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ICRF scenarios for ITER's half-field phase

机译:ICRF的ITER半场阶段的情景

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The non-active operation phase of ITER will be done in H and ~(4)He plasmas at half the nominal magnetic field, B_(0)velence2.65T. At this field and for the given frequency range of the ICRF system (f(velence)40-55MHz), three ICRF heating scenarios are available a priori: (i) Fundamental ICRH of majority H plasmas at f approx= 40MHz, (ii) second harmonic (N(velence)2) ~(3)He ICRH in H plasmas at f(approx=)53MHz and (iii) fundamental minority H heating in ~(4)He plasmas at f(approx=)40MHz. While the latter is expected to perform well for not too large H concentrations, the heating scenarios available for the Hydrogen plasmas are less robust. Recent JET experiments performed in similar conditions to those expected in ITER's half-field phase confirmed the low performance of these two scenarios and numerical simulations have shown that the situation is not much improved in ITER, mainly because of the rather modest plasma temperature and density expected in its initial operation phase. A summary of the main experimental results obtained at JET followed by numerical predictions for ITER's half-field ICRF heating scenarios will be presented.
机译:ITER的非主动操作阶段将在H和〜(4)他等离子体中以标称磁场,B_(0)velence2.65t。在该领域和对于ICRF系统的给定频率范围(F(velence)40-55MHz),有三种ICRF加热方案可获得先验:(i)多数H等离子体的基本ICRH约= 40MHz,(ii)二次谐波(N(柔软)2)〜(3)他在F(约=)53MHz和(iii)基本少数群体H加热〜(4)何地区的少数群体H等离子体(约=)40MHz。虽然预期后者对不太大的H浓度表现良好,但可用于氢等离子体的加热场景不太强劲。最近在艾尔半场阶段的预期的类似条件下进行的射流实验证实了这两种情景的低性能,数值模拟表明,ITER中的情况并不多大,主要是因为预期的温度和密度相当温和的等离子体温度和密度在其初始操作阶段。展示在喷气机上获得的主要实验结果的摘要,然后提出了迭代半场ICRF加热方案的数值预测。

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