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Equations for the evolution of the radial electric field and poloidal rotation in toroidally symmetric geometry

机译:环形对称几何中径向电场和极向旋转的演化方程

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A set of three coupled ordinary differential equations that give the evolution of the density, the radial electric field, and poloidal plasma rotation are derived from the continuity equation and momentum balance. They include the effect of those processes considered to be of importance for the L-(low) to H-(high) mode transition: neutral friction, neoclassical viscosity, the radial pressure gradient, orbit losses, a radial current through a probe, anomalous stresses, and Stringer spin up. The equations are valid for arbitrary toroidally symmetric geometry and include effects of non-uniformity (of for instance the neutral friction) in the magnetic surface. As an example, nan-uniform neutral friction in an elongated geometry is discussed. (C) 1998 American Institute of Physics. [References: 8]
机译:从连续性方程和动量平衡中导出了一组三个耦合的常微分方程,它们给出了密度,径向电场和等离子旋转的演化。它们包括那些对L-(低)到H-(高)模式过渡很重要的过程的影响:中性摩擦,新古典粘度,径向压力梯度,轨道损失,通过探头的径向电流,异常压力,斯金格转起来。该方程对于任意的环形对称几何形状都是有效的,并且包括磁性表面中的不均匀性(例如中性摩擦)的影响。作为示例,讨论了细长几何形状中的纳米均匀中性摩擦。 (C)1998美国物理研究所。 [参考:8]

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