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Demonstration of particle exhaust control during ELM suppression by resonant magnetic perturbations in DIII-D

机译:在DIII-D中通过共振磁扰动论证了ELM抑制过程中的颗粒排气控制

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A reduction in plasma electron density ('pump-out') during the application of resonant magnetic perturbations (RMPs) on DIII-D precedes the suppression of edge localized modes (ELMs) in discharges with low (≤0.2) electron pedestal collisionalities. The magnitude of the density drop near the plasma pedestal can be up to 30% and as low as ~2% for discharges with similar applied RMP, and thus motivates further study to determine the cause of the variation. Based on an analysis of the global particle balance and measurements of the D_α poloidal distribution, it is shown that the wall inventory can be strongly affected by changing the average triangularity ({δ}) of the discharge. Specifically, particle balance in (δ) = 0.3 discharges shows that the density pump-out was substantially higher than the increase in particle exhaust to the cryo-pumps, i.e. wall pumping was apparently required. On the other hand, particle balance in (δ) = 0.5 discharges shows that the density pump-out was offset by an increase in exhaust to the cryo-pumps, i.e. wall pumping was not required. Correspondingly, the D_α intensity increased by ~50%-100% at (δ) = 0.5 during the RMP phase of the discharge when compared with the RMP phase of a (δ) = 0.3 discharge. Both of these observations imply a possible increase in the neutral particles in the scrape-off-layer. More significantly, this new result demonstrates density pump-out and ELM suppression without significant wall pumping, which is a desirable feature for long-pulse reactors with saturated walls.
机译:在DIII-D上施加共振磁扰动(RMP)期间,等离子体电子密度('Pump-out')的降低先于抑制了具有低(≤0.2)电子基座碰撞的放电中的边缘局域模(ELM)。对于具有类似应用RMP的放电,等离子体基座附近的密度下降幅度可能高达30%,低至〜2%,因此激发了进一步的研究以确定变化的原因。根据对整体颗粒平衡的分析和D_α极谱分布的测量结果,可以看出,壁放电量可以通过改变放电的平均三角形度({δ})受到很大影响。具体地,在(δ)= 0.3次放电中的颗粒平衡表明,密度泵出显着高于向低温泵的颗粒排气的增加,即,显然需要壁泵。另一方面,在(δ)= 0.5次放电中的颗粒平衡表明,密度泵出被向低温泵的排气增加所抵消,即不需要壁泵。相应地,与(δ)= 0.3放电的RMP阶段相比,在放电的RMP阶段,在(δ)= 0.5时,D_α强度增加了〜50%-100%。这两个发现都暗示刮除层中的中性颗粒可能增加。更重要的是,这一新结果证明了密度抽出和ELM抑制而没有明显的壁泵送,这对于具有饱和壁的长脉冲反应器是一个理想的功能。

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