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Progress toward ITER's First Plasma

机译:向ITER的第一个血浆迈进

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摘要

ITER reached 50% completion of the work required to achieve First Plasma in November 2017. Progress has been made on ITER infrastructure since the 2016 Fusion Energy Conference, most visibly the construction of many key buildings. The key parts of the tokamak assembly building and the tokamak bioshield have been completed. The tokamak building itself will be ready for equipment in 2020. The cryogenic plant and the magnet power supply buildings are complete, and these systems begin commissioning in 2020. The power conversion and distribution area is complete and in operation, and construction has started on the component cooling water system building. Manufacturing of the basic components of the ITER tokamak is also proceeding well. The base and lower cylinder of the cryostat have been assembled on the ITER site. The first modules of the central solenoid and of the six poloidal field coils have been wound. The first winding packs of the toroidal field magnets are complete, as are the first casings, which have been verified to meet the high tolerances required. The first vacuum vessel sector is near completion and demonstrated to meet strict tolerances. The heating and current drive systems (neutral beams, electron cyclotron heating and ion cyclotron heating) are in the final design phase. The sequence of ITER operation from First Plasma to the achievement of the Q = 10 and Q = 5 project goals has been adapted to the Staged Approach to construction, a stepwise installation of all systems. The ITER Research Plan has been revised in 2017 to be consistent with the systems available in each phase. Physics studies focus on the disruption mitigation system, design of the ITER tungsten divertor, and modelling of ITER plasma scenarios. Modelling concentrates on the initial phases of the Research Plan and on the Q = 10 scenario, especially plasma termination.
机译:ITER于2017年11月完成了实现“第一等离子”所需的工作,完成了50%。自2016年聚变能大会以来,ITER基础设施取得了进展,最明显的是许多关键建筑物的建设。托卡马克装配大楼和托卡马克生物防护板的关键部分已经完成。托卡马克大楼本身将在2020年准备投入使用。低温工厂和磁铁电源大楼已建成,这些系统将于2020年开始调试。电力转换和分配区域已完成并正在运行,并且已经开始在组件冷却水系统的建设。 ITER托卡马克的基本组件的制造也进展顺利。低温恒温器的底缸和下缸已在ITER现场组装。中央螺线管的第一模块和六个极向场线圈已被缠绕。环形磁场磁体的第一组绕组和第一组外壳都已完成,已验证其可以满足所需的高公差。第一个真空容器领域已接近尾声,并已达到严格的公差要求。加热和电流驱动系统(中性束,电子回旋加速器加热和离子回旋加速器加热)处于最终设计阶段。从第一等离子到实现Q = 10和Q = 5项目目标的ITER操作顺序已适应分阶段施工方法,即逐步安装所有系统。 ITER研究计划已于2017年进行了修订,以与每个阶段可用的系统保持一致。物理研究的重点是破坏缓解系统,ITER钨分流器的设计以及ITER等离子情景的建模。建模专注于研究计划的初始阶段和Q = 10方案,尤其是血浆终止。

著录项

  • 来源
    《Nuclear fusion》 |2019年第11期|112001.1-112001.11|共11页
  • 作者

    Bigot B.;

  • 作者单位

    ITER Org 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

    fusion; tokamak; ITER;

    机译:融合托卡马克国际热核实验堆;
  • 入库时间 2022-08-18 04:50:32

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