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A conceptual system design study for an NBI beamline for the European DEMO

机译:欧洲DEMO的NBI光束线的概念系统设计研究

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Neutral Beam Injection (NBI) as a robust, established heating and current drive (CD) method is considered for the European DEMO. Like on ITER, an NBI system for DEMO will have to use negative ions as the neutralisation efficiency of positive ions vanishes at the required >= 800 keV beam energy. The required specifications of an NBI on DEMO go significantly beyond those on ITER, particularly when NBI is chosen to provide bulk current drive for a steady-state tokamak DEMO. The NBI beamline's power efficiency, on ITER only about 27%, needs to be significantly increased to arrive at a tolerable recirculating power fraction. Envisaged solutions are the addition of energy recovery for the residual ions to a gas neutraliser or the replacement of the gas neutraliser by a photoneutraliser or a beam-driven plasma neutraliser. None of these concepts has been demonstrated on a relevant scale. In this article we outline our approach to a comprehensive system design study in order to explore a broad range of options for each beamline component and their mutual dependences, and we focus on the central role that the choice of the neutraliser concept - where needed in combination with energy recovery - plays for the layout of the whole beamline.
机译:对于欧洲DEMO,考虑将中性束注入(NBI)作为一种可靠的既定加热和电流驱动(CD)方法。像在ITER上一样,用于DEMO的NBI系统将必须使用负离子,因为在要求的电子束能量> = 800 keV时正离子的中和效率将消失。在DEMO上的NBI所需的规格大大超出了ITER上的规格,尤其是在选择NBI为稳态托卡马克DEMO提供大电流驱动时。 NBI束流线的功率效率(仅ITER大约为27%)需要显着提高,以达到可容忍的再循环功率分数。设想的解决方案是为气体中和器增加残留离子的能量回收,或用光中和器或束驱动等离子体中和器代替气体中和器。这些概念都没有在相关规模上得到证明。在本文中,我们概述了我们进行全面系统设计研究的方法,以探讨每个束线组件及其相互依存关系的广泛选择,并且我们将重点放在中和剂概念的选择(在需要结合使用时)的核心作用。具有能量回收功能-占据整个光束线的布局。

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