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Controlling the internal transport barrier oscillations in high-performance tokamak plasmas with a dominant fraction of bootstrap current

机译:通过自举电流的主要部分控制高性能托卡马克等离子体的内部传输垒振荡

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摘要

It is shown that relaxation oscillations associated with repetitive internal transport barrier (ITB) buildup and collapse in high-performance, overdriven tokamak plasmas, with ion-cyclotron resonance heating (ICRH), neutral-beam injection (NBI) and lower-hybrid current drive (LHCD), and with a dominant fraction of bootstrap current, can be overcome if the LHCD power is sufficiently high. This result has been obtained using a benchmarked, fully predictive transport model iterated with given ICRH profiles and self-consistently with NBI and LHCD modules, the stabilizing role of the E x B flow shear being combined with that of reversed magnetic shear in the simulation of ITB dynamics.
机译:结果表明,在离子加速器共振加热(IC​​RH),中性束注入(NBI)和低杂化电流驱动的高性能,过度驱动的托卡马克等离子体中,与重复内部传输壁垒(ITB)的建立和崩溃相关的弛豫振荡如果LHCD功率足够高,则可以克服(LHCD)和自举电流占主导地位的问题。使用基准化,完全预测性的运输模型,并根据给定的ICRH曲线进行了迭代,并与NBI和LHCD模块自洽地获得了该结果,E x B流动剪切的稳定作用与反向磁剪切的稳定作用相结合。 ITB动态。

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