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ANALYSIS OF THE WENDELSTEIN 7-X TEST DIVERTOR UNIT SCRAPER ELEMENT WITH RADIATION SHIELDS

机译:带辐射护罩的WENDELSTEIN 7-X测试分流器单元刮板元件的分析

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Early implementation of divertor components for the Wendelstein 7-X stellarator will include an inertially cooled system of divertor elements called the Test Divertor Unit (TDU) . One part of this system is a scraper element that is intended to explore methods of mitigating heat flux on the ends of the TDU elements. This system will be in place in 2017, after a run period that will involve no divertor, and will precede steady state operation with actively cooled divertors scheduled for 2019. The TDU scraper element is an experimental device with uncertain requirements and with loading conditions which will developed as a part of the experiment. The pattern of heat flux may vary from currently predicted distributions and intensities. The design of the scraper element must accommodate this uncertainty. Originally the mechanical design was to be based on extensive studies for the monoblock- based design of an actively cooled system. An obvious simplification is the elimination of the manifolding needed for the water cooling. The wall panels on which the panels are mounted are to be maintained at 200C or less. Thermal ratcheting of the tiles, supporting structures, and backing structures is managed with adequate cooldown times, thermal anchors, where allowed, and radiative shields. Water cooling of the shields was proposed and rejected. Better radiation modeling is showing less need for multiple shields, but during initial run periods, the scraper element will have to be restricted to an acceptable operating envelope. Thermal instrumentation is recommended.
机译:用于Wendelstein 7-X恒星器的分流器组件的早期实现将包括一个称为测试分流器单元(TDU)的分流器元件的惯性冷却系统。该系统的一部分是刮板元件,旨在研究减轻TDU元件端部热通量的方法。该系统将于2017年投入使用,运行时间将不涉及分流器,并且将在稳态运行之前进行,而定于2019年进行主动冷却的分流器。TDU刮板元件是一种实验性装置,具有不确定的要求,并且装载条件会作为实验的一部分而开发的。热通量的模式可能与当前预测的分布和强度不同。刮板元件的设计必须适应这种不确定性。最初,机械设计是基于对主动冷却系统的整体设计的广泛研究。一个明显的简化是消除了水冷却所需的歧管。安装有面板的墙面板应保持在200°C或更低的温度。利用足够的冷却时间,热锚(如果允许)和辐射屏蔽层来管理瓷砖,支撑结构和衬砌结构的热棘轮。提出并拒绝了对水盾的冷却。更好的辐射建模显示对多个屏蔽的需求减少,但是在初始运行期间,刮板元件必须限制在可接受的工作范围内。建议使用热仪表。

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