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Radiation induced non-linear oscillations in ITER baseline scenario plasmas in DIII-D

F. Turco, T.C. Luce, T. Osborne, T. Odstrcil, J.M. Hanson, A. McLean, A. Hyatt2024年8月Nuclear FusionIF 3出版社

This work shows how the radiation brought about by metals or metal-equivalent radiators such as Kr and Xe produces non-linear dynamics on otherwise stationary βN flattops of DIII-D ITER Baseline Scenario demonstration discharges. The Kr and Xe gases are used to reproduce the radiative loss rates of W in present machines that operate at core temperatures much lower than the expected ITER temperature. Experiments on DIII-D with injection of Kr and Xe, as well as with sources of intrinsic metals reach the range of radiated fraction values expected in the ITER core and experience slow oscillations in temperature and radiated power. In many cases of high radiated fraction, the core temperature decreases enough for the safety factor profile to rise above the 1/1 rational surface, naturally eliminating sawteeth and occasionally producing a persistent helical core. The oscillations can be reproduced by a modified Lotka–Volterra system for temperature and radiated fraction if diffusion and noise are included, which indicates that the interplay between temperature and radiation can be the main cause of the cyclic nature of the system. A new physics based model which includes equations for temperature, density and input power can also reproduce the oscillations observed in the experiments. The present results suggest that the non-linearity of the system can be increased by the inclusion of the inherently non-linear alpha heating term, which is proportional to ∼ne2Ti2, and obtains oscillations in the model when added to an otherwise more stationary system.

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AIによる論文要約

Radiation-induced non-linear oscillations in ITER baseline scenario plasmas in DIII-D
ENThis paper would be of interest to fusion researchers studying the effects of radiation on plasma stability and control, as well as those developing models to predict and mitigate such non-linear behavior in future fusion reactors like ITER.#FusionPlasmaStability #RadiationEffects #NonlinearDynamics #ITERBaseline

This paper explores how radiation from metals or gas-like Kr and Xe can cause non-linear oscillations in the temperature and power of ITER-like plasmas in the DIII-D tokamak. The oscillations are reproduced by models that capture the interplay between temperature and radiation, suggesting this is the main cause. The results indicate that the inherently non-linear alpha heating term may further increase the system's non-linearity.

ITERベースラインシナリオプラズマにおける放射線誘起非線形振動
JAこの論文は、プラズマ物理、特に放射が引き起こす非線形現象に興味のある核融合研究者や学生に役立つでしょう。#PlasmaPhysics #NonlinearDynamics #RadiationEffects #ITERBaseline

この論文は、金属や金属等価放射体(Kr、Xe)による放射が、DIII-Dのベースラインシナリオ実験で観測される定常的なβNフラットトップに非線形ダイナミクスをもたらすことを示しています。高放射率条件下では、コア温度の低下により安全係数プロファイルが1/1の有理面を超えることで、鋸歯状変動が自然に消失し、永続的ならせん状コアが形成されることがあります。この振動は、温度と放射の相互作用が主要因であることを示唆しています。

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