首页> 外文期刊>Nuclear fusion >ADX: a high field, high power density, advanced divertor and RF tokamak
【24h】

ADX: a high field, high power density, advanced divertor and RF tokamak

机译:ADX:高场,高功率密度,高级分频器和RF托卡马克

获取原文
获取原文并翻译 | 示例
       

摘要

The MIT Plasma Science and Fusion Center and collaborators are proposing a high-performance Advanced Divertor and RF tokamak experiment (ADX)-a tokamak specifically designed to address critical gaps in the world fusion research programme on the pathway to next-step devices: fusion nuclear science facility (FNSF), fusion pilot plant (FPP) and/or demonstration power plant (DEMO). This high-field (≥6.5 T, 1.5 MA), high power density facility (P/S ~ 1.5 MW m~(-2)) will test innovative divertor ideas, including an 'X-point target divertor' concept, at the required performance parameters-reactor-level boundary plasma pressures, magnetic field strengths and parallel heat flux densities entering into the divertor region-while simultaneously producing high-performance core plasma conditions that are prototypical of a reactor: equilibrated and strongly coupled electrons and ions, regimes with low or no torque, and no fuelling from external heating and current drive systems. Equally important, the experimental platform will test innovative concepts for lower hybrid current drive and ion cyclotron range of frequency actuators with the unprecedented ability to deploy launch structures both on the low-magnetic-field side and the high-magnetic-field side-the latter being a location where energetic plasma-material interactions can be controlled and favourable RF wave physics leads to efficient current drive, current profile control, heating and flow drive. This triple combination-advanced divertors, advanced RF actuators, reactor-prototypical core plasma conditions-will enable ADX to explore enhanced core confinement physics, such as made possible by reversed central shear, using only the types of external drive systems that are considered viable for a fusion power plant. Such an integrated demonstration of high-performance core-divertor operation with steady-state sustainment would pave the way towards an attractive pilot plant, as envisioned in the ARC concept (affordable, robust, compact) (Sorbom et al 2015 Fusion Eng. Des. submitted (arXiv: 1409.3540)) that makes use of high-temperature superconductor technology-a high-field (9.25 T) tokamak the size of the Joint European Torus that produces 270 MW of net electricity.
机译:麻省理工学院等离子体科学与融合中心和合作者正在提议一个高性能的先进分流器和RF托卡马克实验(ADX)-一种旨在解决世界聚变研究计划通往下一代设备的关键缺口的托卡马克实验:聚变核科学机构(FNSF),聚变试验工厂(FPP)和/或示范电厂(DEMO)。这种高磁场(≥6.5T,1.5 MA),高功率密度的设备(P / S〜1.5 MW m〜(-2))将在试验场上测试创新的偏滤器思想,包括“ X点目标偏滤器”概念。所需的性能参数-反应器级边界等离子体压力,磁场强度和进入分流器区域的平行热通量密度-同时产生与反应堆一样的高性能核心等离子体条件:平衡且强耦合的电子和离子,态低扭矩或无扭矩,并且无需外部加热和电流驱动系统加油。同样重要的是,该实验平台将测试低频率混合电流驱动器和离子回旋加速器频率范围执行器的创新概念,它们具有在低磁场侧和高磁场侧部署发射结构的空前能力,后者由于可以控制等离子体与材料之间的高能相互作用,因此良好的射频波物理特性可以实现高效的电流驱动,电流分布控制,加热和流量驱动。这种三重组合的先进分流器,先进的RF执行器,电抗器-典型的堆芯等离子体条件-将使ADX能够探索增强的堆芯约束物理特性,例如通过反向中心剪切来实现,而仅使用认为可行的外部驱动系统类型。聚变电厂如ARC概念(经济,耐用,紧凑)所设想的那样,这种高性能的核心偏滤器运行以及稳态维持的集成展示将为吸引人的试验工厂铺平道路(Sorbom等人2015 Fusion Eng.Des。提交(arXiv:1409.3540)),该技术利用高温超导体技术-高电场(9.25 T)托卡马克,大小相当于联合欧洲圆环的大小,可产生270兆瓦的净电力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号