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Improved confinement in high-density Ohmic discharges due to impurity puffing

M Bessenrodt-Weberpals, F X Soldner, E R Muller, H D Murmann, W Poschenrieder, G Siller, K -H Steuer1992年Plasma Physics and Controlled FusionIF 2.2出版社

Impurity puffing experiments have been performed in ultra-clean ASDEX discharges (via wall boronization) in order to explore the role of impurities for the confinement in high-density Ohmic discharges. Successful changes in confinement are achieved by neon puffing where edge radiation is increased such that the power load onto the divertor plates takes its minimum value. This low value correlates with a reduced separatrix pressure and hence may trigger a peaking of the density profile leading to favourable transport behaviour in the bulk plasma. Therefore, the access to improved Ohmic confinement can now be understood in terms of impurity radiation and recycling fluxes.

日本語訳

不純物パフ入射実験が、超高純度ASDEX放電(壁ボロナイズ処理による)において、高密度オーミック放電における閉じ込めに対する不純物の役割を探求するために実施された。閉じ込めの改善は、ネオンパフ入射によって達成され、その際、周辺部放射が増加し、ダイバータ板への熱負荷が最小値となる。この最小値は、セパラトリックス圧力の低下と相関し、それゆえ密度分布のピーキングを引き起こし、バルクプラズマにおける良好な輸送挙動をもたらす可能性がある。したがって、改善されたオーミック閉じ込めへのアクセスは、不純物放射とリサイクリングフラックスの観点から理解できるようになった。

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asdex-upgrade中精度(概要文一致)

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ImpurityOhmic heatingImproved confinement
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