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Design of the helium cooled lithium lead breeding blanket in CEA: from TBM to DEMO

机译:CEA的氦冷却锂铅繁殖毯的设计:从TBM到DEMO

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摘要

The helium cooled lithium lead (HCLL) blanket concept was originally developed in CEA at the beginning of 2000: it is one of the two European blanket concepts to be tested in ITER in the form of a test blanket module (TBM) and one of the four blanket concepts currently being considered for the DEMOnstration reactor that will follow ITER. The TBM is a highly optimized component for the ITER environment that will provide crucial information for the development of the DEMO blanket, but its design needs to be adapted to the DEMO reactor. With respect to the TBM design, reduction of the steel content in the breeding zone (BZ) is sought in order to maximize tritium breeding reactions. Different options are being studied, with the potential of reaching tritium breeding ratio (TBR) values up to 1.21. At the same time, the design of the back supporting structure (BSS), which is a DEMO specific component that has to support the blanket modules inside the vacuum vessel (VV), is ongoing with the aim of maximizing the shielding power and minimizing pumping power. This implies a re-engineering of the modules' attachment system. Design changes however, will have an impact on the manufacturing and assembly sequences that are being developed for the HCLL-TBM. Due to the differences in joint configurations, thicknesses to be welded, heat dissipation and the various technical constraints related to the accessibility of the welding tools and implementation of non-destructive examination (NDE), the manufacturing procedure should be adapted and optimized for DEMO design. Laser welding instead of TIG could be an option to reduce distortions. The time-of-flight diffraction (TOFD) technique is being investigated for NDE. Finally, essential information expected from the HCLL-TBM program that will be needed to finalize the DEMO design is discussed.
机译:氦冷却锂铅(HCLL)覆盖层概念最初是在2000年由CEA开发的:它是在ITER中以测试覆盖层模块(TBM)形式进行测试的两个欧洲覆盖层概念之一,目前正在为紧随ITER之后的DEMOnstration反应堆考虑四个总体概念。 TBM是用于ITER环境的高度优化的组件,它将为DEMO覆盖层的开发提供关键信息,但其设计需要适应DEMO反应堆。关于TBM设计,寻求减少育种区(BZ)中的钢含量以最大化tri育种反应。正在研究不同的选择,with的繁殖率(TBR)值可能高达1.21。同时,正在进行背面支撑结构(BSS)的设计,该结构是DEMO专用组件,必须在真空容器(VV)内支撑橡皮布模块,其目的是最大程度地提高屏蔽功率并最大程度地减少泵送功率。这意味着需要重新设计模块的附件系统。但是,设计更改将对为HCLL-TBM开发的制造和组装顺序产生影响。由于接头配置,要焊接的厚度,散热以及与焊接工具的可及性和无损检测(NDE)实施相关的各种技术限制等方面的差异,应针对DEMO设计进行调整和优化制造程序。可以使用激光焊接代替TIG焊接来减少变形。正在对NDE研究飞行时间衍射(TOFD)技术。最后,讨论了从HCLL-TBM计划中获得的必要信息,这些信息将需要最终确定DEMO设计。

著录项

  • 来源
    《Nuclear fusion》 |2017年第4期|046022.1-046022.7|共7页
  • 作者单位

    CEA, DEN, DANS, DM2S, F- 91191 Gif sur Yvette CEDEX, France;

    CEA, DEN, DANS, DM2S, F- 91191 Gif sur Yvette CEDEX, France;

    CEA, DEN, DANS, DM2S, F- 91191 Gif sur Yvette CEDEX, France;

    CEA, DEN, DANS, DM2S, F- 91191 Gif sur Yvette CEDEX, France;

    CEA, DEN, DANS, DM2S, F- 91191 Gif sur Yvette CEDEX, France;

    Karlsruhe Institute of Technology (KIT), Karlsruhe, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    breeding; blanket; tbm; demo; design; hcll;

    机译:配种;毯;太;演示设计;hcll;

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