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首页> 外文期刊>AIP Advances >Effect of time-varying flow-shear on the nonlinear stability of the boundary of magnetized toroidal plasmas
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Effect of time-varying flow-shear on the nonlinear stability of the boundary of magnetized toroidal plasmas

机译:时变流量剪切对磁化环形等离子体边界非线性稳定性的影响

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We propose a phenomenological yet general model in a form of extended complex Ginzburg-Landau equation to understand edge-localized modes (ELMs), a class of quasi-periodic fluid instabilities in the boundary of toroidal magnetized high-temperature plasmas. The model reproduces key dynamical features of the ELMs (except the final explosive relaxation stage) observed in the high-confinement state plasmas on the Korea Superconducting Tokamak Advanced Research: quasi-steady states characterized by field-aligned filamentary eigenmodes, transitions between different quasi-steady eigenmodes, and rapid transition to non-modal filamentary structure prior to the relaxation. It is found that the inclusion of time-varying perpendicular sheared flow is crucial for reproducing all of the observed dynamical features.
机译:我们提出了一种以延伸的复杂吉丁堡 - Landau方程形式提出了一种现象学然的模型,以了解边缘局部化模式(ELMS),在环形磁化高温等离子体边界中的一类准周期性流体稳定性。该模型再现在韩国超导托卡马克高级研究中观察到的ELMS(最终爆炸性松弛阶段除外)的关键动态特征:准稳态,其特征在于野外对齐的丝状斑块,不同的准则之间的过渡稳定的特征模型,并在放松之前快速过渡到非模态丝结构。发现包含时变的垂直剪切流动对于再现所有观察到的动态特征至关重要。

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