Overview of EXL-50 Research Progress and Future Plan
Yuejiang Shi, Yumin Wang, Bing Liu, Xianming Song, Shaodong Song, Xinchen Jiang, Dong Guo, Di Luo, Xiang Gu, Tiantian Sun, Xianli Huang, Zhi Li, Lili Dong, Xueyun Wang, Gang Yin, Mingyuan Wang, Wenjun Liu, Hanyue Zhao, Huasheng Xie, Yong, Liu, Dongkai Qi, Bo Xing, Jiangbo Ding

TL;DR
This paper reviews the research progress and future plans of the EXL-50 spherical torus in China, highlighting achievements in plasma current drive, equilibrium modeling, and system upgrades, with a focus on non-inductive current methods.
Contribution
It provides a comprehensive overview of the experimental results, modeling techniques, and future development plans for the EXL-50 spherical torus device.
Findings
Achieved plasma currents up to 180 kA with ECRH heating.
Demonstrated high current drive efficiency of 1 A/W for low-density discharges.
Successfully applied multi-fluid equilibrium modeling to reconstruct plasma parameters.
Abstract
XuanLong-50 (EXL-50) is the first medium-size spherical torus (ST) in China, with the toroidal field at major radius at 50 cm around 0.5T. CS-free and non-inductive current drive via electron cyclotron resonance heating (ECRH) was the main physics research issue for EXL-50. Discharges with plasma currents of 50 kA - 180 kA were routinely obtained in EXL-50, with the current flattop sustained for up to or beyond 2 s. The current drive effectiveness on EXL-50 was as high as 1 A/W for low-density discharges using 28GHz ECRH alone for heating power less than 200 kW. The plasma current reached Ip>80 kA for high-density (5*10e18m-2) discharges with 150 kW 28GHz ECRH. Higher performance discharge (Ip of about 120 kA and core density of about 1*10e19m-3) was achieved with 150 kW 50GHz ECRH. The plasma current in EXL-50 was mainly carried by the energetic electrons.Multi-fluid equilibrium model…
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Taxonomy
TopicsOptical Systems and Laser Technology · Engineering Applied Research
