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首页> 外文期刊>Physics of plasmas >Collisionless trapped electron and ion temperature gradient modes in an advanced tokamak equilibrium
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Collisionless trapped electron and ion temperature gradient modes in an advanced tokamak equilibrium

机译:先进托卡马克平衡中无碰撞俘获的电子和离子温度梯度模式

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摘要

The linear stability of coupled collisionless trapped electron (TE) and ion temperature gradient (ITG) modes is investigated in an International Thermonuclear Experimental Reactor [C. Gormezano , Nucl. Fusion 47, S285 (2007)]-like magnetic field configuration. An advanced fluid model in the electrostatic limit and the ballooning mode formalism are used to derive an eigenvalue equation. The growth rates and real frequencies of the most unstable modes and their eigenfunctions are calculated. The coexistence of unstable ITG and TE modes and their relative strengths with respect to the fraction of trapped electrons, wave vector, and local plasma parameters, such as density gradient, electron/ion temperature gradient, and ion to electron temperature ratio are analyzed. The influence of geometrical factors, such as local/global magnetic shear and magnetic field curvature on both ITG and TE modes is also discussed.
机译:在国际热核实验反应堆中研究了无碰撞俘获电子(TE)和离子温度梯度(ITG)耦合模式的线性稳定性。戈尔梅扎诺[Fusion 47,S285(2007)]样的磁场配置。使用静电极限中的高级流体模型和膨胀模式形式来导出特征值方程。计算了最不稳定模式及其特征函数的增长率和实际频率。分析了不稳定ITG和TE模式的共存及其相对于捕获电子分数,波矢和局部等离子体参数(例如密度梯度,电子/离子温度梯度和离子与电子温度比)的相对强度。还讨论了诸如局部/全局磁剪切和磁场曲率等几何因素对ITG和TE模式的影响。

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