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Nature of high-Z impurity accumulation in tokamaks

M.Z. Tokar, J. Rapp, G. Bertschinger, L. Konen, H.R. Koslowski, A. Kramer-Flacken, V. Philipps, U. Samm, B. Unterberg1997年被引用 40Nuclear FusionIF 3出版社

The recent experiments on accumulative behaviour of heavy impurities in TEXTOR with test limiters of molybdenum and tungsten and puffing of xenon are briefly reviewed. The results of the reconstruction of the transport coefficients of high-Z ions in the accumulation stage are presented. They confirm the neoclassical nature of the convective particle transport, leading to peaking of the impurity density. A mechanism triggering accumulation, invoking the temperature dependence of neoclassical flows of impurities, is discussed and the threshold of accumulation obtained is compared with experimental data. Processes which can lead to a saturation of the accumulation, caused by a modification of the flux component proportional to the temperature gradient, are analysed. The results of numerical modelling for experiments in TEXTOR with different durations and intensities of xenon puffing are presented. The role of high-Z ions under reactor conditions is analysed, and it is shown that in a reactor, such as ITER, the discussed heavy impurity driven instabilities should be suppressed

日本語訳

TEXTORにおける重不純物の蓄積挙動に関する最近の実験について、モリブデンおよびタングステンの試験リミターとキセノンのガスパフを用いた結果を概説する。蓄積段階における高Zイオンの輸送係数の再構成結果を示し、これらは不純物密度のピーキングをもたらす対流粒子輸送の新古典的性質を裏付けるものである。新古典的な不純物フラックスの温度依存性に基づく蓄積のトリガー機構について議論し、得られた蓄積の閾値を実験データと比較する。温度勾配に比例するフラックス成分の変動による蓄積の飽和過程を解析する。さらに、TEXTORにおける異なる持続時間および強度のキセノンパフを用いた実験の数値モデリング結果を示す。炉心条件における高Zイオンの役割を分析し、ITERのような炉では、議論された重不純物駆動の不安定性は抑制されるべきであることを示す。

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iter中精度(概要文一致)textor中精度(概要文一致)

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