FusionPapers
図版検索トレンドwiki日本の研究
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Characteristics of neutron emission profile from neutral beam heated plasmas of the Large Helical Device at various magnetic field strengths

K Ogawa, M Isobe, S Sugiyama, D A Spong, S Sangaroon, R Seki, H Nuga, H Yamaguchi, S Kamio, Y Fujiwara2021年Plasma Physics and Controlled FusionIF 2.2出版社

The neutron emission profile of deuterium plasma in the Large Helical Device was measured with a multi-sightline vertical neutron camera under various magnetic field strength conditions. It was found that the line-integrated neutron emission profile shifts outward in the co-neutral beam (NB) case and inward in the counter NB case. Here, co- and counter directions correspond to enhance and reduce the poloidal magnetic field directions, respectively. The shift becomes more significant when the magnetic field decreased in strength. The experimentally obtained neutron emission profile was compared with the orbit-following models simulated through the DELTA5D code. The calculated neutron emission profiles vary according to the magnetic field strength because of the change of beam ion orbit and the slowing down due to the plasma parameter changes. Although a relatively narrow profile was obtained in the calculations at the inboard side for the co-NB case in the relatively low field condition, the profiles obtained through calculation and experiment were almost qualitatively aligned.

日本語訳

大型ヘリカル装置における重水素プラズマの中性子放出分布を、様々な磁場強度条件下で多視線垂直中性子カメラを用いて測定した。その結果、線積分された中性子放出分布は、コ中性粒子ビーム(NB)入射の場合には外側へ、カウンターNB入射の場合には内側へシフトすることがわかった。ここで、コ方向およびカウンター方向は、それぞれポロイダル磁場を増強する方向および減弱する方向に対応する。このシフトは、磁場強度が低下するほど顕著になった。実験で得られた中性子放出分布は、DELTA5Dコードによる軌道追跡シミュレーションモデルと比較された。計算された中性子放出分布は、ビームイオン軌道の変化とプラズマパラメータ変化による減速過程の変化のため、磁場強度に応じて変化した。比較的低磁場条件におけるコNB入射の場合、内側で計算により比較的狭い分布が得られたものの、計算と実験で得られた分布はほぼ定性的に一致した。

装置

lhd高精度(タイトル一致)

wiki

Neutral beamNeutral beam injectionHelical deviceNeutron emission
この論文にはまだAI要約がありません。

関連論文

Fusion neutron production with deuterium neutral beam injection and enhancement of energetic-particle physics study in the large helical device

2018Nuclear Fusion

Energetic ion confinement studies using comprehensive neutron diagnostics in the Large Helical Device

2019Nuclear Fusion

Energetic particle transport and loss induced by helically-trapped energetic-ion-driven resistive interchange modes in the Large Helical Device

2020Nuclear Fusion

Effect of the helically-trapped energetic-ion-driven resistive interchange modes on energetic ion confinement in the Large Helical Device

2018Plasma Physics and Controlled Fusion

Observation of neutron emission anisotropy by neutron activation measurement in beam-injected LHD deuterium plasmas

2020Nuclear Fusion

Prediction/modelling of the neutron emission from JET discharges

2002Plasma Physics and Controlled Fusion

Evaluation of local magnetic field fluctuation in a toroidal plasma with heavy ion beam probe

2007Plasma Physics and Controlled Fusion

Neutron spectrum analysis considering nuclear elastic scattering in beam-injected JT-60SA relevant deuterium plasma

2025Plasma Physics and Controlled Fusion

Influence of the magnetic field on properties of hot electron emission from ablative plasma produced at laser irradiation of a disc-coil target

2022Plasma Physics and Controlled Fusion

Observation of localized oscillations at m/n = 2/1 rational surface during counter neutral beam injection in the Large Helical Device

2006Plasma Physics and Controlled Fusion