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Three-dimensional transport of neutral particles in the CHS edge region

机译:CHS边缘区域中性粒子的三维传输

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We used Monte Carlo simulation code DEGAS and studied the neutral particle behavior in the Compact Helical System (CHS) three-dimensionally. In contrast to other helical devices, the CHS plasma in the standard configuration has contact with the inner vacuum vessel wall like the material limiter used in many Tokamaks and the neutral recycling becomes dominant there. As the intensity of neutral recycling changes also along toroidal direction, we extended our previous simulation model geometry three-dimensionally and compared the results of these models. We found the variation of the gap between the vacuum wall and main plasma enhanced toroidal transport of hydrogen molecules and atoms. As the formation of the edge transport barrier (EBT) discovered recently in CHS is characterized by a clear drop in H alpha emissions, it is interesting to study the relationship with the profile of atomic/molecular hydrogen and the H alpha emission profile. We estimated emission not only from excited hydrogen atoms but also from dissociated molecules with a collisional radiation model. We found that our H alpha detector signal in CHS mostly came from excited atoms and that the emission profile largely changed with the ETB formation.
机译:我们使用了蒙特卡罗模拟代码DEGAS,并在三维螺旋系统(CHS)中三维研究了中性粒子的行为。与其他螺旋设备相比,标准配置的CHS等离子体与内部真空容器壁接触,就像许多托卡马克所使用的材料限制器一样,中性回收在此占主导地位。由于中性回收强度也沿环形方向变化,我们在三维上扩展了先前的仿真模型几何形状,并比较了这些模型的结果。我们发现真空壁和主等离子体之间的间隙变化增强了氢分子和原子的环形传输。由于最近在CHS中发现的边缘传输势垒(EBT)的形成具有H alpha排放量明显下降的特征,因此研究与原子/分子氢的分布和H alpha排放分布的关系很有趣。我们不仅估计了激发氢原子的发射,还估计了碰撞辐射模型的离解分子的发射。我们发现,CHS中的H alpha检测器信号主要来自激发原子,并且发射曲线随ETB的形成而发生很大变化。

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