论文标题
各向异性对ITER场景的影响
The impact of anisotropy on ITER scenarios
论文作者
论文摘要
我们报告各向异性对Tokamak血浆配置和稳定性的影响。我们的重点是分析各向异性对ITER前融合功率操作的影响5〜ma,$ b = 1.8 $ 〜T ICRH方案。为了建模ITER场景,开发了重新映射工具,以区分压力各向异性的影响与由各向异性修饰的电流轮廓引起的磁几何变化的影响。迭代迭代了各向异性修饰的电流轮廓,以产生具有匹配的热能的相同$ Q $配置文件。该分析是迈出平衡的一步,对于规定的情况而言,在动力学上是自洽的。我们发现了从压力表面的磁通表面的特征分离,以及$ t _ {\ parallel}> t_ \ perp $($ t _ {\ Parallel} <t_ \ perp $)的峰值密度的舷外(内侧)偏移。多型电流轮廓的差异很明显,尽管没有球形托卡马克的明显。我们发现,在各向异性存在下,不可压缩的连续体在很大程度上没有变化,并且间隙模式的模式结构在很大程度上没有变化。但是,压缩分支在连续体中表现出显着差异。我们报告这些修改的含义。
We report on the impact of anisotropy to tokamak plasma configuration and stability. Our focus is on analysis of the impact of anisotropy on ITER pre-fusion power operation 5~MA, $B=1.8$~T ICRH scenarios. To model ITER scenarios remapping tools are developed to distinguish the impact of pressure anisotropy from the change in magnetic geometry caused by an anisotropy-modified current profile. The remappings iterate the anisotropy-modified current profile to produce the same $q$ profile with matched thermal energy. The analysis is a step toward equilibria that are kinetically self-consistent for a prescribed scenario. We find characteristic detachment of flux surfaces from pressure surfaces, and an outboard (inboard) shift of peak density for $T_{\parallel}>T_\perp$ ( $T_{\parallel}<T_\perp$). Differences in the poloidal current profile are evident, albeit not as pronounced as for the spherical tokamak. We find that the incompressional continuum is largely unchanged in the presence of anisotropy, and the mode structure of gap modes is largely unchanged. The compressional branch however exhibits significant differences in the continuum. We report on the implication of these modifications.