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The effect of plasma shape and neutral beam mix on the rotation threshold for RMP-ELM suppression

机译:等离子体形状和中性光束混合对RMP-ELM抑制旋转阈值的影响

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Varying the neutral beam injection (NBI) mix reveals a clear pedestal-top rotation threshold for edge localized mode (ELM) suppression by resonant magnetic perturbations (RMPs). Guided by expectations for the RMP penetration mechanism, the rotation threshold is found to correspond to a critical radius for the E x B rotation zero-crossing. No such critical radius is observed for the electron perpendicular rotation zero-crossing. Varying the amount and ratio of power in different NBI source geometries (termed the NBI mix) also reveals that the rotation threshold can be crossed at widely varying total injected NBI torques. Computing the local torque density at the edge, the rotation threshold is found to be crossed when the local edge NBI torque is negative in nearly all discharges. Reducing the upper triangularity from the ITER-similar value of 0.3 to 0.1 significantly reduces the pedestal height and width. This in turn: (1) increases the rotation threshold and yields a more outward critical E x B rotation zero-crossing location, (2) decreases the density threshold, consistent with a comparable collisionality range at lower pedestal temperatures, and (3) increases the input torque requirement due to observed lower confinement and smaller intrinsic torque. These findings represent an important step along the road to predicting ELM suppression access conditions in future tokamaks such as ITER, where the toroidal rotation is expected to be low and consequently the rotation zero-crossing is far from the pedestal top.
机译:变化中性光束注射(NBI)混合物通过共振磁法扰动(RMP)揭示了边缘局部模式(ELM)抑制的清晰基座旋转阈值。通过对RMP穿透机构的期望引导,发现旋转阈值对应于E×B旋转零交叉的临界半径。对于电子垂直旋转零交叉来说,没有观察到这种临界半径。改变不同Nbi源几何形状(称为NBI混合)中的功率的量和比率也揭示了旋转阈值可以以广泛变化的总喷射的Nbi扭矩交叉。计算边缘处的局部扭矩密度,发现当局部边缘NBI扭矩在几乎所有放电中为负时越过旋转阈值。从浸泡物相似的值0.3至0.1的浸泡距离的上三角形显着降低了基座高度和宽度。这又递转:(1)增加旋转阈值并产生更外向的关键型Xb旋转零交叉位置,(2)降低密度阈值,与较低的基座温度下的可比性碰撞范围一致,(3)增加由于观察到的较低限制和较小的内在扭矩而导致的输入扭矩要求。这些发现者代表了沿着通道来预测未来Tokamak中的ELM抑制接入条件的重要步骤,例如ITER,其中环形旋转预计将低,因此旋转零交叉远离基座顶部。

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