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Current Status of NIFS-SWJTU Joint Project for Quasi-Axisymmetric Stellarator CFQS
Plasma and Fusion Research · 2019 · Vol. 14(0) · pp. 3402074–3402074
M. Isobe✉(The Graduate University for Advanced Studies, SOKENDAI)A. Shimizu(National Institute for Fusion Science)Haifeng Liu(Southwest Jiaotong University)Hai LIU(Southwest Jiaotong University)Guozhen Xiong(Southwest Jiaotong University)Dapeng YinK. Ogawa(The Graduate University for Advanced Studies, SOKENDAI)Y. Yoshimura(National Institutes of Natural Sciences)M. Nakata(National Institute for Fusion Science)Shigeyoshi Kinoshita(National Institutes of Natural Sciences)S. Okamura(National Institutes of Natural Sciences)Changjian Tang(Sichuan University)Yuhong Xu(Southwest Jiaotong University)the CFQS Team(The Graduate University for Advanced Studies, SOKENDAI)
Abstract
The world's newest quasi-axisymmetric stellarator CFQS is constructed as a joint project of the National Institute for Fusion Science, Japan and Southwest Jiaotong University, the People's Republic of China. The project is named "NSJP for CFQS". The CFQS has a major radius of 1m, toroidal periods of 2, and aspect ratio of 4. The toroidal magnetic field strength will be increased up to 1 T. The CFQS equilibrium is characterized by low-aspect ratio and quasi-axisymmetry, having both natures of two-dimensional tokamak and three-dimensional stellarator. The CFQS offers new opportunities and fields to increase understanding of toroidal fusion plasmas.
Magnetic confinement fusion researchIonosphere and magnetosphere dynamicsSuperconducting Materials and ApplicationsStellaratorToroidRotational symmetryTokamakFusion powerPhysicsRADIUSAspect ratio (aeronautics)Toroidal fieldPlasma
Funding
- Strong
- Southwest Jiaotong University
- National Institute for Fusion Science
Citations
35
FWCI
8.41
field-weighted impact
References
21
Percentile
97%
vs. same field & year
Citations per year
References
Ray Tracing Simulations of ECR Heating and ECE Diagnostic at W7-X Stellarator
Plasma and Fusion Research · 2007 · 30 citations
Magnetic Configuration and Modular Coil Design for the Chinese First Quasi-Axisymmetric Stellarator
Plasma and Fusion Research · 2018 · 60 citations
Configuration Property of the Chinese First Quasi-Axisymmetric Stellarator
Plasma and Fusion Research · 2018 · 48 citations
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