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Drift driven cross-field transport and scrape-off layer width in the limit of low anomalous transport

机译:漂移驱动的横场运输和刮削层宽度在低异常运输的极限下

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The impact of the del B-drift in the cross-field transport and its effect on the density and power scrape-off layer (SOL) width in the limit of low anomalous transport is studied with the fluid code SolEdge2D. In the first part of the work, the simulations are run with an isothermal reduced fluid model. It is found that a del B-drift dominated regime is reached in all geometries studied (JET-like, ASDEX-like and circular analytic geometries), and that the transition toward this regime comes along with the apparition of supersonic shocks, and a complex parallel equilibrium. The parametric dependencies of the SOL width in this regime are investigated, and the temperature and the poloidal magnetic field are found to be the principal parameters governing the evolution of the SOL width. In the second part of this paper, the impact of additional physics is studied (inclusion of the centrifugal drift, self-consistent variation of temperature and the treatment of the neutral species). The addition of centrifugal drift and neutral species are shown to play a role in the establishment of the parallel equilibrium, impacting the SOL's width, although the role of the centrifugal drift is limited to a low diffusion level. Finally, the numerical results are compared with the estimate of the Goldston's heuristic drift based model (HD-model), the starting point of our study, and which has shown good agreement with experimental scaling laws. We find that the particles SOL widths in the del B-drift dominated regime are at least two times smaller than the estimate of the HD-model. Moreover, in the parametric dependencies proposed by the HD-model, the dependency with B-pol is retrieved, but not the one on T.
机译:利用流体代码Solgege2D研究了横场运输中的DEL B漂移及其对低异常传输极限的密度和功率刮削层(溶胶)宽度的影响。在工作的第一部分中,模拟与等温降低的流体模型一起运行。结果发现,在研究的所有几何形状(类似的Asdex-liber和圆形分析几何形状)中达到了Del B漂移主导的制度,并且对该方案的过渡随着超音速冲击的幻影以及复杂的平行均衡。研究了该制度中的溶胶宽度的参数依赖性,并且发现温度和粒子磁场是控制溶胶宽度的演变的主要参数。在本文的第二部分中,研究了额外物理学的影响(包含离心漂移,温度自一致的变化和中性物种的处理)。在建立平行平衡的建立中,施加溶胶的宽度,虽然离心漂移的作用限于低扩散水平,但是在建立平面平衡的角度下发挥作用。最后,将数值结果与Goldston的启发式漂移基于模型(HD-Model)的估计进行了比较,我们研究的起点,与实验缩放法律表现出良好的一致性。我们发现Del B漂移主导地位中的粒子溶胶宽度比HD模型的估计小至少两倍。此外,在HD模型提出的参数依赖项中,检索与B-POL的依赖性,但不是在T上的依赖性。

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