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Inter-edge localized mode pedestal evolution on MAST and impact of resonant magnetic perturbations

机译:MAST上的边缘间局部模式基座演化和共振磁扰动的影响

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The peak pressure gradient in the pedestal (dPe/dψ) on MAST varies little between edge localized modes (ELMs), although it varies between discharges due factors such as gas fuelling and plasma current. The pressure pedestal width in flux space on the high-field side (HFS), both during the inter-ELM period and amongst different plasma discharges is consistent with a scaling of. In flux space very similar dPe/dψ and Δpe are observed on the HFS and low-field side (LFS) in single null configuration. This symmetry is broken by the application of resonant magnetic perturbations (RMPs). During ELM mitigation by application of RMPs changes in the edge transport barrier position and width are observed. These changes are dependent on the intensity of the RMP and on the toroidal location with respect to the RMP phase. An outward displacement of up to 30 mm and increase in the edge pedestal width of up to 50% with respect to the coils case off are observed. Increased particle transport causes a decrease in ne,ped, and hence Pe,ped, as is observed on other devices. The combination of an increase in Δpe on the LFS and decrease in Pe,ped results in significantly reduced LFS dPe/dψ when these perturbations are applied to the plasma edge. A decrease in dPe/dψ on the HFS is also observed due to RMP; however, this decrease is caused solely by the Pe,ped decrease whilst no expansion of Δpe on the HFS is observed.
机译:在MAST上,基座的峰值压力梯度(dPe /dψ)在边缘局部模式(ELMs)之间变化不大,尽管在放电之间由于气体燃料和等离子流等因素而变化。在ELM间期间以及在不同的等离子体放电之间,高场侧(HFS)上的通量空间中的压力基座宽度与的比例一致。在通量空间中,在单零位配置的HFS和低场侧(LFS)上观察到非常相似的dPe /dψ和Δpe。通过应用共振磁扰动(RMP)可以打破这种对称性。在通过施加RMP缓解ELM的过程中,观察到了边缘传输势垒位置和宽度的变化。这些变化取决于RMP的强度以及相对于RMP相位的环形位置。相对于脱落的线圈,观察到的向外位移最大为30 mm,边缘基座宽度增加了50%。如在其他设备上所观察到的,增加的颗粒传输会导致ne,ped的减少,从而导致Pe,ped的减少。当将这些扰动施加到等离子体边缘时,LFS上的Δpe的增加和Pe,ped的减小的组合导致LFS dPe /dψ显着降低。由于RMP,还观察到HFS上的dPe /dψ降低。但是,这种下降仅是由于Pe,ped下降所致,而没有观察到HFS上的Δpe膨胀。

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