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Stability of tokamak equilibrium with internal transport barrier against high-n MHD ballooning mode

机译:具有内部运输壁垒的托卡马克平衡对高n MHD气球膨胀模式的稳定性

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摘要

A new eigen-mode equation for the tokamak high-n (the toroidal mode number) ideal magnetohydrodynamic (MHD) ballooning mode in tokamak plasmas is derived to include the toroidal effects that are significant for stability of configurations with internal transport barriers (ITBs). For tokamak equilibria of shift circular flux surfaces, these toroidal effects basically are the finite inverse aspect ratio and the Shalranov shift. The former yields the averaged favorable curvature stabilization while the latter further strengthens this effect, leading to a low shear stable channel connecting the first and second stability regions, and to the shrinkage of unstable region in the (s, alpha) diagram. The dependence of the critical shear, below which the plasma is stable, on these effects is given. These results are important for understanding the ITB physics to some regards.
机译:推导了托卡马克等离子体中的托卡马克高n(理想环模数)理想磁流体动力学(MHD)膨胀模式的新本征模方程,其中包括了对于具有内部传输壁垒(ITB)的配置稳定性至关重要的环形效应。对于位移圆通量表面的托卡马克平衡,这些环面效应基本上是有限的反长宽比和Shalranov位移。前者产生平均的有利曲率稳定,而后者进一步增强了这种效果,导致连接第一和第二稳定区域的低剪切稳定通道,并导致(s,alpha)图中不稳定区域的收缩。给出了临界剪切的依赖性,在临界剪切以下,等离子体是稳定的,取决于这些效应。这些结果对于在某种程度上理解ITB物理非常重要。

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