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Impact of minority concentration on fundamental (H)D ICRF heating performance in JET-ILW

机译:少数浓度对JET-ILW中基本(H)D ICRF加热性能的影响

摘要

ITER will start its operation with non-activated hydrogen and helium plasmas at a reduced magnetic field of B-0 = 2.65 T. In hydrogen plasmas, the two ion cyclotron resonance frequency (ICRF) heating schemes available for central plasma heating (fundamental H majority and 2nd harmonic He-3 minority ICRF heating) are likely to suffer from relatively low RF wave absorption, as suggested by numerical modelling and confirmed by previous JET experiments conducted in conditions similar to those expected in ITER's initial phase. With He-4 plasmas, the commonly adopted fundamental H minority heating scheme will be used and its performance is expected to be much better. However, one important question that remains to be answered is whether increased levels of hydrogen (due to e. g. H pellet injection) jeopardize the high performance usually observed with this heating scheme, in particular in a full-metal environment. Recent JET experiments performed with the ITER-likewall shed some light onto this question and the main results concerning ICRF heating performance in L-mode discharges are summarized here.
机译:ITER将在磁场强度降低为B-0 = 2.65 T的非活化氢和氦等离子体下开始运行。在氢等离子体中,两种离子回旋共振频率(ICRF)加热方案可用于中央等离子体加热(基本H占多数)数值模型建议并由先前的JET实验(在与ITER初始阶段预期的条件相似的条件下进行)证实,RF和2次谐波He-3少数ICRF加热很可能会遭受相对较低的RF波吸收。对于He-4等离子体,将使用通常采用的基本H少数族裔加热方案,并且预期其性能会更好。但是,仍有待回答的一个重要问题是,增加的氢含量(由于注入H丸)是否会损害通常在该加热方案中观察到的高性能,特别是在全金属环境中。最近对类似ITER的壁进行的JET实验为这个问题提供了一些启示,这里总结了有关L型放电中ICRF加热性能的主要结果。

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