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    • 3. 发明授权
    • Cooling system for superconducting magnet
    • 超导磁体冷却系统
    • US5848532A
    • 1998-12-15
    • US844991
    • 1997-04-23
    • Bruce B. GambleAhmed Sidi-Yekhlef
    • Bruce B. GambleAhmed Sidi-Yekhlef
    • F17C13/00F25B25/00F17C3/10F25B19/00
    • F25B25/005
    • A cooling system is configured to control the flow of a refrigerant by controlling the rate at which the refrigerant is heated, thereby providing an efficient and reliable approach to cooling a load (e.g., magnets, rotors). The cooling system includes a conduit circuit connected to the load and within which a refrigerant circulates; a heat exchanger, connected within the conduit circuit and disposed remotely from the load; a first and a second reservoir, each connected within the conduit, each holding at least a portion of the refrigerant; a heater configured to independently heat the first and second reservoirs. In a first mode, the heater heats the first reservoir, thereby causing the refrigerant to flow from the first reservoir through the load and heat exchanger, via the conduit circuit and into the second reservoir. In a second mode, the heater heats the second reservoir to cause the refrigerant to flow from the second reservoir through the load and heat exchanger via the conduit circuit and into the first reservoir.
    • 冷却系统被配置为通过控制制冷剂被加热的速率来控制制冷剂的流动,从而为冷却负载(例如,磁体,转子)提供有效和可靠的方法。 冷却系统包括连接到负载并且制冷剂在其内循环的导管回路; 热交换器,其连接在导管电路内并远离负载设置; 第一和第二储存器,每个储存器连接在导管内,每个储存至少一部分制冷剂; 加热器,被配置为独立地加热第一和第二储存器。 在第一模式中,加热器加热第一储存器,从而使制冷剂经由管道电路从第一储存器流过负载和热交换器并进入第二储存器。 在第二模式中,加热器加热第二储存器,以使制冷剂经由导管回路从第二储存器流过负载和热交换器并进入第一储存器。
    • 4. 发明授权
    • Pulse tube refrigerator and current lead
    • 脉冲管冰箱和电流引线
    • US06286318B1
    • 2001-09-11
    • US09243142
    • 1999-02-02
    • James F. MaguireAhmed Sidi-YekhlefPeter M. Winn
    • James F. MaguireAhmed Sidi-YekhlefPeter M. Winn
    • F25B900
    • F25B9/145F25B9/10F25B2309/1408F25B2309/1424F25B2309/1425F25D19/006H01F6/065
    • A combination refrigerator and current lead assembly includes a pulse tube having a cold end and a warm end. A first electrical connector is attached to the warm end. A second electrical connector attached to the pulse tube supplies current to a lead, for example, a high temperature superconductor lead. The assembly includes a second pulse tube having an electrical connector attached at its warm end and a second electrical connector for supplying current to a lead. The second electrical connectors are attached to the cold ends of the pulse tube. The pulse tubes are formed from an electrically conductive material. An electrical isolator electrically isolates the pulse tubes from each other. Additional electrical isolators electrically isolate the pulse tubes from a compressor, valve, and regenerators of the system.
    • 组合式冰箱和电流引线组件包括具有冷端和热端的脉冲管。 第一个电连接器连接到暖端。 附接到脉冲管的第二电连接器将电流提供给引线,例如高温超导体引线。 组件包括第二脉冲管,其具有连接在其热端的电连接器,以及用于向引线提供电流的第二电连接器。 第二电连接器连接到脉冲管的冷端。 脉冲管由导电材料形成。 电隔离器将脉冲管彼此电隔离。 附加的电气隔离器将脉冲管与系统的压缩机,阀和再生器电隔离。
    • 5. 发明授权
    • Cooling system for HTS machines
    • HTS机的冷却系统
    • US06625992B2
    • 2003-09-30
    • US10059873
    • 2002-01-29
    • James F. MaguirePeter M. WinnAhmed Sidi-YekhlefJie Yuan
    • James F. MaguirePeter M. WinnAhmed Sidi-YekhlefJie Yuan
    • F25B900
    • F25B9/14F25B2309/002F25B2500/06H02K55/04Y02E40/625
    • A cryogenic cooling system is configured to control the flow of a heat transfer fluid through a remote thermal load, such as a superconducting magnet or rotor. The cryogenic cooling system includes a refrigerator including a cryogenically cooled surface and a cryogenic fluid transport device disposed for circulating a heat transfer fluid between the cryogenically cooled surface and the remote thermal load. The cryogenic fluid transport device 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) to the remote thermal load. Thus, unlike conventional cooling arrangements the heat transfer fluid does not require a phase change.
    • 低温冷却系统被配置为控制传热流体通过远程热负荷(例如超导磁体或转子)的流动。 低温冷却系统包括一个包括低温冷却表面的冰箱和一个设置用于使传热流体在低温冷却表面和远程热负荷之间循环的低温流体输送装置。 低温流体输送装置有利地用作提供将热传递流体从低温冷却表面(例如,低温冷却器的端部)移动到远程热负载所需的必要机械力的装置。 因此,与传统的冷却装置不同,传热流体不需要相变。
    • 6. 发明授权
    • Cooling system for HTS machines
    • HTS机的冷却系统
    • US06347522B1
    • 2002-02-19
    • US09480396
    • 2000-01-11
    • James F. MaguirePeter M. WinnAhmed Sidi-YekhlefJie Yuan
    • James F. MaguirePeter M. WinnAhmed Sidi-YekhlefJie Yuan
    • F25B900
    • F25B9/14F25B2309/002F25B2500/06H02K55/04Y02E40/625
    • A cryogenic cooling system is configured to control the flow of a heat transfer fluid through a remote thermal load, such as a superconducting magnet or rotor. The cryogenic cooling system includes a refrigerator including a cryogenically cooled surface and a cryogenic fluid transport device disposed within the refrigerator for circulating a heat transfer fluid between the cryogenically cooled surface and the remote thermal load. The cryogenic fluid transport device 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) to the remote thermal load. Thus, unlike conventional cooling arrangements the heat transfer fluid does not require a phase change.
    • 低温冷却系统被配置为控制传热流体通过远程热负荷(例如超导磁体或转子)的流动。 低温冷却系统包括一个包括低温冷却表面的冰箱和设置在冰箱内用于在低温冷却表面和远程热负荷之间循环传热流体的低温流体输送装置。 定位在冰箱内的低温流体输送装置有利地用作用于提供将热传递流体从低温冷却表面(例如,低温冷却器的端部)移动到远程热负载所需的必要机械力的装置。 因此,与传统的冷却装置不同,传热流体不需要相变。
    • 7. 发明授权
    • Cryogenic refrigerator
    • 低温冰箱
    • US06532748B1
    • 2003-03-18
    • US09716598
    • 2000-11-20
    • Jie YuanJames F. MaguireAhmed Sidi-YekhlefPeter M. Winn
    • Jie YuanJames F. MaguireAhmed Sidi-YekhlefPeter M. Winn
    • F25B900
    • F02G1/0435F25B9/14F25B9/145F25B2309/1406F25B2309/1408F25B2309/1412F25B2309/1418F25B2309/1424F25B2309/14241
    • A cryogenic refrigerator for cooling a rotating device includes a stationary regenerator, and a rotatable cold heat exchanger coupled to the stationary regenerator to rotate relative thereto. The cryogenic refrigerator is, for example, of the Gifford-McMahon type or pulse tube type. In the Gifford-McMahon type, a stationary cylinder houses the regenerator, and a rotatable cylinder mounted to the cold heat exchanger is concentrically arranged about the stationary cylinder. Alternatively, the rotatable cylinder is axially offset of the stationary cylinder. A seal, for example, a ferrofluidic seal, is located between the stationary and rotatable cylinders. In the pulse-tube type, a pulse tube is concentrically arranged about the regenerator, and the cold heat exchanger includes a stationary portion coupled to the regenerator and a rotatable portion coupled to the pulse tube. A back-up valve system is provided for increased reliability.
    • 用于冷却旋转装置的低温冰箱包括固定再生器和联接到固定再生器以相对于其旋转的可旋转冷热交换器。 例如,低温冰箱是Gifford-McMahon型或脉管型。 在吉福德 - 麦克马洪型中,固定的气缸容纳再生器,并且安装在冷热交换器上的可旋转气缸围绕静止圆筒同心地布置。 或者,可旋转气缸在静止气缸的轴向偏移。 密封件,例如铁磁流体密封件,位于固定和可旋转的气缸之间。 在脉冲管型中,脉冲管围绕再生器同心地布置,并且冷热交换器包括耦合到再生器的固定部分和耦合到脉冲管的可旋转部分。 提供了备用阀系统以提高可靠性。