论文标题

恒星永久磁铁阵列的几何概念

Geometric concepts for stellarator permanent magnet arrays

论文作者

Hammond, K. C., Zhu, C., Brown, T., Corrigan, K., Gates, D. A., Sibilia, M.

论文摘要

使用永久磁铁阵列塑造其狭窄磁场的恒星的开发一直是人们最近感兴趣的话题,但是必须确定必须确定必须确定这种磁铁如何形成,制造和组装的磁铁的要求。为了解决这些开放的问题,我们在新开发的喜p代码的帮助下对磁铁阵列的几何概念进行了研究。所提出的类似于国家紧凑型恒星实验(NCSX)的实验用作测试案例。探索了两类的磁铁几何形状:符合圆柱坐标中常规网格的弯曲砖,而符合环形等离子体几何形状的六面的六面。另外,我们测试了磁铁极化的约束。尽管在血浆周围的环形表面限制为正常表面的磁体构型在受到当今磁铁强度的物理限制时无法满足所需的磁场参数,但显示出无约束极化的构型可满足目标等离子体的物理要求。

The development of stellarators that use permanent magnet arrays to shape their confining magnetic fields has been a topic of recent interest, but the requirements for how such magnets must be shaped, manufactured, and assembled remain to be determined. To address these open questions, we have performed a study of geometric concepts for magnet arrays with the aid of the newly developed MAGPIE code. A proposed experiment similar to the National Compact Stellarator Experiment (NCSX) is used as a test case. Two classes of magnet geometry are explored: curved bricks that conform to a regular grid in cylindrical coordinates, and hexahedra that conform to the toroidal plasma geometry. In addition, we test constraints on the magnet polarization. While magnet configurations constrained to be polarized normally to a toroidal surface around the plasma are unable to meet the required magnetic field parameters when subject to physical limitations on the strength of present-day magnets, configurations with unconstrained polarizations are shown to satisfy the physics requirements for a targeted plasma.

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