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Reflectometry inconventional and advanced plasma scenarios on ASDEX Upgrade andperspectives for ITER

M E Manso, P Varela, I Nunes, J Santos, G D Conway, M Hirsch, S Klenge, J Stober, the CFN/IST Reflectometry Team, the ASDEX Upgrade Team2001年Plasma Physics and Controlled FusionIF 2.2出版社

The discovery of advanced tokamak scenarios opened new possibilities forthe realization of more compact machines with long pulse operation. Thisrequires the simultaneous optimization of the plasma shape, and of thepressure, current and electric field profiles. In this complex processthe diagnostics are crucial to understand the plasma physics, tovalidate the theoretical models and to measure parameters for controlpurposes.Here we present results obtained in ASDEX Upgrade showing the greatpotential of reflectometry for conventional and advanced tokamakinvestigation, derived from the diagnostic capability to perform a widerange of measurements with high spatial and temporal resolution, both atthe edge and plasma core. The abrupt formation of sharp densitygradients at the zones where internal and external transport barriersare formed, as well as the modifications of the turbulence parameters inthose narrow plasma regions are shown. Density profile changesassociated with fast events like ELMs and the L-H transition areresolved. Enhanced fluctuations that may be important for the transportacross the edge barrier are also detected by reflectometry. Themeasurement of the radial profile of E×B velocity on ASDEXUpgrade is discussed and results are compared with vE×Bprofiles obtained in W7-AS stellarator.The first experimental demonstration that edge density profiles fromreflectometry can provide accurate and reliable measurements of thetemporal evolution of the plasma position is presented. This isessential to prove that reflectometry can be used as an alternativeapproach to supplement the magnetic measurements, for the control ofplasma shape and position in long pulse operation, as it is proposed forITER. Finally new applications of reflectometry under development arediscussed.

日本語訳

先進トカマク運転シナリオの発見は、長時間パルス運転を伴うよりコンパクトな装置の実現に新たな可能性をもたらした。これには、プラズマ形状ならびに圧力、電流、電場分布の同時最適化が必要である。この複雑な過程において、プラズマ物理の理解、理論モデルの検証、および制御目的のパラメータ計測には診断が極めて重要である。本稿では、ASDEX Upgradeで得られた結果を示し、周辺部およびプラズマコアの両方において高い空間分解能と時間分解能を有する広範囲の計測を可能とする診断能力に基づく、従来型および先進トカマク研究における反射測定法の大きな可能性を提示する。内部および外部輸送障壁が形成される領域における急峻な密度勾配の急激な形成、ならびにそれらの狭いプラズマ領域における乱流パラメータの変化を示す。ELMやL-H遷移のような高速現象に伴う密度分布の変化が時間分解されて捉えられる。周辺障壁を横切る輸送に重要となり得る増強された揺動も反射測定法によって検出される。ASDEX UpgradeにおけるE×B速度の動径分布の計測について議論し、その結果をW7-ASステラレーターで得られたvE×B分布と比較する。反射測定法による周辺密度分布がプラズマ位置の時間発展の正確かつ信頼性の高い計測を提供できるという最初の実験的実証を示す。これは、ITERで提案されているように、長時間パルス運転におけるプラズマ形状および位置の制御において、反射測定法が磁気計測を補完する代替アプローチとして使用できることを証明する上で本質的である。最後に、現在開発中の反射測定法の新たな応用について議論する。

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