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Impact of electron-scale turbulence and multi-scale interactions in the JET tokamak

N. Bonanomi, P. Mantica, J. Citrin, T. Goerler, B. Teaca, JET Contributors2018年被引用 29Nuclear FusionIF 3出版社

Experimental observations in JET tokamak plasmas and gyrokinetic simulations point to an important role, for electron heat transport, of electron-scale instabilities and of their interaction with ion-scale instabilities. Since these effects are maximized for strong electron heating and ion-scale modes close to marginal stability, these findings are of high relevance for ITER plasmas, featuring both conditions. Gyrokinetic and quasi-linear transport models accounting for multi-scale effects are assessed against JET experimental results.

日本語訳

JETトカマクプラズマにおける実験的観測とジャイロ運動論的シミュレーションは、電子熱輸送に対して、電子スケールの不安定性およびそれらとイオンスケールの不安定性との相互作用が重要な役割を果たすことを示している。これらの効果は、強い電子加熱と限界安定性に近いイオンスケールモードにおいて最大化されるため、これらの知見は、両方の条件を備えたITERプラズマに非常に関連性が高い。マルチスケール効果を考慮したジャイロ運動論的および準線形輸送モデルが、JETの実験結果と照合して評価される。

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