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Modelling of advanced plasma configurations in SST-1 tokamak

机译:在SST-1托卡马克中对高级等离子体配置进行建模

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Predictive simulations investigating steady-state advanced reversed shear configurations for steady state tokamak (SST-1) in LHCD+ECRH/CD operations are carried out using the TSC+LSC+TORAY-GA code package. We also explore in detail current profile control scenarios using ECCD at various frequency ranges. Our simulations suggest that it is possible to attain high-density (up to ~50% of the Greenwald density limit) operation in LHCD+ECCD plasmas by carefully controlling the density evolution, power and current density profiles and hence the safety factor profile. The reversed shear plasmas are sustained by off-axis lower hybrid current drive (LHCD) and ECCD profiles as well as about 50% bootstrap current fraction which is naturally off-centred. Based on these simulations, we propose and test a novel scheme for control of the safety factor profiles as well as poloidal beta and internal inductance profiles which will be tested in actual SST-1 experiments.
机译:使用TSC + LSC + TORAY-GA代码包进行了针对LHCD + ECRH / CD操作中的稳态托卡马克(SST-1)的稳态高级反向剪切配置的预测模拟。我们还将详细探讨在各种频率范围内使用ECCD的当前轮廓控制方案。我们的模拟表明,通过仔细控制密度变化,功率和电流密度分布以及安全系数分布,可以在LHCD + ECCD等离子体中实现高密度(高达Greenwald密度极限的〜50%)操作。反向剪切等离子体由离轴较低的混合电流驱动(LHCD)和ECCD轮廓以及大约50%的自举电流比例(自然偏心)维持。基于这些模拟,我们提出并测试了一种用于控制安全系数曲线以及多角形β和内部电感曲线的新颖方案,该方案将在实际的SST-1实验中进行测试。

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