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Turbulent momentum transport due to neoclassical flows

Jungpyo Lee, Michael Barnes, Felix I Parra, Emily Belli, Jeff Candy2015年Plasma Physics and Controlled FusionIF 2.2出版社

Intrinsic toroidal rotation in a tokamak can be driven by turbulent momentum transport due to neoclassical flow effects breaking a symmetry of turbulence. In this paper we categorize the contributions due to neoclassical effects to the turbulent momentum transport, and evaluate each contribution using gyrokinetic simulations. We find that the relative importance of each contribution changes with collisionality. For low collisionality, the dominant contributions come from neoclassical particle and parallel flows. For moderate collisionality, there are non-negligible contributions due to neoclassical poloidal electric field and poloidal gradients of density and temperature, which are not important for low collisionality.

日本語訳

トカマクにおける内部トロイダル回転は、新古典効果が乱流の対称性を破ることによる乱流運動量輸送によって駆動され得る。本論文では、乱流運動量輸送に対する新古典効果の寄与を分類し、ジャイロ運動論シミュレーションを用いて各寄与を評価する。各寄与の相対的重要度は衝突頻度に応じて変化することがわかった。低衝突頻度では、新古典粒子流および平行流からの寄与が支配的である。中程度の衝突頻度では、新古典ポロイダル電場ならびに密度・温度のポロイダル勾配による無視できない寄与が存在し、これらは低衝突頻度では重要ではない。

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