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Overview of HL-2A recent experiments

机译:HL-2A最新实验概述

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The mission of HL-2A is to explore the key physical topics relevant to ITER and to the advanced tokamak operation (e.g. the operation of future HL-2M), such as the access of H-mode, energetic particle physics, edge-localized mode (ELM) mitigation/suppression and disruption mitigation. Since the 2016 Fusion Energy Conference, the HL-2A team has focused on the investigations on the following areas: (i) pedestal dynamics and L-H transition, (ii) techniques of ELM control, (iii) turbulence and transport, (iv) energetic particle physics. The HL-2A results demonstrated that the increase of mean E x B shear flow plays a key role in triggering L-I and I-H transitions, while the change of E x B flow is mainly induced by the ion pressure gradient. Both mitigation and suppression of ELMs were realized by laser blow-off seeded impurity (Al, Fe, W). The 30% Ne mixture supersonic molecular beam injection seeding also robustly induced ELM mitigation. The ELMs were mitigated by low-hybrid current drive. The stabilization of m = 1/1 ion fishbone activities by electron cyclotron resonance heating was found on the HL-2A. A new m = 2/1 ion fishbone activity was observed recently, and the modelling indicated that passing fast ions dominantly contribute to the driving of 2/1 fishbone. The non-linear coupling between the toroidal Alfven eigenmode and tearing mode (TM) led to the generation of a high frequency mode with the toroidal mode number n = 0. The turbulence was modulated by TM when the island width exceeds a threshold and the modulation is localized merely in the inner area of the islands. Meanwhile, turbulence radial spread took place across the island region.
机译:HL-2A的任务是探索与ITER和高级托卡马克行动(例如,未来HL-2M的行动)相关的关键物理主题,例如H模式的访问,高能粒子物理学,边缘定位模式(ELM)缓解/抑制和破坏缓解。自2016年Fusion Energy会议以来,HL-2A团​​队专注于以下领域的研究:(i)基座动力学和LH过渡,(ii)ELM控制技术,(iii)湍流和运输,(iv)充满活力粒子物理学。 HL-2A结果表明,平均E x B流量的增加在触发L-I和I-H跃迁中起关键作用,而E x B流量的变化主要是由离子压力梯度引起的。 ELM的缓解和抑制都是通过激光吹除种子杂质(Al,Fe,W)来实现的。 30%Ne混合超音速分子束注入播种也强烈诱导了ELM缓解。低混合电流驱动减轻了ELM。在HL-2A上发现通过电子回旋共振加热使m / n = 1/1离子鱼骨活性稳定。最近观察到一种新的m / n = 2/1离子鱼骨活性,该模型表明,通过的快离子主要推动2/1鱼骨的驱动。环形Alfven本征模式与撕裂模式(TM)之间的非线性耦合导致产生了环形模式编号n = 0的高频模式。当岛宽超过阈值时,湍流由TM调制,并且调制仅局限于岛屿的内部区域。同时,湍流径向扩散发生在整个岛区。

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