LARGE CAPACITY HOLLOW-TYPE FLYWHEEL ENERGY STORAGE DEVICE
    1.
    发明申请
    LARGE CAPACITY HOLLOW-TYPE FLYWHEEL ENERGY STORAGE DEVICE 有权
    大容量中型飞机能源储存装置

    公开(公告)号:US20100231075A1

    公开(公告)日:2010-09-16

    申请号:US12560383

    申请日:2009-09-15

    IPC分类号: H02K7/09

    摘要: Disclosed is a large capacity hollow-type flywheel energy storage device. The energy storage device includes a hollow shaft, a vacuum chamber receiving the hollow shaft, a flywheel having a predetermined weight and disposed at an inner edge of the vacuum chamber, and a hub connecting the flywheel to the hollow shaft and disposed in the vacuum chamber to be rotatable together with the flywheel. A superconductive bearing and an electromagnet bearing are disposed inside and outside the hollow shaft, respectively, such that magnetic forces thereof can be shielded from each other. Thus, magnetic interference between the superconductive bearing and the electromagnet bearing is shielded by the magnet shield interposed therebetween, thereby preventing rotation loss by stabilizing a structural mechanism during rotation while improving design adaptability.

    摘要翻译: 公开了一种大容量中空型飞轮储能装置。 能量存储装置包括中空轴,容纳中空轴的真空室,具有预定重量并设置在真空室的内边缘处的飞轮,以及将飞轮连接到空心轴并设置在真空室中的轮毂 与飞轮一起旋转。 超导轴承和电磁体轴承分别设置在中空轴内侧和外侧,使得其磁力能够彼此隔离。 因此,超导轴承和电磁铁轴承之间的磁干扰被中间的磁体屏蔽屏蔽,从而通过在旋转期间稳定结构机构来防止旋转损失,同时提高设计适应性。

    Large capacity hollow-type flywheel energy storage device
    2.
    发明授权
    Large capacity hollow-type flywheel energy storage device 有权
    大容量中空型飞轮储能装置

    公开(公告)号:US08134264B2

    公开(公告)日:2012-03-13

    申请号:US12560383

    申请日:2009-09-15

    IPC分类号: H02K7/08

    摘要: Disclosed is a large capacity hollow-type flywheel energy storage device. The energy storage device includes a hollow shaft, a vacuum chamber receiving the hollow shaft, a flywheel having a predetermined weight and disposed at an inner edge of the vacuum chamber, and a hub connecting the flywheel to the hollow shaft and disposed in the vacuum chamber to be rotatable together with the flywheel. A superconductive bearing and an electromagnet bearing are disposed inside and outside the hollow shaft, respectively, such that magnetic forces thereof can be shielded from each other. Thus, magnetic interference between the superconductive bearing and the electromagnet bearing is shielded by the magnet shield interposed therebetween, thereby preventing rotation loss by stabilizing a structural mechanism during rotation while improving design adaptability.

    摘要翻译: 公开了一种大容量中空型飞轮储能装置。 能量存储装置包括中空轴,容纳中空轴的真空室,具有预定重量并设置在真空室的内边缘处的飞轮,以及将飞轮连接到空心轴并设置在真空室中的轮毂 与飞轮一起旋转。 超导轴承和电磁体轴承分别设置在中空轴内侧和外侧,使得其磁力能够彼此隔离。 因此,超导轴承和电磁铁轴承之间的磁干扰被中间的磁体屏蔽屏蔽,从而通过在旋转期间稳定结构机构来防止旋转损失,同时提高设计适应性。