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首页> 外文期刊>Physica, C. Superconductivity and its applications >Static properties of high temperature superconductor bearings for a 10 kW h class superconductor flywheel energy storage system
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Static properties of high temperature superconductor bearings for a 10 kW h class superconductor flywheel energy storage system

机译:10 kW h级超导飞轮储能系统的高温超导轴承的静态性能

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A superconductor flywheel energy storage system (SFES) is mainly used as an electro-mechanical battery which transforms electrical energy into mechanical energy and vice versa. Many aspects of the dynamic behavior of flywheel rotors still need to be examined closely, and the rotors require a high capacity supporting system such as high temperature superconductor (HTS) bearings, which offer dynamic stability without the use of active control. Static properties of HTS bearings provide data to solve problems which may occur easily in a running system. Since stiffness in countering rotor vibration is the main parameter for designing an HTS bearing system, we investigated the static properties of the magnetic force between permanent magnets (PMs) and HTS bearings. We measured axial and radial stiffness, and discovered that bearing stiffness varied greatly depending on the direction of vibration of PM relative to the HTS bulk. Especially, when the rotor vibrated in the radial direction of the HTS bearing, HTS bulks of the bearing showed a large difference in stiffness depending on the orientation of the HTS bulk relative to the direction of vibration. As a result, we discussed the critical factors that affect the stiffness of HTS bearings and studied efficient ways to increase bearing stiffness. These results are used to determine the optimal design for a 10 kW h class SFES.
机译:超导体飞轮储能系统(SFES)主要用作将电能转化为机械能,反之亦然的机电电池。飞轮转子的动态性能的许多方面仍然需要仔细检查,并且转子需要高容量的支撑系统,例如高温超导(HTS)轴承,该系统无需使用主动控制即可提供动态稳定性。 HTS轴承的静态特性为解决在运行中的系统中容易出现的问题提供了数据。由于抵抗转子振动的刚度是设计HTS轴承系统的主要参数,因此我们研究了永磁体(PMs)和HTS轴承之间磁力的静态特性。我们测量了轴向和径向刚度,发现轴承刚度随PM相对于HTS整体的振动方向而变化很大。特别是,当转子沿HTS轴承的径向振动时,轴承的HTS块在刚度上显示出很大的差异,这取决于HTS块相对于振动方向的方向。结果,我们讨论了影响HTS轴承刚度的关键因素,并研究了提高轴承刚度的有效方法。这些结果用于确定10 kWh级SFES的最佳设计。

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