首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Permanent magnet thrust bearings for flywheel energy storage systems: Analytical, numerical, and experimental comparisons
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Permanent magnet thrust bearings for flywheel energy storage systems: Analytical, numerical, and experimental comparisons

机译:飞轮储能系统永磁推力轴承:分析,数值和实验比较

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摘要

A new type of flywheel energy storage system uses a magnetic suspension where the axial load is provided solely by permanent magnets, whereas active magnetic bearings are only used for radial stabilization. This means that the permanent magnet bearing must provide all the axial damping. Furthermore, it must have as low a negative radial stiffness as possible to reduce the workload on the radial active magnetic bearings. Many different mathematical models for determining force, stiffness, and damping of permanent magnet bearings are available in the literature. This work will further develop the most applicable analytical and numerical methods in order to make them directly implementable for designing permanent magnet thrust bearings for flywheel energy storage systems. The outcome is a fast and efficient method for determining force, stiffness, and damping when the bearing setup contains magnetic materials with relative permeability higher than one as well as when it does not. The developed method is validated against numerical and experimental results with good agreement.
机译:一种新型的飞轮储能系统使用磁悬浮液,其中轴向载荷仅由永磁体提供,而主动磁轴承仅用于径向稳定性。这意味着永磁轴承必须提供所有轴向阻尼。此外,它必须具有尽可能低的负径向刚度,以减少径向主动磁轴承上的工作量。文献中有许多用于确定力,刚度和阻尼的用于确定力,刚度和阻尼的数学模型。这项工作将进一步开发最适用的分析和数值方法,以便使它们直接可实现用于为飞轮储能系统设计永磁推力轴承。结果是当轴承设置含有高于一个的相对渗透率的磁性材料以及不存在的磁性材料时,确定力,刚度和阻尼的快速有效的方法。开发的方法验证了符合良好协议的数值和实验结果。

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