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Analysis of Enhanced Heat Flux First Wall behavior under ITER Pulsed Loads

机译:ITER脉冲负载下增强热量第一壁行为的分析

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摘要

The First Wall (FW) is a component of the Blanket System facing the plasma. Two types of FW panel design have been developed based on the design heat flux: the Enhanced Heat Flux First Wall (EHF FW) panels designed for a 4.7 MW/m(2) heat flux, and the Normal Heat Flux First Wall (NHF FW) panels designed for a 2.0 MW/m(2) heat flux. The EHF FW panels are sheared by the RF and China. The EHF FW panels as part of the RF Procurement Arrangement 1.6.P1A.RF.01 are manufactured by two institutes: JCS NIIEFA and JSC NIKIET. As part of the technological process qualification, the design of the EHF FW Full Scale Prototype (FSP) was developed and approved. The so-called "pipe option" was taken as a basis for the FW configuration because during the final assembly the fingers are connected to the beam by orbital welding, allowing for acceptably small welding distortions and while providing for the required NDT examinations. At the same time, the previously considered welded attachment of the fingers to the beam was replaced by a mechanical option. This approach allowed for the removal of the Central Slot Insert (CSI) from the FW beam central zone, thereby simplifying the cooling configuration.This design was integrated in representative EHF FW panels located on the top and outboard zones of the vacuum vessel and the cooling configuration in the FW beams was developed to accommodate the additional plasma radiation on the front FW beam surface in the absence of the CSI.This paper summarizes the results of design activity for top and outboard EHF FW panels and presents the results of the thermo-hydraulic and transient thermal analyses which confirm the acceptable performance of the EHF FW panels without the CSI.
机译:第一壁(FW)是面向等离子体的橡皮布系统的部件。已经基于设计热通量开发了两种类型的FW面板设计:增强型热通量第一墙(EHF FW)面板设计为4.7mW / m(2)热通量,以及正常热通量第一墙(NHF FW )设计为2.0mW / m(2)热通量的面板。 EHF FW面板由RF和中国剪切。 EHF FW面板作为RF采购装置1.6.P1A.RF.01的一部分由两所研究所制造:JCS Niiefa和JSC Nikiet。作为技术流程资格的一部分,开发并批准了EHF FW全规模原型(FSP)的设计。所谓的“管道选项”作为FW配置的基础,因为在最终组件期间,手指通过轨道焊接连接到梁,允许可接受的小焊接扭曲,同时提供所需的NDT检查。同时,先前被认为是指向梁的焊接附接被机械选项所取代。这种方法允许从FW光束中央区域移除中央槽插入(CSI),从而简化了冷却配置。本文集成在位于真空容器顶部和舷外区域的代表性EHF FW板中,并进行冷却开发FW光束中的配置以在不存在CSI的情况下适应前FW梁表面上的附加等离子体辐射。本文总结了顶部和外侧EHF FW板的设计活动的结果,并提出了热液压的结果和瞬态热分析,确认无需CSI的EHF FW面板的可接受性能。

著录项

  • 来源
    《Fusion Engineering and Design》 |2020年第9期|111897.1-111897.7|共7页
  • 作者单位

    Joint Stock Co NA Dollezhall Res & Dev Inst Power JSC NIKIET Malaya Krasnoselskaya 2-8 Moscow 107140 Russia;

    Joint Stock Co NA Dollezhall Res & Dev Inst Power JSC NIKIET Malaya Krasnoselskaya 2-8 Moscow 107140 Russia;

    Joint Stock Co NA Dollezhall Res & Dev Inst Power JSC NIKIET Malaya Krasnoselskaya 2-8 Moscow 107140 Russia;

    Joint Stock Co NA Dollezhall Res & Dev Inst Power JSC NIKIET Malaya Krasnoselskaya 2-8 Moscow 107140 Russia;

    Joint Stock Co NIIEFA DV Efremov Inst Doroga Metallostroy 3 St Petersburg 189631 Russia;

    Joint Stock Co NIIEFA DV Efremov Inst Doroga Metallostroy 3 St Petersburg 189631 Russia;

    Joint Stock Co NIIEFA DV Efremov Inst Doroga Metallostroy 3 St Petersburg 189631 Russia;

    Inst Project Ctr ITER Sq Acad Kurchatov 1 Moscow 123182 Russia;

    ITER Org Route Vinon Verdon CS 90 046 F-13067 St Paul Les Durance France;

    ITER Org Route Vinon Verdon CS 90 046 F-13067 St Paul Les Durance France;

    ITER Org Route Vinon Verdon CS 90 046 F-13067 St Paul Les Durance France;

    ITER Org Route Vinon Verdon CS 90 046 F-13067 St Paul Les Durance France;

  • 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

    Blanket system; EHF First wall; Central slot insert; FW beam;

    机译:毯子系统;EHF第一墙;中央槽插入;FW梁;

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