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APS -59th Annual Meeting of the APS Division of Plasma Physics - Event - Effects of external 3D fields on the core of high-beta hybrid tokamak plasmas

机译:APS-等离子体物理APS分部第59届年会-事件-外部3D场对高β混合托卡马克等离子体核心的影响

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摘要

The core of high-beta hybrid tokamaks is sensitive to 3D fields, due to the response of a marginally-stable kink with large m=1=1 component as the minimum safety factor approaches unity. Helical core displacements of 1-2cm impact various quantities, as found in ASDEX Upgrade by probing the plasma with n=1 fields: central electron and ion temperature is reduced, causing confinement degradation; core rotation is braked, leading to performance-limiting 2/1 modes as rotation is roughly halved; outward W transport occurs, a potentially beneficial effect. Due to n=1 field amplification, these effects are largest near beta limits and error field correction is applied to minimize them. A modelling effort is ongoing to explain these results. Rotation braking is compared to neoclassical toroidal viscosity predicted by the MHD-kinetic hybrid code MARS-K. The drift-kinetic code NEO-2 is used to evaluate both NTV and the neoclassical W transport in the helical core, represented by a 3D equilibrium from V3FIT-VMEC.
机译:高β混合托卡马克的核心对3D场敏感,这是因为随着最小安全系数趋于一致,具有大m = 1 / n = 1分量的边缘稳定的扭结的响应。 1-2cm的螺旋形核位移影响各种数量,如ASDEX升级版中通过用n = 1场探测等离子体来发现的:中心电子和离子温度降低,导致限制条件降低;核心旋转被制动,由于旋转大致减半,导致性能受限的2/1模式;发生向外的W传输,可能产生有益的影响。由于n = 1场放大,这些影响在β极限附近最大,因此应用误差场校正将其最小化。正在进行建模工作以解释这些结果。将旋转制动与由MHD-动力学混合代码MARS-K预测的新古典环形粘度进行比较。漂移动力学代码NEO-2用于评估NTV和螺旋芯中的新古典W运移,由V3FIT-VMEC的3D平衡表示。

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