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Challenges in Designing the Modular Coils for the National Compact Stellarator Experiment (NCSX)

机译:设计用于国家紧凑型恒星仪(NCSX)的模块化线圈的挑战

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The National Compact Stellarator Experiment (NCSX) is a quasi-axisymmetric plasma experiment that combines the high beta and good confinement of an advanced tokamak with the low current, disruption-free characteristics of a stellarator. The experiment is based on a three field-period plasma configuration with an average major radius of 1.4 m, a minor radius of 0.3 m, and a toroidal magnetic field on axis of up to 2 T. The modular coils are one set in a complex assembly of four coil systems that surround the highly shaped plasma. There are six each of three coil types in the assembly, for a total of 18 modular coils. The coils are constructed by winding copper cable onto a cast stainless steel winding form that has been machined to high accuracy, so that the current center of the winding pack is within +/-1.5 mm of its theoretical position. The modular coils operate at a temperature of 80 K and are subjected to rapid heating and stress during a pulse. The final coil design has presented many challenges with its requirements for winding accuracy, good thermal performance, a robust supporting structure, and ease of assembly and maintenance
机译:美国国家紧凑型恒星发生器实验(NCSX)是准轴对称等离子体实验,结合了先进的托卡马克的高贝塔系数和良好的局限性以及恒星发生器的低电流,无干扰特性。该实验基于三场周期的等离子体配置,平均主半径为1.4 m,次半径为0.3 m,并且在最大2 T的轴上具有环形磁场。四个线圈系统的组装,这些线圈系统围绕着高度成形的等离子体。组件中三种线圈类型各有六种,总共18个模块化线圈。线圈是通过将铜电缆缠绕到经过精加工的铸造不锈钢绕组上而制成的,因此绕组组的电流中心在其理论位置的+/- 1.5 mm之内。模块化线圈的工作温度为80 K,在脉冲过程中会受到快速加热和应力作用。最终的线圈设计对绕组精度,良好的热性能,坚固的支撑结构以及易于组装和维护的要求提出了许多挑战。

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