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Analysis of combined fast wave current drive and neutral beam injection in the DIII-D tokamak

机译:DIII-D托卡马克中快速波电流驱动和中性束注入相结合的分析

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摘要

In recent experiments with combined fast wave current drive (FWCD) and deuterium neutral beam injection on the DIII-D tokamak [Luxon , Fusion Technol. 8, 441 (1985)], an enhanced fusion reactivity and fast ion energy content have been observed in the presence of FWCD, with a concomitant low FWCD efficiency [Petty , Radio Frequency Power in Plasmas (AIP, New York, 1997), p. 225]. In this paper, we investigate whether high-harmonic ion cyclotron damping could be responsible for the low FWCD efficiency in these experiments, since a number of high-harmonic hydrogen and deuterium cyclotron resonance layers existed in the plasma. The main analysis tool is the ion cyclotron range of frequencies code PION [Eriksson , Nucl. Fusion 33, 1037 (1993)], modified to allow multiple frequencies simultaneously as was done in the DIII-D experiments. According to the PION modeling, high harmonic damping of fast wave power can give rise to enhanced fusion reactivity and fast ion energy content, which is consistent with the experimental observations. (C) 2002 American Institute of Physics. [References: 18]
机译:在最近的实验中,在DIII-D托卡马克上结合了快速波电流驱动(FWCD)和氘中性束注入[Luxon,Fusion Technol。 8,441(1985)],在存在FWCD的情况下观察到了增强的熔融反应性和快速的离子能量含量,同时伴随着FWCD的低效率[Petty,等离子的射频功率(AIP,纽约,1997),p 。 225]。在本文中,我们研究了在这些实验中高谐波离子回旋加速器阻尼是否可能导致低FWCD效率,因为等离子体中存在许多高谐波氢和氘回旋加速器共振层。主要的分析工具是频率为PION的离子回旋加速器范围[Eriksson,Nucl。 [Fusion 33,1037(1993)],进行了修改,以允许同时进行多个频率测试,如DIII-D实验中所做的那样。根据PION建模,快波功率的高次谐波阻尼可产生增强的聚变反应性和快离子能量含量,这与实验观察结果一致。 (C)2002美国物理研究所。 [参考:18]

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