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Further insight into the mechanism of hydrocarbon layer formation below the divertor of ASDEX Upgrade

M Mayer, V Rohde, the ASDEX Upgrade Team2006年被引用 20Nuclear FusionIF 3出版社

The surface loss probability of hydrocarbon radicals was measured below the roof baffle of the ASDEX Upgrade divertor using the cavity technique. Hydrocarbon layers are mainly formed by sticking of hydrocarbon radicals with high surface loss probabilities of about 0.2 and close to unity. In addition to sticking, re-erosion by atomic hydrogen plays an important role in layer formation. The temperature dependence of layer formation was measured with heated and cooled long term samples from 77 to 475 K. The layer growth rate is larger by a factor of about 40 at 77 K compared with room temperature, while it is lower by a factor of about 70 at 475 K than at room temperature due to enhanced re-erosion. Implications of the results for predictions of tritium retention in future fusion devices and hydrocarbon layer formation on mirror surfaces are discussed.

日本語訳

炭化水素ラジカルの表面損失確率は、キャビティ技術を用いてASDEX Upgradeダイバータのルーフバッフル下方で測定された。炭化水素層は主に、表面損失確率が約0.2およびほぼ1である炭化水素ラジカルの付着によって形成される。付着に加えて、原子状水素による再侵食が層形成において重要な役割を果たす。層形成の温度依存性は、77Kから475Kの範囲で加熱および冷却された長期試料を用いて測定された。層成長速度は、室温と比較して77Kでは約40倍大きい一方、475Kでは再侵食の増強により室温よりも約70倍低い。これらの結果は、将来の核融合装置におけるトリチウム保持の予測と、ミラー表面への炭化水素層形成に対する示唆を与える。

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DivertorASDEXASDEX Upgrade
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