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Optimization Study of ICRF Hydrogen Minority Heating in a Deuterium Plasma of EAST

机译:EAST氘等离子体中ICRF氢加热的优化研究。

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摘要

The full wave TORIC code and the Kinetic Fokker-Planck SSFPQL code are combined to perform self-consistent simulations of the ICRF heating in the EAST 2D magnetic configuration. The combined package is applied to the ICRF hydrogen minority heating in a deuterium plasma with the hydrogen concentration up to 10%. The fast wave propagation and absorption properties, power partitions among the plasma species and the RF driven energetic tails have been analyzed. Meanwhile, in order to optimize the ICRF heating, changing the resonance locations has also been considered in EAST plasmas.
机译:将全波TORIC码和Kinetic Fokker-Planck SSFPQL码结合起来,可以对EAST 2D磁性配置中的ICRF加热进行自洽仿真。将合并后的包装应用于氘等离子体中的ICRF少数氢,氢浓度最高为10%。分析了快速波的传播和吸收特性,等离子体种类之间的功率分配以及RF驱动的高能尾波。同时,为了优化ICRF加热,还考虑了在EAST等离子体中改变共振位置。

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