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Effect of magnetic field configuration on parallel plasma flow during neutral beam injection in Heliotron J

H Lee, S Kobayashi, M Yokoyama, T Mizuuchi, T Minami, T Harada, K Nagasaki, H Okada, T Minami, S Yamamoto2013年Plasma Physics and Controlled FusionIF 2.2出版社

The effect of magnetic field configurations on plasma flow velocity was investigated by measuring the parallel flow velocity (v∥) using a charge-exchange recombination spectroscopy during neutral beam injection in three different toroidal mirror configurations of Heliotron J: high, standard and reversed mirror configurations. The magnetic ripple strengths, γ, for these mirror configurations were γ = 0.073 m−1, 0.031 m−1 and 0.027 m−1, respectively, at the normalized averaged minor radius ρ = 0.07. The magnetic ripple strength is defined as γ = {〈(∂B/∂l)2/B2〉}1/2, where 〈...〉 is the flux surface averaged value and l is the length along the magnetic field line. At ρ = 0.07, the parallel flow velocity in the high mirror configuration (v∥ ∼ 4 km s−1) was 2–3 times smaller than those in the standard and reversed mirror configurations (v∥ ∼ 10–12 km s−1). An anticipated interpretation is that the difference in the neoclassical damping force contributes to the difference in v∥ among the three mirror configurations.

日本語訳

磁場配位がプラズマ流速に及ぼす効果を、ヘリオトロンJの3つの異なるトロイダルミラー配位(高ミラー、標準ミラー、反転ミラー配位)において、中性粒子ビーム入射中の荷電交換再結合分光法を用いて平行流速(v∥)を測定することにより調べた。これらのミラー配位における磁気リップル強度γは、規格化平均小半径ρ=0.07においてそれぞれγ=0.073 m⁻¹、0.031 m⁻¹、0.027 m⁻¹であった。磁気リップル強度はγ={〈(∂B/∂l)²/B²〉}¹/²と定義される。ここで〈...〉は磁気面平均値、lは磁力線に沿った長さである。ρ=0.07において、高ミラー配位での平行流速(v∥〜4 km s⁻¹)は、標準および反転ミラー配位での値(v∥〜10–12 km s⁻¹)より2〜3倍小さかった。予想される解釈として、3つのミラー配位間におけるv∥の差は、新古典論的減衰の差に起因すると考えられる。

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Neutral beamNeutral beam injectionPlasma flowHeliotron
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