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首页> 外文期刊>Physica, C. Superconductivity and its applications >Rotation loss reduction of superconducting magnetic bearings by stacking and rearranging the shape of the bulks
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Rotation loss reduction of superconducting magnetic bearings by stacking and rearranging the shape of the bulks

机译:通过堆叠和重新排列块的形状来减少超导磁性轴承的旋转损耗

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Energy storage by a flywheel system has recently been developed as a promising application of high temperature superconducting bulks. Rotation loss reduction is necessary for an efficient operation of the superconducting magnetic bearings (SMB), which is the most essential component of the system. Typical radial type SMB consists of a superconductor stator and a permanent magnet rotor that is sustained by a magnetic force deduced from high flux pinning of the bulk superconductors. If the stator is a simply segmented circular array of Y-Ba-Cu-O bulks, inhomogeneity of the trapped magnetic field is unavoidable, which induces eddy currents in the metallic component in the rotor. Such a rotation loss is one of the major problems for a practical use of SMB. We will present the relationship between the inhomogeneous magnetic field and the rotation loss of SMB and give a general principle for reduction of rotation loss in SMB. (c) 2005 Elsevier B.V. All rights reserved.
机译:飞轮系统的储能技术近来已被开发为高温超导本体的有前途的应用。为了使超导磁性轴承(SMB)有效运行,必须降低旋转损耗,这是系统最重要的组成部分。典型的径向型SMB由超导体定子和永磁体转子组成,该永磁体转子由从大块超导体的高磁通钉扎推导出的磁力所维持。如果定子是Y-Ba-Cu-O块的简单分段的圆形阵列,则不可避免地会产生捕获磁场的不均匀性,这会在转子的金属组件中感应出涡流。这种旋转损失是SMB的实际使用中的主要问题之一。我们将介绍不均匀磁场与SMB旋转损耗之间的关系,并给出降低SMB旋转损耗的一般原理。 (c)2005 Elsevier B.V.保留所有权利。

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