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An intrinsic source of radial electric field and edge flows in tokamaks

机译:托卡马克中径向电场和边缘流的内在来源

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We propose a new mechanism for radial electric fields and edge flows in tokamaks that will also serve as an intrinsic momentum source in systems without an up-down symmetry. An essential feature of toroidal plasmas is that charge-dependent ▽B and curvature drifts would lead to a vertical polarization of the discharge if it were not for the Pfirsch-Schliiter currents that neutralize the resulting charge separation. However, in the presence of collisions, there is a residual vertical electric field that drives an E × B flow in the direction of increasing major radius, regardless of the orientation of the fields and currents. This flow is excluded from the hot core and is localized to the more collisional edge plasma. It has many features in common with the edge flows observed in tokamaks such as C-Mod. In an up-down symmetric geometry it carries no net toroidal angular momentum; however, its viscous interaction with asymmetric boundaries leads to a net momentum input to the plasma. Both this momentum input, and the residual vertical electric field, the source of these flows, may play an important role in the ▽B direction-dependence of the power threshold for the L-H transition.
机译:我们为托卡马克中的径向电场和边缘流提出了一种新的机制,该机制还将用作没有上下对称性的系统中的固有动量源。环形等离子体的基本特征是,如果不使用Pfirsch-Schliiter电流来中和所产生的电荷分离,则取决于电荷的▽B和曲率漂移会导致放电的垂直极化。但是,在存在碰撞的情况下,无论电场和电流的方向如何,都会存在一个残留的垂直电场,该电场会沿大半径增大的方向驱动E×B流动。该流动被从热芯中排除,并且被定位在碰撞边缘更强的等离子体中。它具有与托卡马克观测到的边缘流(例如C-Mod)相同的许多功能。在上下对称的几何形状中,它没有净环形角动量。然而,它与不对称边界的粘性相互作用导致向等离子体输入净动量。动量输入和残余垂直电场(这些流的来源)都可能在L-H跃迁的功率阈值的▽B方向依赖性中起重要作用。

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