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Conceptual design of dc power supplies for FFHR superconducting magnet

机译:FFHR超导磁体直流电源的概念设计

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摘要

The force-free helical reactor (FFHR) is a helical-type fusion reactor whose design is being studied at the National Institute for Fusion Science. The FFHR will use three sets of superconducting coils to confine the plasma. It is not a fusion plasma experimental device, and the magnetic field configuration will be optimized for burning plasma. This paper introduces a conceptual design for a dc power system to excite the superconducting coils of the FFHR. In this design, the poloidal coils are divided into a main part, which generates a magnetic field for steady-state burning, and a control part, which is used in the ignition process to control the magnetic axis. The feasibility of this configuration was studied using the Large Helical Device coil parameters, and the coil voltages required to sweep the magnetic axis were calculated. It was confirmed that the axis sweep could be performed without a high output voltage from the main power supply. Finally, the power supply ratings for the FFHR were estimated from the stored magnetic energy.
机译:无力螺旋反应堆(FFHR)是一种螺旋型聚变反应堆,其设计正在美国国立聚变研究所进行研究。 FFHR将使用三套超导线圈来限制等离子体。它不是聚变等离子体实验设备,磁场配置将针对燃烧等离子体进行优化。本文介绍了一种用于激励FFHR的超导线圈的直流电源系统的概念设计。在这种设计中,极向线圈分为一个主要部分和一个控制部分,该主要部分产生用于稳态燃烧的磁场,该控制部分在点火过程中用于控制磁轴。使用大型螺旋装置的线圈参数研究了这种配置的可行性,并计算了扫描磁轴所需的线圈电压。确认可以在没有主电源的高输出电压的情况下执行轴扫描。最后,从存储的磁能中估算出FFHR的电源额定值。

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