculation of radial HTS magnetic bearings

机译:径向HTS电磁轴承的悬浮力计算的解析方法

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摘要

Introducing high-temperature superconductors (HTS) and their outstanding properties stimulates scientists and engineers in various fields to modernise the products with this new technology. Electric power industry also was affected by this finding in different branches including bearings. The idea of HTS bearings was rapidly developed due to its two main features, i.e. self-stability and contactless operation which leads to save remarkable amount of energy. However, a successful implementation of HTS bearing undoubtedly requires an accurate modelling in the beginning. The contribution of this study is an analytical method for simulating the electromagnetic behaviour of a radial HTS magnetic bearing. The governing non-linear system of partial differential equations in the HTS bulks deduced from the H-formulation along with the E-J power law and is efficiently solved using variational iteration method (VIM). The validity of VIM is ascertained by comparing the results with numerical two-dimensional axisymmetric finite-element method simulations.
机译:引入高温超导体(HTS)及其出色的性能,刺激了各个领域的科学家和工程师使用这项新技术使产品现代化。电力行业也受到包括轴承在内的不同部门的这一发现的影响。 HTS轴承的思想由于其两个主要特征而迅速发展,即自稳定和非接触式运行,从而节省了大量能源。但是,成功实施HTS轴承无疑在开始时就需要精确的建模。这项研究的成果是一种用于模拟径向HTS电磁轴承的电磁行为的分析方法。由H公式和E-J幂定律推导得出的HTS体中偏微分方程的控制非线性系统,并使用变分迭代法(VIM)有效地求解。通过将结果与二维轴对称有限元数值模拟进行比较,可以确定VIM的有效性。

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