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Validation of numerical codes for the analysis of plasma discharges

R. Albanese, L. Bottura, S. Chiocchio, E. Coccorese, U. Seidel1993年Fusion Engineering and DesignIF 1.7出版社

AbstractElectromagnetic aspects in the design of ITER-like reactors call for an exrensive use of complex and advanced numerical codes. For this reason a strong attention has been paid within the NET-Team to the code development. In particular, through a cooperation with some Italian universities, during the last years a number of numerical procedures were developed and integrated. In order to assess the code reliability and to gain confidence on their predictions for next generation ITER-like reactors, the validation of the codes against experiments has to be considered as a strict requirement. Aim of this paper is to give a comprehensive presentation of this problem in the light of the results of a campaign of validation runs. The main outcone of this work is that the computational procedures, which have been developed for the NET project and then extensively used also for ITER studies, can be considered as experimentally validated in a sufficiently wide range of cases of interest. In particular, computed values are compared with experimental measurements made during some typical ASDEX-Upgrade discharges. From the electromagnetic point of view, many features of this machine are common to the ITER concept, so that the results of the validation can reasonably be extended to the ITER case.

日本語訳

ITER類似炉の設計における電磁気的側面は、複雑で高度な数値コードの広範な使用を必要とする。このため、NETチーム内ではコード開発に対して強い注意が払われてきた。特に、いくつかのイタリアの大学との協力を通じて、ここ数年で多くの数値手順が開発され、統合された。コードの信頼性を評価し、次世代のITER類似炉に対するそれらの予測に対する確信を得るために、実験に対するコードの検証は厳格な要件として考慮されなければならない。本論文の目的は、一連の検証ランの結果に照らして、この問題の包括的な提示を与えることである。この研究の主な成果は、NETプロジェクトのために開発され、その後ITER研究にも広く使用された計算手順が、関心のある十分に広い範囲のケースにおいて実験的に検証されたと見なすことができるということである。特に、計算値は、いくつかの典型的なASDEX-Upgrade放電中に行われた実験測定値と比較される。電磁気的な観点から、この装置の多くの特徴はITERの概念と共通しているため、検証の結果は合理的にITERの場合に拡張できる。

装置

asdex-upgrade中精度(概要文一致)iter中精度(概要文一致)
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