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Overview of the RFX-mod fusion science activity

机译:RFX-mod融合科学活动概述

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This paper reports the main recent results of the RFX-mod fusion science activity. The RFX-mod device is characterized by a unique flexibility in terms of accessible magnetic configurations. Axisymmetric and helically shaped reversed-field pinch equilibria have been studied, along with tokamak plasmas in a wide range of q(a) regimes (spanning from 4 down to 1.2 values). The full range of magnetic configurations in between the two, the so-called ultra-low q ones, has been explored, with the aim of studying specific physical issues common to all equilibria, such as, for example, the density limit phenomenon. The powerful RFX-mod feedback control system has been exploited for MHD control, which allowed us to extend the range of experimental parameters, as well as to induce specific magnetic perturbations for the study of 3D effects. In particular, transport, edge and isotope effects in 3D equilibria have been investigated, along with runaway mitigations through induced magnetic perturbations. The first transitions to an improved confinement scenario in circular and D-shaped tokamak plasmas have been obtained thanks to an active modification of the edge electric field through a polarized electrode. The experiments are supported by intense modeling with 3D MHD, gyrokinetic, guiding center and transport codes. Proposed modifications to the RFX-mod device, which will enable further contributions to the solution of key issues in the roadmap to ITER and DEMO, are also briefly presented.
机译:本文报告了RFX-mod融合科学活动的最新主要成果。 RFX-mod设备在可访问的磁性配置方面具有独特的灵活性。已经研究了轴对称和螺旋形反向场收缩收缩平衡,以及在各种q(a)态(从4降到1.2值)中的托卡马克等离子体。为了研究所有平衡共同的特定物理问题,例如密度极限现象,已经探究了介于两者之间的全部磁配置,即所谓的超低q磁。强大的RFX-mod反馈控制系统已被用于MHD控制,这使我们能够扩展实验参数的范围,并诱导特定的磁扰动来研究3D效果。特别是,已经研究了3D平衡中的传输,边缘和同位素效应,以及通过感应磁扰动的失控缓解。由于对通过极化电极的边缘电场的主动修改,已经获得了在圆形和D形托卡马克等离子体中改善封闭条件的第一个过渡。实验得到了3D MHD,陀螺动力学,导向中心和运输代码的严格建模的支持。还简要介绍了对RFX-mod设备的拟议修改,这将为解决ITER和DEMO路线图中的关键问题提供进一步的帮助。

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