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Comparison of 2D simulations of detached divertor plasmas with divertor Thomson measurements in the DIII-D tokamak

机译:DIII-D托卡马克中分离的偏滤器等离子体的二维模拟与偏滤器Thomson测量的比较

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Highlights ? Two-dimensional plasmaeutral transport simulations of the scrape-off-layer/divertor plasma are compared with Divertor Thomson scattering measurements for DIII-D H-mode discharges. Experimental inner/outer divertor plasma and radiation profile asymmetries resulting from changing the direction of the toroidal magnetic field are qualitatively reproduced by the simulations. Steady-state detached plasma solutions are found when increasing the midplane separatrix density beyond a critical value, and that density is within 35% of the experimental measured separatrix density for detachment. The critical density depends on the impurity radiation and pumping models. Abstract A modeling study is reported using new 2D data from DIII-D tokamak divertor plasmas and improved 2D transport model that includes large cross-field drifts for the numerically difficult low anomalous transport regime associated with the H-mode. The data set, which spans a range of plasma densities for both forward and reverse toroidal magnetic field ( B t ), is provided by divertor Thomson scattering (DTS). Measurements utilizing X-point sweeping give corresponding 2D profiles of electron temperature ( T e ) and density ( n e ) across both divertor legs for individual discharges. The simulations focus on the open magnetic field-line regions, though they also include a small region of closed field lines. The calculations show the same features of in/out divertor plasma asymmetries as measured in the experiment, with the normal B t direction (ion ? B drift toward the X-point) having higher n e and lower T e in the inner divertor leg than outer. Corresponding emission data for total radiated power shows a strong inner-divertor/outer-divertor asymmetry that is reproduced by the simulations. These 2D UEDGE transport simulations are enabled for steep-gradient H-mode conditions by newly implemented algorithms to control isolated grid-scale irregularities.
机译:强调 ?将刮除层/偏滤器等离子体的二维等离子体/中性传输模拟与DIII-D H模式放电的Divertor Thomson散射测量结果进行了比较。通过模拟定性地再现了由于改变环形磁场的方向而导致的实验内部/外部偏滤器等离子体和辐射轮廓的不对称性。当将中平面分离密度增加到超过临界值时,就会发现稳态分离的血浆溶液,并且该密度在实验测量的分离分离密度的35%以内。临界密度取决于杂质辐射和泵浦模型。摘要使用DIII-D托卡马克偏滤器等离子体的新2D数据和改进的2D传输模型报告了建模研究,该模型包括与H模式相关的数值困难的低异常传输体制的大跨场漂移。该数据集涵盖了正向和反向环形磁场(B t)的一系列等离子体密度,由分散器Thomson散射(DTS)提供。利用X点扫描进行的测量给出了两个分流器支腿上各个放电的电子温度(T e)和密度(n e)的相应二维曲线。尽管它们还包括一小部分封闭的磁力线,但是模拟着重于开放的磁力线区域。计算结果表明,在实验中测得的进/出分流器等离子体不对称性特征相同,法线Bt方向(离子?B向X点漂移)在内部分流器支腿中比在外部具有更高的ne和更低的T e。 。相应的总辐射功率的发射数据显示出强烈的内部偏光器/外部偏光器不对称性,该不对称性通过仿真得到了再现。通过新实施的算法来控制孤立的网格尺度不规则性,这些2D UEDGE传输模拟可用于陡峭的H模式条件。

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