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Modelling the ion source for ITER NBI: from the generation of negative hydrogen ions to their extraction

机译:ITER NBI的离子源建模:从负氢离子的产生到提取

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The neutral beam injection (NBI) system for ITER is based on a large (Asource = 1.9 × 0.9m~2) negative hydrogen or deuterium ion source. In this source negative ions are produced in a low-pressure (p_(fill) ≈ 0.3 Pa) plasma by conversion of atoms and protons on a caesiated molybdenum surface with low work function. Then the negative ions are transported through the plasma to the extraction system where extraction of these ions and co-extraction of electrons also take place. This paper describes the status of the modelling activities connected with the negative ion test facilities of IPP Garching. It is illustrated that these modelling activities constitute a strong support of the experimental activities connected with the development of the negative ion source for ITER NBI. Several numerical codes developed in the past years--in close collaboration with the experiment--and their results are introduced. Focus is laid on the production, transport and extraction of negative hydrogen ions and on the inevitable co-extraction of electrons.
机译:ITER的中性束注入(NBI)系统基于大型(Asource = 1.9 × 0.9m~2)负氢或氘离子源。在这种源中,负离子是在低压(p_(填充)≈0.3 Pa)等离子体中通过原子和质子在具有低功函数的钼表面上的转化而产生的。然后负离子通过等离子体输送到提取系统,在那里还进行这些离子的提取和电子的共提取。本文描述了与IPP Garching的负离子测试设施相关的建模活动的状态。由此可以看出,这些建模活动有力地支持了与ITER NBI负离子源开发相关的实验活动。在过去几年中,与实验密切合作开发了几种数字代码,并介绍了它们的结果。重点放在负氢离子的产生、传输和提取以及不可避免的电子共提取上。

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