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Turbulence evolution and transport behavior during current ramp-up in ITER-like plasmas on DIII-D

G.R. McKee, M. Austin, J. Boedo, R. Bravenec, C. Holland, G. Jackson, T.C. Luce, T.L. Rhodes, D. Rudakov, G. Wang2017年被引用 1Nuclear FusionIF 3出版社

Low-wavenumber density fluctuations exhibit unique characteristics during the current ramp-up phase of ITER-like discharges that can partially explain the challenges of correctly modeling transport behavior and predicting global plasma parameters during this period. A strong interaction takes place between the evolving transport, safety factor (q) and kinetic profiles as well as the appearance and evolution of low-order rational surfaces. Density fluctuations from 0.75  <  ρ  <  0.9 are transiently reduced to exceptionally low levels during early times and from 0.8  <  ρ  <  0.9 at late times in the ramp-up in a manner that is different from behavior observed during steady-state plasma conditions with similar values of q95. Turbulence is suppressed as low-order-rational q-surfaces enter the plasma; the local electron temperature likewise exhibits transient increases during these periods of reduced fluctuations indicating changes in transport that impact temperature and consequently the evolution of current density and plasma inductance. These observations can explain discrepancies between CORSICA modelling and the higher electron temperature found previously over the outer half radius. Comparison of turbulence properties with time-varying linear growth rates with GYRO and GENE demonstrate qualitative consistency with measured fluctuation levels, but calculations don't exhibit reduced growth rates near low-order rational surfaces, which is inconsistent with experimental observations. This indicates a mechanism that can contribute to reconciling observed turbulence behavior with transport models, allowing for the development of more accurate predictive tools.

日本語訳

低波数密度揺動は、ITER類似放電の電流立ち上げ位相において特有の特性を示し、この期間中の輸送挙動の正確なモデリングとグローバルなプラズマパラメータの予測の難しさを部分的に説明できる。発展する輸送、安全係数(q)、運動論的プロファイルと、低次有理面の出現および発展との間には、強い相互作用が生じる。ρが0.75 < ρ < 0.9の範囲の密度揺動は、初期の時間帯に過渡的に異常に低いレベルまで減少し、立ち上げ後期には0.8 < ρ < 0.9の範囲で減少する。これは、同様のq95値を持つ定常状態プラズマ条件で観察される挙動とは異なる。低次の有理q面がプラズマに入ると乱流は抑制され、局所電子温度もこれらの揺動減少期間中に過渡的な上昇を示し、これは温度に影響を与え、結果として電流密度とプラズマインダクタンスの進化に影響を与える輸送の変化を示している。これらの観察結果は、CORSICAモデリングと、以前に見られた外側半径半分にわたるより高い電子温度との間の不一致を説明できる。乱流特性とGYROおよびGENEによる時間変化する線形成長率との比較は、測定された揺動レベルと定性的に一致することを示すが、計算は低次有理面近傍での成長率の低下を示さず、これは実験観察と矛盾する。これは、観測された乱流挙動を輸送モデルと調和させることに寄与し得るメカニズムを示しており、より正確な予測ツールの開発を可能にする。

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diii-d高精度(タイトル一致)iter高精度(タイトル一致)

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ITERDIII-DCurrent ramp-up
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