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Dynamo-free plasma in the reversed-field pinch: Advances in understanding the reversed-field pinch improved confinement mode

机译:反向场收缩中无发电机等离子体:了解反向场收缩的改进限制模式

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Generation and sustainment of the reversed field pinch (RFP) magnetic configuration normally relies on dynamo activity. The externally applied electric field tends to drive the equilibrium away from the relaxed, minimum energy state which is roughly described by a flat normalized parallel current density profile and is at marginal stability to tearing modes. Correlated fluctuations of magnetic field and velocity create a dynamo electric field which broadens the parallel current density profile, supplying the necessary edge current drive. These pervasive magnetic fluctuations are also responsible for destruction of flux surfaces, relegating the standard RFP to a stochastic-magnetic transport-limited device. Application of a tailored electric field profile (which matches the relaxed current density profile) allows sustainment of the RFP configuration without dynamo-driven edge current. The method used to ascertain that a dynamo-free RFP plasma has been created is reported here in detail. Several confinement improvements during the accompanying periods of low magnetic fluctuations are observed. Namely, the magnetic fluctuation level is reduced to the point where stochastic-magnetic transport is no longer the dominant process in the core and nested flux surfaces are restored in the core of the dynamo-free RFP. (c) 2005 American Institute of Physics.
机译:反向磁场收缩(RFP)磁性配置的产生和维持通常取决于发电机的活动。外部施加的电场趋于使平衡远离松弛的最小能量状态,该状态由平坦的归一化并联电流密度分布大致描述,并且对撕裂模式处于边际稳定性。磁场和速度的相关波动会产生发电机电场,从而扩大并联电流密度分布,提供必要的边沿电流驱动。这些普遍存在的磁波动还导致磁通量表面损坏,从而使标准RFP属于随机磁传输受限设备。量身定制的电场分布图(与松弛电流密度分布图匹配)的应用可维持RFP配置,而无需发电机驱动的边缘电流。此处详细介绍了用于确定已创建无发电机RFP等离子体的方法。在伴随的低磁波动期间,观察到一些限制的改进。即,将磁波动水平减小到这样的程度,在该点上,无磁RFP的核心不再是随机磁传输,而是在磁芯中恢复了嵌套的磁通表面。 (c)2005年美国物理研究所。

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