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The full-size source and injector prototypes for ITER neutral beams

机译:用于ITER中性光束的全尺寸放射源和注入器原型

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摘要

The development of the NBI systems for ITER requires unprecedented parameters (40A of negative ion current accelerated up to 1MV for one hour) so that a test facility is in the final phase of construction at Consorzio RFX (Padova, Italy), housing two experiments. A full-size negative ion source, SPIDER, aims at demonstrating the creation and extraction of a D-/H- current up to 50/60A on a wide surface (more than 1m2) with uniformity within 10 %. The second experimental device is the prototype of the whole ITER injector, MITICA, aiming to develop the knowledge and the technologies to guarantee the successful operation of the two injectors to be installed in ITER, including the capability of 1MV voltage holding at low pressure. The key component of the system is the beam source, whose design results from a trade-off between requirements of the optics and real grids with finite thickness and thermo-mechanical constraints due to the cooling needs and the presence of permanent magnets. Numerical simulations are a necessary supplement to the experimental effort to optimise the accelerator optics and to estimate heat loads and currents on the various surfaces. In this paper the main requirements for ITER NBI will be discussed. The design and the status of the main components and systems will be described. Particularly a review of the accelerator physics and a comparison between the designs of the SPIDER and MITICA accelerators are presented. Complex network theory will be applied to the NBI system in order to identify the hidden functional relationships and the most important parameters for the operation. © 2016 The Japan Society of Plasma.
机译:用于ITER的NBI系统的开发需要空前的参数(负离子电流40A加速至1MV,持续一小时),因此测试设施处于Consorzio RFX(意大利帕多瓦)的建设的最后阶段,可进行两次实验。全尺寸负离子源SPIDER旨在演示在宽广的表面(大于1m2)上创建和提取高达50 / 60A的D- / H电流,且均匀度在10%以内。第二个实验装置是整个ITER喷射器MITICA的原型,旨在开发知识和技术以确保将两个喷射器成功安装在ITER中,包括在低压下保持1MV电压的能力。该系统的关键组件是束源,束源的设计是由于冷却需求和永磁体的存在,需要在光学器件和具有有限厚度的实际栅格之间进行权衡,并且需要进行热机械约束。数值模拟是对实验工作的必要补充,以优化加速器光学系统并估算各种表面上的热负荷和电流。本文将讨论ITER NBI的主要要求。将描述主要组件和系统的设计以及状态。特别介绍了加速器的物理原理,以及SPIDER和MITICA加速器的设计之间的比较。复杂网络理论将被应用于NBI系统,以识别隐藏的功能关系和最重要的操作参数。 ©2016日本等离子体学会。

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