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On the Characteristic Difference of Neoclassical Bootstrap Current and Its Effects on MHD Equilibria between CHS Heliotron/Torsatron and CHS-qa Quasi-Axisymmetric Stellarator

机译:CHS Heliotron / Torsatron与CHS-qa拟轴对称恒星之间新古典自举电流的特性差异及其对MHD平衡的影响

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摘要

The characteristic difference of neoclassical bootstrap current and its effects on MHD equilibria are described for the CHS heliotron/torsatron and the CHS-qa quasi-axisymmetric stellarator. The direction of bootstrap current strongly depends on collisionality in CHS, whereas it does not in CHS-qa because of quasi-axisymmetry. In the CHS configuration, it appears that enhanced bumpy (Bs1) and sideband components of helical ripple (By1) play an important role in reducing the magnetic geometrical factor, which is a key factor in evaluating the value of bootstrap cuffent, and determining its polarity. The bootstrap current in CHS-qa is theoretically predicted to be larger than that in CHS and produces significant effects on the resulting rotational transform and magnetic shear. In the finite B plasmas, the magnetic well becomes deeper in both CHS and CHS-qa and its region is expanded in CHS. The existence of co-flowing bootstrap current makes the magnetic well shallow in comparison with that in currentless equilibrium.
机译:描述了CHS恒电子/陀螺仪和CHS-qa准轴对称恒星的新古典自举电流的特征差异及其对MHD平衡的影响。自举电流的方向在很大程度上取决于CHS中的碰撞性,而由于准轴对称性,它在CHS-qa中并不如此。在CHS配置中,似乎增强的颠簸(Bs1)和螺旋纹波的边带分量(By1)在降低磁性几何因子方面起着重要作用,这是评估自举袖带的值并确定其极性的关键因素。理论上预测CHS-qa中的自举电流将比CHS中的自举电流大,并且对所产生的旋转变换和磁剪切产生显着影响。在有限的B等离子体中,CHS和CHS-qa中的磁阱都更深,并且其区域在CHS中扩展。与无电流平衡相比,同向自举电流的存在使磁阱变浅。

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