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Effects of trapped electrons on off-axis lower hybrid current drive in tokamaks

机译:捕获电子对托卡马克离轴下混合电流驱动的影响

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The effects of trapped electrons on off-axis lower hybrid current drive (LHCD) in tokamaks are studied, A computer code for solving the Fokker-Planck equation in a toroidal geometry is developed and employed. The code is suitable for various auxiliary heating and current drive schemes in tokamak plasmas. The influence of the resonance regime on the current drive efficiency as well as the influence of trapped particle fraction on the current drive efficiency are emphasized. It is shown that, as an electrostatic force, the lower hybrid wave causes some of the trapped electrons to be untrapped and lose their energy, which can cut the LHCD efficiency by about 30%. The ITER scaling law is also used to estimate the trapped electron effects.
机译:研究了被困电子对托卡马克离轴下混合电流驱动(LHCD)的影响,开发了一种用于求解环形几何中的Fokker-Planck方程的计算机代码。该代码适用于托卡马克等离子体中的各种辅助加热和电流驱动方案。强调了共振状态对电流驱动效率的影响以及被捕获的颗粒分数对电流驱动效率的影响。结果表明,较低的杂波作为静电力会导致某些被俘获的电子被俘获并失去其能量,从而使LHCD效率降低约30%。 ITER比例定律还用于估算俘获的电子效应。

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