Disappearance of dimits shift in realistic fusion reactor plasmas with negative magnetic shear

IF 3.5 1区 物理与天体物理 Q1 PHYSICS, FLUIDS & PLASMAS Nuclear Fusion Pub Date : 2024-09-06 DOI:10.1088/1741-4326/ad703d
Dingkun Yang, Shengming Li, Yong Xiao, Zhihong Lin
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Abstract

This study employs gyrokinetic simulations to investigate ion temperature gradient (ITG) turbulence in realistic fusion reactor plasmas featuring reversed magnetic shear. The weakly negative magnetic shear is observed to be more stable for the ITG instability than strongly positive shear in this equilibrium configuration, primarily stemming from the scarcity of mode rational surfaces induced by the weak negative shear. This superiority in suppression for the negative shear persists in nonlinear turbulence with zonal flow artificially eliminated, where the emergence of turbulence solitons is observed and found associated with locally dense mode rational surfaces. However, the difference in transport levels among different magnetic shears diminishes in the presence of self-consistently generated zonal flow, accompanied by the disappearance of turbulence solitons. The nonlinear generation of zonal flow is found to be significantly affected by the magnetic shear. The study reveals a remarkable phenomenon that the Dimits shift no longer exists for negative magnetic shear, which is attributed to the weakness of the zonal flow generation near the ITG marginal stability.
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在具有负磁剪切力的现实聚变反应堆等离子体中二维位移的消失
本研究利用陀螺动力学模拟来研究具有反向磁切变的现实聚变反应堆等离子体中的离子温度梯度(ITG)湍流。在这种平衡构型中,观察到弱负磁剪切比强正剪切对 ITG 不稳定性更稳定,这主要源于弱负剪切诱发的模式合理面的稀缺性。在人为消除了带状流的非线性湍流中,这种抑制负剪切力的优势依然存在,在这种情况下,可以观察到湍流孤子的出现,并发现它与局部密集的有理模式表面有关。然而,在自洽地产生带状流的情况下,不同磁剪切之间的传输水平差异会减小,同时湍流孤子也会消失。研究发现,带状流的非线性产生受到磁切变的显著影响。研究揭示了一个显著的现象,即在负磁剪切时不再存在迪米兹偏移,这归因于在 ITG 边际稳定性附近带状流生成的弱点。
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来源期刊
Nuclear Fusion
Nuclear Fusion 物理-物理:核物理
CiteScore
6.30
自引率
39.40%
发文量
411
审稿时长
2.6 months
期刊介绍: Nuclear Fusion publishes articles making significant advances to the field of controlled thermonuclear fusion. The journal scope includes: -the production, heating and confinement of high temperature plasmas; -the physical properties of such plasmas; -the experimental or theoretical methods of exploring or explaining them; -fusion reactor physics; -reactor concepts; and -fusion technologies. The journal has a dedicated Associate Editor for inertial confinement fusion.
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