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Sawtooth control using beam ions accelerated by fast waves in the DIII-D tokamak

机译:使用DIII-D托卡马克中的快速波加速的束离子控制锯齿

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The accuracy of the Porcelli sawtooth model is evaluated using realistic numerical calculations for a DIII-D [J. L. Luxon, Nucl. Fusion 42, 614 (2002)] experiment with neutral beam injection and fast wave heating. Simulation results confirm that beam ions accelerated by the fast waves play a crucial role in delaying the normal sawtooth crash and inducing giant sawteeth with large amplitude and long period. A single giant sawtooth period was analyzed in detail in an effort to evaluate the efficacy of the Porcelli model in quantitatively predicting a particular sawtooth crash by evaluating the model through the sawtooth period using equilibria reconstructed from the discharge data. The kinetic stabilizing contribution of fast trapped ions is found to depend strongly on both the experimentally reconstructed magnetic shear at the q=1 surface (s(1)) and the calculated poloidal beta of trapped beam ions inside the q=1 surface. To within estimates of the error from the equilibrium reconstructions and the simulation fast ion particle statistics, the results are consistent with the observed sawtooth crash. The calculations indicate that the sawtooth crash is ultimately triggered by the resistive kink in the ion-kinetic regime after the stabilizing contribution from the fast ions is reduced due to an increase in s(1) as the discharge evolves. (C) 2007 American Institute of Physics.
机译:Porcelli锯齿模型的准确性是使用DIII-D的实际数值计算来评估的[J. L.Luxon,Nucl。 Fusion 42,614(2002)]中性束注入和快速波加热的实验。仿真结果证实,由快波加速的束离子在延迟正常的锯齿碰撞和诱导大幅度长周期的巨大锯齿中起着至关重要的作用。对单个巨型锯齿期进行了详细分析,以评估Porcelli模型在定量预测特定锯齿碰撞方面的功效,方法是使用从放电数据重建的平衡度通过整个锯齿期评估模型。发现快速俘获离子的动力学稳定作用在很大程度上取决于q = 1表面(s(1))上实验重建的磁剪切力和q = 1表面内俘获束离子的计算倍数β。在平衡重建和模拟快速离子粒子统计的误差估计范围内,结果与观察到的锯齿形碰撞一致。计算结果表明,随着放电过程中s(1)的增加,快速离子的稳定作用降低后,离子运动状态下的电阻扭结最终触发了锯齿形碰撞。 (C)2007美国物理研究所。

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