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首页> 外文期刊>Plasma physics and controlled fusion >Experimental studies of high-confinement mode plasma response to non-axisymmetric magnetic perturbations in ASDEX Upgrade
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Experimental studies of high-confinement mode plasma response to non-axisymmetric magnetic perturbations in ASDEX Upgrade

机译:高度限制模式等离子体响应在ASDEX升级中非轴对称磁性扰动的实验研究

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摘要

The interaction of externally applied small non-axisymmetric magnetic perturbations (MP) with tokamak high-confinement mode (H-mode) plasmas is reviewed and illustrated by recent experiments in ASDEX Upgrade. The plasma response to the vacuum MP field is amplified by stable ideal kink modes with low toroidal mode number n driven by the H-mode edge pressure gradient (and associated bootstrap current) which is experimentally evidenced by an observable shift of the poloidal mode number m away from field alignment (m = qn, with q being the safety factor) at the response maximum. A torque scan experiment demonstrates the importance of the perpendicular electron flow for shielding of the resonant magnetic perturbation, as expected from a two-fluid MHD picture. Two significant effects of MP occur in H-mode plasmas at low pedestal collisionality, nu(ped)* <= 0.4: (a) a reduction of the global plasma density by up to 61% and (b) a reduction of the energy loss associated with edge localised modes (ELMs) by a factor of up to 9. A comprehensive database of ELM mitigation pulses at low nu* in ASDEX Upgrade shows that the degree of ELM mitigation correlates with the reduction of pedestal pressure which in turn is limited and defined by the onset of ELMs, i.e. a modification of the ELM stability limit by the magnetic perturbation.
机译:通过最近的ASDEX升级的实验回顾和说明了外部应用的小非轴对称磁扰动(MP)与Tokamak高限制模式(H-Mode)等离子体的相互作用。对真空MP场的等离子体响应通过由H模式边缘压力梯度(和相关的引导电流)驱动的低环形模式数N的稳定理想的扭结模式来放大,这是通过针对单位数M的可观察到的偏移来实验地证明的远离场对准(M = QN,Q为安全系数)在响应最大值。扭矩扫描实验证明了垂直电子流来用于屏蔽谐振磁性扰动的重要性,从两种流体MHD图像预期。在低基座接收性的H模式等离子体中发生MP的两种显着效果,NU(PED)* <= 0.4:(a)将全局等离子体密度降低至多61%,(b)减少能量损失与边缘本地化模式(ELM)相关联到9.在ASDEX升级中低NU *的ELM缓解脉冲的综合数据库表明,ELM缓解程度与又被限制的基座压力的降低相关。由ELM发作定义,即通过磁性扰动来修改ELM稳定性限制。

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