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Integrated modeling of H-mode tokamak discharges with ASTRA and B2SOLPS numerical codes

I Yu Senichenkov, E G Kaveeva, V A Rozhansky, S P Voskoboynikov, P A Molchanov, D P Coster, G V Pereverzev, the ASDEX Upgrade Team, the Globus-M Team2014年Plasma Physics and Controlled FusionIF 2.2出版社

The numerical codes ASTRA and B2SOLPS5.2 are coupled to perform an integrated modeling of particle and energy transport and to obtain continuous self-consistent profiles of the main plasma parameters from the magnetic axis up to target plates. The unique distinguishing feature of the new coupling scheme is the presence of a region of overlap of the 1D and 2D computational domains, where the 1D solution coincides with the 2D one at the equatorial midplane. In the 2D transport equation system, all relevant drift flows and currents are taken into account, which allows us to calculate the poloidal variation of the density, temperatures and electrostatic potential, and obtain neoclassical radial fluxes in a self-consistent manner. Such an approach allows us to model tokamaks for which neoclassical effects give a significant contribution to the ion heat transport, and in particular, spherical tokamaks.

日本語訳

数値コードASTRAとB2SOLPS5.2を結合し、粒子・エネルギー輸送の統合モデリングを実施して、磁気軸からターゲット板までの主要プラズマパラメータの連続的な自己無撞着プロファイルを得る。新しい結合スキームの独自の特徴は、1次元および2次元の計算領域が重複する領域が存在することであり、そこでは赤道面において1次元解が2次元解と一致する。2次元輸送方程式系では、すべての関連するドリフト流と電流が考慮されており、これにより密度、温度、静電ポテンシャルのポロイダル方向の変化を計算し、新古典半径方向フラックスを自己無撞着に得ることができる。このアプローチにより、新古典効果がイオン熱輸送に有意な寄与を与えるトカマク、特に球状トカマクのモデリングが可能となる。

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