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Multi-Module vs. Single-Module concept: Comparison of thermomechanical performances for the DEMO Water-Cooled Lithium Lead breeding blanket

机译:多模块与单模块概念:DEMO水冷锂铅繁殖毯的热机械性能比较

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摘要

Within the framework of EUROfusion R&D activity an intense research campaign has been performed at the University of Palermo, in close cooperation with ENEA labs and KIT, in order to compare the thermomechanical performances of the Back Supporting Structure (BSS) of Multi-Module and Single-Module concepts of DEMO Water-Cooled Lithium Lead breeding blanket (WCLL). To this purpose, detailed 3D models of the DEMO WCLL right inboard and central outboard segments, including detailed BSS and simplified First Wall and structures according to the two concepts, have been set-up. The study has been performed considering the Normal Operation and Central Major Disruption steady state loading scenarios. In particular, the former scenario implies the thermomechanical loads arising under reference nominal conditions whereas the latter scenario deals with the loading conditions induced by a plasma disruption, taking into account both Lorentz’s and Maxwell’s electromagnetic forces and moments. A theoretical-numerical approach, based on the Finite Element Method (FEM), has been followed and the qualified Abaqus v. 6.14 commercial FEM code has been adopted. The obtained thermo-mechanical results have been assessed in order to verify their compliance with the design criteria foreseen for the structural material. To this purpose, a stress linearization procedure has been performed along the most critical paths located within the BSS structure, in order to check the fulfilment of the rules prescribed by the SDC-IC structural design code. The obtained results are herewith presented and critically discussed.
机译:在EUROfusion研发活动的框架内,与ENEA实验室和KIT密切合作,在巴勒莫大学进行了深入的研究,以比较多模块和单模块后支撑结构(BSS)的热机械性能。 -DEMO水冷锂铅繁殖毯(WCLL)的模块概念。为此,已经建立了DEMO WCLL右舷内侧和中央外侧舷段的详细3D模型,包括详细的BSS和简化的第一墙以及根据这两个概念的结构。进行此研究时考虑了“正常运行”和“中央重大扰动”稳态加载情况。特别地,前一种情况暗示了在参考标称条件下产生的热机械负载,而后一种情况则考虑了由洛伦兹和麦克斯韦的电磁力和力矩而引起的等离子体破坏引起的负载条件。遵循了基于有限元方法(FEM)的理论-数值方法,并采用了合格的Abaqus v.6.14商业FEM代码。已评估获得的热机械结果,以验证其是否符合结构材料预期的设计标准。为此,已经沿着位于BSS结构内的最关键的路径执行了应力线性化过程,以检查SDC-IC结构设计规范所规定的规则是否得到满足。提出并严格讨论获得的结果。

著录项

  • 来源
    《Fusion Engineering and Design》 |2018年第ptab期|1472-1478|共7页
  • 作者单位

    Institute for Neutron Physics and Reactor Technology (INR), Karlsruhe Institute of Technology (KIT), Eggenstein-Leopoldshafen;

    Dipartimento di Energia, Ingegneria dell’Informazione e Modelli Matematici, Università di Palermo, Viale delle Scienze;

    Dipartimento di Energia, Ingegneria dell’Informazione e Modelli Matematici, Università di Palermo, Viale delle Scienze;

    Dipartimento di Energia, Ingegneria dell’Informazione e Modelli Matematici, Università di Palermo, Viale delle Scienze;

    ENEA C.R. Brasimone;

    Dipartimento di Energia, Ingegneria dell’Informazione e Modelli Matematici, Università di Palermo, Viale delle Scienze;

  • 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

    DEMO; WCLL; Breeding blanket; Thermomechanics; FEM analysis; SMS; MMS;

    机译:DEMO;WCLL;育种层;热力学;FEM分析;SMS;MMS;

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