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首页> 外文期刊>Physics of plasmas >Sheared rotation effects on kinetic stability in enhanced confinement tokamak plasmas, and nonlinear dynamics of fluctuations and flows in axisymmetric plasmas
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Sheared rotation effects on kinetic stability in enhanced confinement tokamak plasmas, and nonlinear dynamics of fluctuations and flows in axisymmetric plasmas

机译:剪切旋转对增强约束托卡马克等离子体动力学稳定性的影响,以及轴对称等离子体脉动和流动的非线性动力学

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摘要

Sheared rotation dynamics are widely believed to have significant influence on experimentally-observed confinement transitions in advanced operating modes in major tokamak experiments, such as the Tokamak Fusion Test Reactor (TFTR) [D. J. Grove and D. M. Meade, Nucl. Fusion 25, 1167 (1985)], with reversed magnetic shear regions in the plasma interior. The high-n toroidal drift modes destabilized by the combined effects of ion temperature gradients and trapped particles in toroidal geometry can be strongly affected by radially-sheared toroidal and poloidal plasma rotation. In previous work with the FULL Linear microinstability code, a simplified rotation model including only toroidal rotation was employed, and results were obtained. Here, a more complete rotation model, which includes contributions from toroidal and poloidal rotation and the ion pressure gradient to the total radial electric field, is used for a proper self-consistent treatment of this key problem. Relevant advanced operating mode cases for TFTR are presented. In addition, the complementary problem of the dynamics of fluctuation-driven ExB flow is investigated by an integrated program of gyrokinetic simulation in annulus geometry and gyrofluid simulation in flux tube geometry. (C) 1998 American Institute of Physics. [References: 48]
机译:人们普遍认为,在主要托卡马克实验中,例如托卡马克聚变试验反应堆(TFTR),剪切旋转动力学对先进操作模式下实验观察到的限制转变具有重大影响。 J. Grove和D. M. Meade,Nucl。 [Fusion 25,1167(1985)],在等离子体内部具有反向的磁剪切区。离子剪切温度和环形等离子体旋转会强烈影响离子温度梯度和环形几何体中捕获的粒子共同作用所造成的不稳定的高n环形漂移模式。在先前使用FULL Linear微不稳定性代码进行的研究中,采用了仅包含环形旋转的简化旋转模型,并获得了结果。在这里,一个更完整的旋转模型,包括从环形和极向旋转和离子压力梯度到总径向电场的贡献,被用于对这个关键问题进行适当的自洽处理。介绍了TFTR的相关高级操作模式案例。此外,通过环空几何中的陀螺动力学模拟和通量管几何中的陀螺流体模拟的集成程序,研究了波动驱动的ExB流动动力学的互补问题。 (C)1998美国物理研究所。 [参考:48]

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