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Updated: Jun 22, 2025

A 100 KW Class Applied-field Magnetoplasmadynamic Thruster
Published on: December 22, 2018
Recent advances in high- experiments and magnetohydrodynamic instabilities with hybrid scenarios in the HL-2A Tokamak
Wei Chen1, Liming Yu1, Min Xu1
1Joint Laboratory for Fusion Product and Energetic Particle, Southwestern Institute of Physics, P.O. Box 432, Chengdu 610041, China.
Abstract:
Over the past several years, high- experiments have been carried out on HL-2A. The high- is realized using double transport barriers (DTBs) with hybrid scenarios. A stationary high- ( ) scenario was obtained by pure neutral-beam injection (NBI) heating. Transient high performance was also achieved, corresponding to , , , , , and . The high- scenario was successfully modeled using integrated simulation codes, that is, the one modeling framework for integrated tasks (OMFIT). In high- plasmas, magnetohydrodynamic (MHD) instabilities are abundant, including low-frequency global MHD oscillation with n = 1, high-frequency coherent mode (HCM) at the edge, and neoclassical tearing mode (NTM) and Alfvénic modes in the core. In some high- discharges, it is observed that the NTMs with limit the growth of the plasma energy and decrease . The low-n global MHD oscillation is consistent with the coupling of destabilized internal (m/n = 1/1) and external (m/n = 3/1 or 4/1) modes, and plays a crucial role in triggering the onset of ELMs. Achieving high- on HL-2A suggests that core-edge interplay is key to the plasma confinement enhancement mechanism. Experiments to enhance will contribute to future plasma operation, such as international thermonuclear experimental reactor .
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