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线上会场: 腾讯会议:942-488-172 密码:123456
报告摘要: On the basis of the fusion research achievements of the past half century, it is foreseen that a long-pulse high-performance operation of ITER and future fusion power plants, e.g. DEMO, will require the resolution of plasma-wall interactions, in which a tolerable plasma exhaust, including steady-state and transient heat- and particle-fluxes on plasma-facing components, is controlled reliably by one or more mechanisms at high power densities. Recently, applications of three-dimensional (3D) magnetic topologies for controlling the edge plasma transport, stability, and plasma-wall interactions (PWIs) have attracted much attention in fusion research, especially the use of resonant magnetic perturbations (RMP) in tokamaks and an intrinsic 3D magnetic topology concept in stellarator devices. To leverage 3D magnetic topologies in support of long-pulse high-performance plasma operation, the synergy between 3D magnetic topology and edge plasma transport, and its profound impacts on the divertor heat load pattern have been investigated on several major superconducting devices, including the Experimental Advanced Superconducting Tokamak (EAST), the Large Helical Device (LHD) and the Wendelstein 7-X (W7-X) Stellarator. In this talk, the advanced progress in recent years on this research filed will be presented. 报告人简介: 梁云峰,德国于利希研究中心等离子体物理研究所研究员,德国杜塞尔道夫大学教授。入选国家海外高层次人才;IOP旗下期刊Plasma Science and Technology (PST)主编;JT-60SA托卡马克装置台基研究欧盟协调人。 “论坛”主请人联系方式: 曾龙:zenglong@tsinghua.edu.cn |