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Large ELM-like events triggered by core MHD in JET advanced tokamak plasmas: impact on plasmas profiles, plasma-facing components and heating systems

Yu.F. Baranov, C.D. Challis, J. Ongena, B. Alper, G. Arnoux, P. Buratti, T. Gerbaud, D. Keeling, V. Kiptily, J. Mailloux2012年被引用 5Nuclear FusionIF 3出版社

Large and infrequent collapse events have been observed in high βN advanced tokamak (AT) plasmas in JET. Although they have features similar to large ELMs, they were triggered by core MHD. They caused a considerable loss of the plasma thermal and fast particle energy (∼10% of the total stored energy), but the heat load in the divertor due to these collapse events was small as a fraction of the plasma energy loss compared with regular type-I ELMs. Instead, significant heating of the main chamber wall was observed. A large, toroidally asymmetric, increase in the neutral gas pressure outside the plasma was observed after such events, which caused arcs in the lower hybrid (LH) and ion cyclotron (IC) heating systems and increased reionization in the neutral beam (NB) injectors. The collapses resulted in a reduction in the electron and ion temperatures and toroidal rotation of the whole plasma, a rise in Zeff; and a sufficiently large increase in the peripheral electron density to completely black-out the ECE emission from the plasma core. These features have been modelled to gain an understanding of the plasma behaviour associated with these collapse events and the implication for the operation of AT plasma scenarios with high additional heating power will be discussed.

日本語訳

JETにおける高βNアドバンストトカマク(AT)プラズマにおいて、大規模で稀な崩壊現象が観測されている。これらは大規模ELMと類似した特徴を有するが、コアMHDによって引き起こされた。これらはプラズマの熱エネルギーおよび高速粒子エネルギーの相当な損失(全蓄積エネルギーの約10%)を引き起こしたが、これらの崩壊現象によるダイバータへの熱負荷は、通常のタイプI ELMと比較して、プラズマエネルギー損失の割合としては小さかった。その代わりに、主真空容器壁の顕著な加熱が観測された。このような現象の後、プラズマ外部の中性ガス圧力の大きなトロイダル非対称な上昇が観測され、これにより低混成(LH)加熱システムとイオンサイクロトロン(IC)加熱システムでのアーク放電と、中性粒子ビーム(NB)入射装置における再電離の増加が引き起こされた。この崩壊により、電子温度・イオン温度およびプラズマ全体のトロイダル回転の低下、Zeffの上昇、そしてプラズマコアからのECE放射を完全に遮断するほど十分に大きな周辺電子密度の増加が生じた。これらの特徴をモデル化してこれらの崩壊現象に伴うプラズマ挙動の理解を深め、高い追加加熱パワーを有するATプラズマシナリオの運転への影響について議論する。

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jet高精度(タイトル一致)

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JETMagnetohydrodynamicsEdge localized modePlasma-facing componentAdvanced tokamak
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