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Potential of ion cyclotron resonance frequency current drive via fast waves in DEMO

机译:在DEMO中通过快速波驱动离子回旋共振频率电流的潜力

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For the continuous operation of future tokamak-reactors like DEMO, non-inductively driven toroidal plasma current is needed. Bootstrap current, due to the pressure gradient, and current driven by auxiliary heating systems are currently considered as the two main options. This paper addresses the current drive (CD) potential of the ion cyclotron resonance frequency (ICRF) heating system in DEMO-like plasmas. Fast wave CD scenarios are evaluated for both the standard midplane launch and an alternative case of exciting the waves from the top of the machine. Optimal ICRF frequencies and parallel wave numbers are identified to maximize the CD efficiency. Limitations of the high frequency ICRF CD operation are discussed. A simplified analytical method to estimate the fast wave CD efficiency is presented, complemented with the discussion of its dependencies on plasma parameters. The calculated CD efficiency for the ICRF system is shown to be similar to those for the negative neutral beam injection and electron cyclotron resonance heating.
机译:为了使未来的托卡马克反应器(例如DEMO)连续运行,需要非感应驱动的环形等离子体电流。由于压力梯度,自举电流和辅助加热系统驱动的电流目前被认为是两个主要选择。本文探讨了类DEMO等离子体中离子回旋共振频率(ICRF)加热系统的电流驱动(CD)电位。针对标准中板发射和从机器顶部激发波浪的另一种情况,评估了快速波浪CD方案。确定最佳的ICRF频率和平行波数以最大化CD效率。讨论了高频ICRF CD操作的局限性。提出了一种估计快速波CD效率的简化分析方法,并补充了其对血浆参数依赖性的讨论。计算出的ICRF系统的CD效率与负中性束注入和电子回旋共振加热相似。

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