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Fluid code simulations of radial electric field in the scrape-off layer of JET

机译:JET刮除层中径向电场的流体代码模拟

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摘要

Recent simulations of JET and ASDEX Upgrade plasmas with EDGE2D and SOLPS, respectively, showed that upstream radial electric field in the scrape-off layer (SOL) is substantially below values expected from simple estimates, based on the effects of the potential Debye sheath drop at the target and thermoelectric force (Chankin et al 2007 Nucl. Fusion 47 479). In this paper, dedicated EDGE2D-Nimbus modelling of JET plasmas aimed at identification of key mechanisms responsible for the formation of the radial electric field (E-r) in the main SOL of high recycling divertor plasmas is described. Code runs with different upstream density and input power levels were carried out. The results of the modelling identify the main reason why the predicted E-r values in the SOL are always too low compared with the simple estimates, which is the contribution from the -del parallel to p(e)(e)e term in the equation for parallel electric field (p(e) and n(e)-electron pressure and density). At the same time, it still remains unclear why experimental measurements in tokamak SOLs reveal fairly large E-r values that are in reasonable agreement with the simple estimates. This discrepancy might be attributed to missing elements in the present 2D edge fluid codes, such as the role of plasma fluctuations or non-local kinetic effects of parallel plasma transport from the SOL to the divertor.
机译:最近分别使用EDGE2D和SOLPS进行的JET和ASDEX升级等离子体的仿真表明,根据在20℃时潜在的德拜鞘落的影响,刮除层(SOL)中的上游径向电场大大低于简单估算的预期值。目标和热力(Chankin等人,2007 Nucl。Fusion 47 479)。在本文中,描述了JET等离子体的专用EDGE2D-Nimbus建模,旨在识别负责高循环偏滤器等离子体的主要SOL中径向电场(E-r)形成的关键机制。代码以不同的上游密度运行,并执行了输入功率水平。建模结果确定了SOL中预测Er值总是比简单估计值低的主要原因,这是-del平行于p(e)/ n(e)e项的贡献。平行电场方程(p(e)和n(e)-电子压力和密度)。同时,仍然不清楚为什么托卡马克SOL中的实验测量会显示出相当大的E-r值,该值与简单估计合理地吻合。这种差异可能归因于当前2D边缘流体代码中缺少的元素,例如血浆波动的作用或平行血浆从SOL到分流器的非局部动力学效应。

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