Overview of Progress on the EU DEMO Reactor Magnet System Design

Overview of Progress on the EU DEMO Reactor Magnet System Design
复制标题

DOI:
10.1109/tasc.2016.2536755
复制
发表时间:
2016-03
影响因子:
1.8
通讯作者:
L. Zani;C. Bayer;M. E. Biancolini;R. Bonifetto;P. Bruzzone;C. Brutti;D. Ciazynski;M. Coleman;I. Ďuran;M. Eisterer;W. Fietz;P. V. Gade;E. Gaio;F. Giorgetti;W. Goldacker;F. Gomory;X. Granados;R. Heller;P. Hertout;C. Hoa;A. Kario;B. Lacroix;M. Lewandowska;A. Maistrello;L. Muzzi;A. Nijhuis;F. Nunio;A. Panin;T. Petrisor;J. Poncet;R. Prokopec;M. Sanmarti Cardona;L. Savoldi;S. Schlachter;K. Sedlák;B. Stepanov;I. Tiseanu;A. Torre;S. Turtu;R. Vallcorba;M. Vojenčiak;K. Weiss;R. Wesche;K. Yagotintsev;R. Zanino
L. Zani;C. Bayer;M. E. Biancolini;R. Bonifetto;P. Bruzzone;C. Brutti;D. Ciazynski;M. Coleman;I. Ďuran;M. Eisterer;W. Fietz;P. V. Gade;E. Gaio;F. Giorgetti;W. Goldacker;F. Gomory;X. Granados;R. Heller;P. Hertout;C. Hoa;A. Kario;B. Lacroix;M. Lewandowska;A. Maistrello;L. Muzzi;A. Nijhuis;F. Nunio;A. Panin;T. Petrisor;J. Poncet;R. Prokopec;M. Sanmarti Cardona;L. Savoldi;S. Schlachter;K. Sedlák;B. Stepanov;I. Tiseanu;A. Torre;S. Turtu;R. Vallcorba;M. Vojenčiak;K. Weiss;R. Wesche;K. Yagotintsev;R. Zanino
中科院分区:
物理与天体物理3区
文献类型:
--
作者:
L. Zani;C. Bayer;M. E. Biancolini;R. Bonifetto;P. Bruzzone;C. Brutti;D. Ciazynski;M. Coleman;I. Ďuran;M. Eisterer;W. Fietz;P. V. Gade;E. Gaio;F. Giorgetti;W. Goldacker;F. Gomory;X. Granados;R. Heller;P. Hertout;C. Hoa;A. Kario;B. Lacroix;M. Lewandowska;A. Maistrello;L. Muzzi;A. Nijhuis;F. Nunio;A. Panin;T. Petrisor;J. Poncet;R. Prokopec;M. Sanmarti Cardona;L. Savoldi;S. Schlachter;K. Sedlák;B. Stepanov;I. Tiseanu;A. Torre;S. Turtu;R. Vallcorba;M. Vojenčiak;K. Weiss;R. Wesche;K. Yagotintsev;R. Zanino

文献摘要

被引文献

相似文献

预计在不久的将来,该示范反应堆将成为聚变发电的第一个应用。为此,在EUROFusion联盟的领导下,欧洲(EU)正在开展概念设计活动,以推动主要托卡马克系统的开发。2014年,磁铁系统项目组开展的活动侧重于环形磁场磁铁系统设计,在概念提案和对照设计标准的综合评价方面取得了重大成就。同时开展了几项磁体系统研发活动,并对高温超导(HTS)技术进行了广泛的研究。在本文中,我们介绍了2014年磁铁工作计划在两个方面所做的工作成果:1)欧盟感应反应堆(称为DEMO1)2014年的配置(发电厂在感应状态下运行)是概念设计活动的基础,包括进一步的优化;2)高温超导研发活动建立在过去几年获得的综合知识的基础上。
The DEMO reactor is expected to be the first application of fusion for electricity generation in the near future. To this aim, conceptual design activities are progressing in Europe (EU) under the lead of the EUROfusion Consortium in order to drive on the development of the major tokamak systems. In 2014, the activities carried out by the magnet system project team were focused on the toroidal field (TF) magnet system design and demonstrated major achievements in terms of concept proposals and of consolidated evaluations against design criteria. Several magnet system R&D activities were conducted in parallel, together with broad investigations on high temperature superconductor (HTS) technologies. In this paper, we present the outcomes of the work conducted in two areas in the 2014 magnet work program: 1) the EU inductive reactor (called DEMO1) 2014 configuration (power plant operating under inductive regime) was the basis of conceptual design activities, including further optimizations; and 2) the HTS R&D activities building upon the consolidated knowledge acquired over the past years.