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A comparative study of ideal kink stability in two reactor-relevant tokamak plasma configurations with negative and positive triangularity

机译:两个反应堆相关与阳性三角形的反应堆相关腹菌等离子体配置的理想扭结稳定性的比较研究

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摘要

The effects of an ideal/resistive conducting wall, the drift kinetic resonances, as well as the toroidal plasma flow, on the stability of the ideal external kink mode are numerically investigated for a reactor-relevant tokamak plasma with strongly negative triangularity (NTR) shaping. Comparison is made for a similar plasma equilibrium, but with positive triangularity (PTR). It is found that the ideal wall stabilization is less efficient for the kink stabilization in the NTR plasma due to a less 'external' eigenmode structure compared to the PTR plasma. The associated plasma displacement in the NTR plasma does not 'balloon' near the outboard mid-plane, as is normally the case for the pressure-driven kink-ballooning instability in PTR plasmas, but being more pronounced near the X-points. The toroidal flow plays a similar role for the kink stability for both NTR and PTR plasmas. The drift kinetic damping is less efficient for the ideal external kink mode in the NTR plasma, despite a somewhat larger fraction of the particle trapping near the plasma edge compared to the PTR equilibrium. However, the drift kinetic damping of the resistive wall mode (RWM) in the NTR plasma is generally as efficient as that of the PTR plasma, although the RWM window, in terms of the normalized pressure, is narrower for the NTR plasma.
机译:理想/电阻导电壁,漂移动力学共振以及环形等离子体流动的效果对理想外壳模式的稳定性进行了数量地研究了具有强负三角形(NTR)成型的反应堆相关的与锥形等离子体。对类似的等离子体平衡进行比较,但具有阳性三角形(PTR)。结果发现,由于与PTR等离子体相比,由于较少的“外部”特征模型结构,理想的壁稳定性对于NTR等离子体中的扭结稳定性较小。 NTR等离子体中的相关等离子体位移在舷外中间平面附近没有“气球”,正如PTR等离子体中的压力驱动的扭结稳定性的情况一样,但在X点附近更加明显。环形流动对NTR和PTR等离子体的扭结稳定性起着类似的作用。漂移动力学阻尼对于NTR等离子体中的理想外部扭结模式较低,尽管与PTR平衡相比,等离子体边缘附近的颗粒捕获稍大的颗粒俘获。然而,NTR等离子体中的电阻壁模式(RWM)的漂移动力学阻尼通常与PTR等离子体一样有效,尽管RWM窗口在归一化压力方面是NTR等离子体的较窄。

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