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首页> 外文期刊>Plasma and Fusion Research >Control of Neoclassical Tearing Mode by Electron Cyclotron Current Drive and Non-Resonant Helical Field Application in ITER
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Control of Neoclassical Tearing Mode by Electron Cyclotron Current Drive and Non-Resonant Helical Field Application in ITER

机译:电子回旋电流驱动和非共振螺旋场在ITER中的新古典撕裂模式控制

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On tokamak plasmas like ITER, it is necessary to stabilize neoclassical tearing mode (NTM) because the NTM reduces plasma temperature and fusion power output. For the analysis of stabilizing NTM in fusion plasmas, the electron cyclotron current drive (ECCD) and the non-resonant external helical field (NRHF) application are simulated using the 1.5-dimensional equilibrium/transport simulation code (TOTAL code). The 3/2 NTM is stabilized by only external helical field, but the 2/1 mode is not stabilized by only external helical field in the present model. The stabilization time becomes shorter by the combination of ECCD and NRHF than that by ECCD alone.
机译:在像ITER这样的托卡马克等离子体上,必须稳定新古典撕裂模式(NTM),因为NTM会降低等离子体温度和聚变功率输出。为了分析聚变等离子体中的稳定NTM,使用1.5维平衡/传输模拟代码(TOTAL代码)对电子回旋加速器电流驱动(ECCD)和非共振外部螺旋场(NRHF)应用进行了模拟。 3/2 NTM仅通过外部螺旋场来稳定,但是在本模型中2/1模式不能仅通过外部螺旋场来稳定。 ECCD和NRHF的组合比单独使用ECCD的稳定时间更短。

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