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等离子体科学和技术(英文版)
等离子体科学和技术(英文版)

万元熙、谢纪康

月刊

1009-0630

pst@ipp.ac.cn

0551-5591617,5593176

230031

合肥 中国科学院等离子体物理研究所PST编辑部

等离子体科学和技术(英文版)/Journal Plasma Science and TechnologyCSCD北大核心EISCI
查看更多>>“Plasma Science & Technology”(等离子体科学和技术)是中国科学院等离子体物理研究所主办的英文版学术期刊。其宗旨是向国内外报导我国等离子体科学界和国外科学家在高温等离子体、低温等离子体、天体空间等离子体、放电等离子体和激光等离子体等各个领域在基础研究、实验探索、装置建设和应用开发中所取得的具有新意的学术成果或阶段性成果,并刊登反映这些学科国际、国内发展新方向、新动态的综述,以及与等离子体有关的交叉学科和应用方面的最新成就等。
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    Preliminary electromagnetic analysis of the COOL blanket for CFETR

    鲁帅领马学斌刘松林
    101-108页
    查看更多>>摘要:The supercritical CO2 cOoled Lithium-Lead(COOL)blanket has been designed as one advanced blanket candidate for the Chinese Fusion Engineering Test Reactor(CFETR).This work focuses on the electromagnetic(EM)loads(Maxwell force and Lorentz force)acting on the COOL blanket,which are important mechanical loads in further structural analysis of the COOL blanket.A 3D electromagnetic analysis is performed using the ANSYS finite element method to obtain EM loads on the COOL blanket in this study.At first,the magnetic scalar potential(MSP)method is used to obtain the magnetic field and the Maxwell force on the COOL blanket.Then,the magnetic vector potential(MVP)method is performed during a plasma disruption event to get the eddy current distribution.At last,a multi-step method is adopted for the calculation of the Lorentz force and the torque.The maximum Lorentz forces of inboard and outboard blanket structural components are 5624 kN and 2360 kN respectively.

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