论文标题
恒星剂的永久磁铁的拓扑优化
Topology optimization of permanent magnets for stellarators
论文作者
论文摘要
我们引入了一种拓扑优化方法,以设计用于高级恒星剂的永久磁铁。最近的研究表明,永久磁铁具有简化恒星线圈的巨大潜力。我们采用最先进的数值技术来确定整个设计空间中磁铁的存在。 FAMUS代码是开发的,它可以设计工程可行的永久磁铁,以使一般恒星剂满足最大材料磁化和明确禁止区域的约束。 FAMUS已通过先前提出的线性方法成功验证。进行了三种不同的永久磁铁设计以及平面TF线圈,用于示威进行六个TESLA NCSX配置。这些设计在产生所需的平衡方面具有良好的准确性,并在舷外侧提供了相当大的等离子体访问。结果表明,FAMUS是一种灵活的高级数值工具,用于将来的永久磁铁恒星设计。
We introduce a topology optimization method to design permanent magnets for advanced stellarators. Recent researches show that permanent magnets have great potentials to simplify stellarator coils. We adopt state-of-the-art numerical techniques to determine the presence of magnets in the entire designing space. The FAMUS code is developed and it can design engineering-feasible permanent magnets for general stellarators satisfying the constraints of the maximum material magnetization and explicitly forbidden regions. FAMUS has been successfully verified against the previously proposed linear method. Three different permanent magnet designs together with planar TF coils for a half-Tesla NCSX configuration have been obtained for demonstrations. The designs have good accuracy in generating the desired equilibrium and offer considerably large plasma access on the outboard side. The results show that FAMUS is a flexible, advanced numerical tool for future permanent magnet stellarator designs.