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首页> 外文期刊>Physics of plasmas >Ion cyclotron resonance frequency heating of deuterium plasmas in the Joint European Torus: Modeling of the resonant minority ion distribution function
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Ion cyclotron resonance frequency heating of deuterium plasmas in the Joint European Torus: Modeling of the resonant minority ion distribution function

机译:联合欧洲花托中氘等离子体的离子回旋共振频率加热:共振少数离子分布函数的建模

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Experiments were carried out in JET, the Joint European Torus [J. Wesson, Tokamaks (Clarendon, Oxford, 1997), pp. 581-603], to heat deuterium plasmas using ion cyclotron resonance frequency (ICRF) heating at fundamental hydrogen and second harmonic deuterium frequencies. These plasmas contained two minority resonant ion species, protons, and nonthermal deuterons due to neutral beam injection (NBI). To determine the resonant ion energy distribution functions in such plasmas, an iterative method for solving the hot-plasma dispersion relation was developed using a complex perpendicular wave number in cylindrical geometry. The distribution function of ICRF-heated ions is strongly anisotropic and significantly hotter than that of nonresonating particles. Therefore thermal and overlapping cyclotron harmonics effects were considered in computing wave dispersion and absorption. The formal solution of the lowest-order Fokker-Planck equation is derived for the slowing-down NBI deuterons. In a companion paper these results are applied to interpretation of measurements of distribution functions of ICRF-heated ions in the JET. [S1070-664X(99)00209-8]. [References: 24]
机译:实验是在JET,欧洲联合圆环[J. Wesson,Tokamaks(克拉伦登,牛津,1997年,第581-603页)使用离子回旋共振频率(ICRF)在基本氢和二次谐波氘频率下加热氘等离子体。由于中性束注入(NBI),这些等离子体包含两个少数共振离子物质,质子和非热氘核。为了确定此类等离子体中的共振离子能量分布函数,使用圆柱几何中的复数垂直波数,开发了求解热等离子体弥散关系的迭代方法。 ICRF加热的离子的分布函数具有很强的各向异性,并且比非共振粒子的分布函数明显更热。因此,在计算波的色散和吸收时,应考虑回旋加速器的热和谐波效应。对于减速的NBI氘核,导出了最低阶Fokker-Planck方程的形式解。在随附的论文中,这些结果将用于解释JET中ICRF加热的离子的分布函数的测量结果。 [S1070-664X(99)00209-8]。 [参考:24]

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