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Overview of Activities for the Wendelstein 7-X Scraper Element Collaboration

机译:WENDELSTEIN 7-X Scraper元素协作活动概述

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The Wendelstein 7-X (W7-X) stellarator is in final stages of commissioning, and will begin operation in the last half of 2015. In this first phase the machine will operate with a limiter, and will be restricted to low power and short pulse. But in 2019, plans are for an actively cooled divertor to be installed, and the machine will operate in steady-state at full power. Recently, plasma simulations have indicated that, in this final operational phase, a bootstrap current may evolve in certain scenarios. This will cause the sensitive ends of the divertor target to be overloaded beyond their qualified limit. A high heat flux scraper element (HHF-SE) has been proposed in order to take up some of the convective flux and reduce the load on the divertor. In order to examine whether the HHF-SE will be able to effectively reduce the plasma flux in the divertor region of concern, and to determine how the pumping effectiveness will be affected by such a component, it is planned to include a test divertor unit scraper element (TDU-SE) in 2017 during an earlier operational phase. Several US fusion energy science laboratories have been involved in the design, analysis (structural and thermal finite element, as well as computational fluid dynamics), plasma simulation, planning, prototyping, and diagnostic development around the scraper element program (both TDU-SE and HHF-SE). This paper presents an overview of all of these activities, and their current status.
机译:Wendelstein 7-X(W7-X)螺栓螺栓器处于调试的最终阶段,并将在2015年后半段开始运作。在这一第一阶段,机器将用限幅运行,并限制为低功耗和短路脉冲。但在2019年,计划是用于安装积极的冷却档位,机器将以全电源稳态运行。最近,等离子体模拟表明,在该最终操作阶段,引导电流可能在某些情况下发展。这将导致偏移器目标的敏感端超载超出其合格限制。已经提出了一种高热通量刮刀元件(HHF-SE)以占据一些对流助焊剂并减少转轴上的负荷。为了检查HHF-SE是否能够有效地降低偏移器区域中的等离子体通量,并确定泵送效果如何受这样的组件的影响,计划包括测试转栓单元刮刀Element(TDU-SE)2017年在早期的运营阶段。几个美国融合能源科学实验室已经参与了设计,分析(结构和热有限元,以及计算流体动力学),等离子仿真,规划,原型制作和扫描元件程序(TDU-SE和TDU-SE)的诊断开发hhf-se)。本文介绍了所有这些活动的概述及其当前状态。

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