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Effects of the non-perturbative mode structure on energetic particle transport

机译:非摄动模式结构对高能粒子输运的影响

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Energetic particles (EPs) are known to change the properties of shear Alfven waves in tokamaks, and for this reason non-perturbative models have to be used to describe their linear and non-linear evolution. In this work, mode structures distortion with symmetry breaking properties featured by a finite radial wave phase velocity due to EP effects are considered. A mode structure of the form A(s) = e~(-σ(s-s_0))~2 with complex parameters σ and s_0 is used, to describe not only the width (∝ 1/(Re{σ})~(1/2)) and the mean location (Re{s_0}) of the bell-shaped radial structure, but also the radial phase variations (Im{σ}, Im{s_0}), where s is the normalized radial coordinate. The values of (σ, s_0) are fitted from the results given by the gyrokinetic eigenvalue code LIGKA. The impact on EP transport is investigated using the drift-kinetic code HAGIS. The effects of the mode structure symmetry breaking on the mode saturation level and the EP transport are analysed. In the presence of mode structure symmetry breaking which is relevant to the simulation and experimental observations, the growth rate as well as the particle and energy transport level can vary by ~10%. The velocity-space averaged parallel velocity of EPs in the inner region s = 0.2 ~ 0.5 can change its sign for different mode structures, demonstrating the importance of the mode structure symmetry breaking on EP toroidal velocity reversal. This large effect (-100%) on the mean parallel flow could have implications for EP current drive and the transport in the burning plasmas.
机译:已知高能粒子(EPs)会改变托卡马克中的Alfven剪切波的特性,因此,必须使用非微扰模型来描述其线性和非线性演化。在这项工作中,考虑了由于EP效应而具有以有限的径向波相速度为特征的具有对称破坏特性的模式结构失真。使用具有复杂参数σ和s_0的形式为A(s)= e〜(-σ(s-s_0))〜2的模式结构,不仅描述宽度(∝ 1 /(Re {σ})〜 (1/2))和钟形径向结构的平均位置(Re {s_0}),还有径向相位变化(Im {σ},Im {s_0}),其中s是归一化的径向坐标。 (σ,s_0)的值是根据陀螺运动特征值代码LIGKA给出的结果拟合的。使用漂移动力学代码HAGIS研究了对EP传输的影响。分析了模式结构对称性破坏对模式饱和度和EP传输的影响。在存在与模拟和实验观察相关的模式结构对称性破坏的情况下,生长速率以及颗粒和能量传输水平可变化约10%。内区s = 0.2〜0.5时EP的速度空间平均平行速度可以改变其符号,以适应不同的模态结构,这证明了对称结构对称性破坏对EP环面速度反转的重要性。这种对平均平行流的巨大影响(-100%)可能对EP电流驱动和燃烧等离子体中的传输有影响。

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