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Control of the radial electric field shear by modification of the magnetic field configuration in LHD

K. Ida, M. Yoshinuma, M. Yokoyama, S. Inagaki, N. Tamura, B.J. Peterson, T. Morisaki, S. Masuzaki, A. Komori, Y. Nagayama2005年被引用 51Nuclear FusionIF 3出版社

Control of the radial electric field, Er, is considered to be important in helical plasmas, because the radial electric field and its shear are expected to reduce neoclassical and anomalous transport, respectively. In general, the radial electric field can be controlled by changing the collisionality, and positive or negative electric fields have been obtained by decreasing or increasing the electron density, respectively. Although the sign of the radial electric field can be controlled by changing the collisionality, modification of the magnetic field is required to achieve further control of the radial electric field, especially to produce a strong radial electric field shear. In the Large Helical Device (LHD) the radial electric field profiles are shown to be controlled by the modification of the magnetic field by (1) changing the radial profile of the effective helical ripples, εh, (2) creating a magnetic island with an external perturbation field coil and (3) changing the local island divertor coil current.

日本語訳

ヘリカルプラズマにおいて、径方向電場Erの制御は重要であると考えられている。なぜなら、径方向電場とそのシアは、それぞれ新古典輸送と異常輸送を低減することが期待されるからである。一般に、径方向電場は衝突周波数を変えることで制御でき、正または負の電場は、それぞれ電子密度を減少または増加させることで得られている。径方向電場の符号は衝突周波数を変えることで制御できるが、径方向電場のさらなる制御、特に強い径方向電場シアを生成するには、磁場の変更が必要である。大型ヘリカル装置(LHD)において、径方向電場分布は以下の磁場の変更によって制御できることが示されている:(1) 実効ヘリカルリップルεhの径方向分布を変えること、(2) 外部摂動コイルを用いて磁気島を生成すること、(3) 局所ダイバータコイル電流を変えること。

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lhd高精度(タイトル一致)

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LHDRadial electric field
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