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Interior microturbulence characteristics during H- and VH-mode in the DIII-D tokamak

C L Rettig, K H Burrell, R J La Haye, T H Osborne, W A Peebles, R J Groebner1994年Plasma Physics and Controlled FusionIF 2.2出版社

Measurements of interior microturbulence in the DIII-D tokamak have indicated that during double null discharges with low radiated power and strong neutral beam injection power, interior microturbulence is observed to reduce prior to the onset of the so-called VH-mode, when the peak energy confinement time is greater than two times that predicted by the JET/DIII-D H-mode scaling law. The core broadband turbulence level begins to modulate at frequencies of hundreds of Hertz, and over 100-200 ms following the L to H transition, the modulation period increases while the average fluctuation level reduces. The bursts are associated with momentum transfer events because the toroidal rotation increases significantly after their suppression. The associated Er*B convective drift increases significantly as well. During this period, confinement increases continuously and is often observed to peak several hundred ms after the modulation ends. The question arises as to whether shear flow stabilization might be reducing core turbulence in VH-mode and reducing the fluctuation driven energy transport. In recent experiments, it has been shown that independently reducing Er in the core limits the fluctuation reduction and prevents access to the VH-mode regime.

日本語訳

DIII-Dトカマクにおける内部微視的乱流の測定により、低放射パワーかつ強力な中性粒子ビーム入射を伴うダブルヌル放電中に、いわゆるVHモードの開始前に内部微視的乱流が減少することが示された。VHモード時には、ピークエネルギー閉じ込め時間がJET/DIII-D Hモードスケーリング則による予測値の2倍以上となる。コアの広帯域乱流は数百Hzの周波数で変調を開始し、L-H遷移後100〜200msの間に変調周期が増大する一方、平均変動レベルは減少する。このバーストは運動量輸送事象と関連しており、その抑制後にはトロイダル回転が有意に増加する。それに伴うEr×B対流ドリフトも同様に有意に増加する。この期間中、閉じ込めは連続的に改善し、変調終了後数百msでピークに達することが多い。せん断流安定化がVHモードにおけるコア乱流を低減し、変動駆動型エネルギー輸送を抑制している可能性が疑問として提起される。最近の実験では、コアのErを独立に低減すると変動の抑制が制限され、VHモード領域への到達が妨げられることが実証された。

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