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High power heating and current drive in JT-60

JT-60 Team presented by R Yoshino1987年Plasma Physics and Controlled FusionIF 2.2出版社

Advances of JT-60 experiments in current drive and high power heating are presented. Fully noninductive current drive of 2 MA is achieved by LHRF without OH assistance. Thecurrent drive efficiency ηCD, defined as n-bare(1019 m-3)IRF(MA)Rp(m)/PLH(MW), is in the range0.8 - 1.7 and is improved to 1.7 - 3.0 when NB heating is applied to the LHCD plasma.Confinement improvement is also obtained when LHCD and NB heating are combined. TheMHD fluctuations in the central plasma region of such a discharge are suppressed by a factor of 10 compared to the case of NB heating only. In the electron heating mode of LHRF,Te(0) of 6±1 keV is obtained with a high heating efficiency of 2- 3 × 1019 keV/MWm3, andL-mode-like behavior is seen in the energy confinement in such plasmas. High iontemperatures of Ti(O) = 11 ± 2 keV are attained in hydrogen plasmas at densities ofn-bare = 2 - 3 × 1019 /m3 with NB heating. Substantial beam acceleration is observed when NB andICRF heating are combined. Charge exchange neutral spectra show that high energy ion tailof up to at least 160 keV is generated compared to the NB acceleration voltage of 60 kV.

日本語訳

JT-60実験における電流駆動と高パワー加熱の進展について述べる。LHRFにより、OHを用いずに2 MAの完全非誘導電流駆動を達成した。電流駆動効率ηCDは、n-bar(10¹⁹ m⁻³)IR(MA)Rp(m)/PLH(MW)と定義され、0.8〜1.7の範囲にあり、LHプラズマにNB加熱を適用すると1.7〜3.0に改善される。LHCDとNB加熱を組み合わせた場合にも閉じ込め改善が得られる。このような放電の中心領域におけるMHD揺動は、NB加熱のみの場合と比較して10分の1に抑制される。LHRFの電子加熱モードでは、Te(0)が6±1 keVに達し、加熱効率は2〜3 × 10¹⁹ keV/MWm³と高いが、このようなプラズマのエネルギー閉じ込めはLモード様の挙動を示す。NB加熱により、密度n-bar = 2〜3 × 10¹⁹ m⁻³の水素プラズマにおいて、イオン温度Ti(0) = 11 ± 2 keVが達成される。NB加熱とICRF加熱を組み合わせると、顕著なビーム加速が観測される。荷電交換中性粒子スペクトルは、NB加速電圧60 kVと比較して、少なくとも160 keVまでの高エネルギーイオンテールの生成を示す。

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jt-60sa高精度(タイトル一致)

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Current driveJT-60
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