COMPONENT COOLING SYSTEM
    4.
    发明公开
    COMPONENT COOLING SYSTEM 审中-公开
    组件冷却系统

    公开(公告)号:EP2265871A2

    公开(公告)日:2010-12-29

    申请号:EP09739371.4

    申请日:2009-03-31

    IPC分类号: F25D19/00 H01F6/04

    摘要: A a component cooling system includes a component tank configured to receive a heat-generating device. The component tank is at least partially filled with a subcooled liquid at a first pressure and at a first temperature. A cryogenic system maintains the component tank at essentially the first temperature. The cryogenic system includes a heat exchange system thermally coupled with at least a portion of the component tank. The heat exchange system is at least partially filled with a second saturated liquid at a second pressure and at essentially the first temperature. A cryostat tank is fluidly-coupled with the heat exchange system and allows for pumpless displacement of the second saturated liquid between the heat exchange system and the cryostat tank.

    ELECTRICITY TRANSMISSION COOLING SYSTEM
    6.
    发明公开
    ELECTRICITY TRANSMISSION COOLING SYSTEM 有权
    ELEKTRIZITÄTSÜBERTRAGUNGS-KÜHLSYSTEM

    公开(公告)号:EP2332151A1

    公开(公告)日:2011-06-15

    申请号:EP09792877.4

    申请日:2009-09-23

    IPC分类号: H01B12/16 H02G15/34

    摘要: A cooling system includes a first section of high temperature superconducting (HTS) cable configured to receive a first flow of coolant and to permit the first flow of coolant to flow therethrough. The system may further include a second section of high temperature superconducting (HTS) cable configured to receive a second flow of coolant and to permit the second flow of coolant to flow therethrough. The system may further include a cable joint configured to couple the first section of HTS cable and the second section of HTS cable. The cable joint may be in fluid communication with at least one refrigeration module and may include at least one conduit configured to permit a third flow of coolant between said cable joint and said at least one refrigeration module through a coolant line separate from said first and second sections of HTS cable. Other embodiments and implementations are also within the scope of the present disclosure.

    摘要翻译: 冷却系统包括高温超导(HTS)电缆的第一部分,其被配置为接收第一流动的冷却剂并且允许冷却剂的第一流动流过其中。 该系统可以进一步包括高温超导(HTS)电缆的第二部分,其被配置为接收第二冷却剂流并且允许第二流动的冷却剂流过其中。 该系统还可以包括被配置为将HTS电缆的第一部分和HTS电缆的第二部分耦合的电缆接头。 电缆接头可以与至少一个制冷模块流体连通,并且可以包括至少一个导管,其构造成允许通过与所述第一和第二制冷剂分开的冷却剂管线在所述电缆接头和所述至少一个制冷模块之间进行第三次冷却剂流动 HTS电缆部分。 其它实施例和实现也在本公开的范围内。

    PARALLEL CONNECTED HTS FCL DEVICE
    8.
    发明公开
    PARALLEL CONNECTED HTS FCL DEVICE 有权
    并行HTS整箱DEVICE

    公开(公告)号:EP2118982A2

    公开(公告)日:2009-11-18

    申请号:EP08780386.2

    申请日:2008-01-29

    IPC分类号: H02H9/02 H01L39/16

    摘要: A superconducting electrical cable system is configured to be included within a utility power grid having a known fault current level. The superconducting electrical cable system includes a non- superconducting electrical path interconnected between a first node and a second node of the utility power grid. A superconducting electrical path is interconnected between the first node and the second node of the utility power grid. The superconducting electrical path and the non-superconducting electrical path are electrically connected in parallel, and the superconducting electrical path has a lower series impedance than the non-superconducting electrical path when the superconducting electrical path is operated below a critical current level and a critical temperature. The superconducting electrical path is configured to have a series impedance that is at least N times the series impedance of the non-superconducting electrical path when the superconducting electrical path is operated at or above one or more of the critical current level and the superconductor critical temperature. N is greater than 1 and is selected to attenuate, in conjunction with an impedance of the non- superconducting electrical path, the known fault current level by at least 10 %.

    ELECTRICITY TRANSMISSION COOLING SYSTEM
    9.
    发明授权
    ELECTRICITY TRANSMISSION COOLING SYSTEM 有权
    电力传输冷却系统

    公开(公告)号:EP2332151B1

    公开(公告)日:2017-07-12

    申请号:EP09792877.4

    申请日:2009-09-23

    IPC分类号: H01B12/16 H02G15/34

    摘要: A cooling system includes a first section of high temperature superconducting (HTS) cable configured to receive a first flow of coolant and to permit the first flow of coolant to flow therethrough. The system may further include a second section of high temperature superconducting (HTS) cable configured to receive a second flow of coolant and to permit the second flow of coolant to flow therethrough. The system may further include a cable joint configured to couple the first section of HTS cable and the second section of HTS cable. The cable joint may be in fluid communication with at least one refrigeration module and may include at least one conduit configured to permit a third flow of coolant between said cable joint and said at least one refrigeration module through a coolant line separate from said first and second sections of HTS cable. Other embodiments and implementations are also within the scope of the present disclosure.

    摘要翻译: 冷却系统包括高温超导(HTS)电缆的第一部分,该第一部分被配置为接收第一冷却剂流并允许第一冷却剂流从中流过。 该系统可以进一步包括高温超导(HTS)电缆的第二部分,该第二部分被配置为接收第二冷却剂流并且允许第二冷却剂流从中流过。 该系统可以进一步包括电缆接头,该电缆接头配置成将HTS电缆的第一部分和HTS电缆的第二部分联接。 电缆接头可以与至少一个制冷模块流体连通,并且可以包括至少一个导管,该导管被配置为允许在所述电缆接头和所述至少一个制冷模块之间的第三冷却剂流通过与所述第一和第二制冷剂管路分开的冷却剂管路 HTS电缆的部分。 其他实施例和实现也在本公开的范围内。

    COOLING SYSTEM FOR HIGH TEMPERATURE SUPERCONDUCTING MACHINES
    10.
    发明授权
    COOLING SYSTEM FOR HIGH TEMPERATURE SUPERCONDUCTING MACHINES 有权
    冷却系统,高温超导机

    公开(公告)号:EP1248933B1

    公开(公告)日:2006-10-25

    申请号:EP01942409.2

    申请日:2001-01-10

    IPC分类号: F25B9/14 H02K55/04

    摘要: A cryogenic cooling system (10) is configured to control the flow of a heat transfer fluid through a remote thermal load (17), such as a superconducting magnet or rotor. The cryogenic cooling system (10) includes a refrigerator (12) including a cryogenically cooled surface and a cryogenic fluid transport device (15) disposed within the refrigerator (12) for circulating a heat transfer fluid between the cryogenically cooled surface and the remote thermal load (17). The cryogenic fluid transport device (15) being positioned within the refrigerator advantageously serves as device for providing the necessary mechanical force necessary to move the heat transfer fluid from the cryogenically cooled surface (e.g., end of a cryocooler) (13) to the remote thermal load (17). Thus, unlike conventional cooling arrangements the heat transfer fluid does not require a phase change.