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Integration of an advanced He-cooled divertor in a DEMO-relevant tokamak geometry

机译:在与DEMO有关的托卡马克几何形状中集成了先进的He冷却分流器

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摘要

Strong impulses to the development of in-vessel components for near-term fusion reactors like DEMO were given by the recent EU power plant conceptual study (PPCS). Within the PPCS reactor models were developed based on the EU Helium cooled pebble bed blanket (HCPB) concept (reactor model B) and the dual coolant blanket (DC) concept (reactor model C). As a consequence of the study, a design review was carried out in the EU to create a modular HCPB blanket, followed by an effort at Forschungszentrum Karlsruhe (FZK) of a complete in-vessel integration. Also, the development of a gas cooled divertor was launched within the PPCS, with the aim of increasing both safety and the overall plant efficiency. The latest and most advanced divertor concept, which was developed at FZK, is based on a feasible and effective heat transfer enhancement technique, namely the multiple jet impingement cooling technology, while helium was chosen as a gaseous coolant due to its good safety characteristics when used with a Be-containing blanket. A brief description of the divertor design is given with the focus is on reactor integration and target layout.
机译:最近的欧盟电厂概念研究(PPCS)强烈推动了诸如DEMO之类的近期聚变反应堆的船内组件的开发。在PPCS内,根据EU氦冷却的卵石床层(HCPB)概念(反应器B型)和双冷却剂层(DC)概念(反应器C型)开发了模型。这项研究的结果是,在欧盟进行了设计审查,以创建模块化的HCPB毯子,然后在Forschungszentrum Karlsruhe(FZK)进行了完整的船内集成。此外,PPCS内还开发了气冷式偏滤器,旨在提高安全性和整体工厂效率。 FZK开发的最新,最先进的偏滤器概念基于可行且有效的传热增强技术,即多射流冲击冷却技术,而氦由于其使用时的良好安全性而被选作气态冷却剂用含Be的毯子。给出了分流器设计的简要说明,重点是反应堆集成和目标布局。

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