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How is turbulence intensity determined by macroscopic variables in a toroidal plasma?

S. Inagaki, T. Tokuzawa, N. Tamura, S.-I. Itoh, T. Kobayashi, K. Ida, T. Shimozuma, S. Kubo, K. Tanaka, T. Ido2013年被引用 66Nuclear FusionIF 3出版社

We report observations of the dynamic response of micro-fluctuations and turbulent flux to a low-frequency heating power modulation in the Large Helical Device. The responses of heat flux and micro-fluctuation intensity differ from that of the change in temperature gradient. This result violates the local transport model, where turbulence is determined by the local temperature gradient. A new relationship between flux, gradient and turbulence is found. In addition to the temperature gradient, the heating rate is proposed as a new, direct controlling parameter of turbulence to explain the fast response of turbulence against periodic modulation of heating power.

日本語訳

我々は、大型ヘリカル装置における低周波加熱パワー変調に対する微視的揺動と乱流フラックスの動的応答の観測結果を報告する。熱流束と微視的揺動強度の応答は、温度勾配の変化に対する応答とは異なる。この結果は、乱流が局所的な温度勾配によって決定されるという局所輸送モデルに矛盾する。フラックス、勾配、乱流の間の新たな関係が見出された。温度勾配に加えて、加熱率が乱流の新たな直接的な制御パラメータとして提案され、加熱パワーの周期的変調に対する乱流の高速応答を説明する。

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