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Study of internal transport barriers in the initial phase of Ohmic discharges in TUMAN-3M

机译:TUMAN-3M欧姆放电初始阶段的内部运输壁垒研究

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摘要

A regime with electron heat confinement improvement was recently found in the initial phase of discharges in the TUMAN-3M tokamak. An internal transport barrier (ITB) formation in this regime was confirmed by Thomson scattering measurements and by transport modelling. Two possible reasons for the ITB formation are discussed in the paper: by reduction of turbulent transport in the presence of low magnetic shear or by plasma sheared rotation. It is demonstrated that low magnetic shear formation is possible in the current ramp-up phase of the Ohmic discharge. The low magnetic shear does not seem to be the only reason for the transport reduction. Results of Doppler reflectometry measurements of poloidal rotation of density fluctuations are presented. It is found that core confinement improvement correlates with the appearance of sheared rotation of the density fluctuations and with a burst of the MHD activity. The ITB formation in the regime seems to be a result of a combined action of reduced magnetic shear and plasma sheared rotation.
机译:最近在TUMAN-3M托卡马克放电的初始阶段发现了一种具有电子热约束改善的机制。通过Thomson散射测量和运输模型确定了在这种情况下内部运输壁垒(ITB)的形成。本文讨论了形成ITB的两个可能原因:在存在低磁剪切力的情况下减少湍流的输送或通过等离子体剪切力的旋转。结果表明,在欧姆放电的电流上升阶段可能形成低磁性剪切。低磁剪似乎不是减少运输的唯一原因。给出了密度波动的极向旋转的多普勒反射测量结果。已经发现,岩心约束的改善与密度波动的剪切旋转的出现以及MHD活动的爆发有关。该状态下的ITB形成似乎是磁剪切和等离子体剪切旋转减少的共同作用的结果。

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