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Comparing 1.5D ONETWO and 2D SOLPS analyses of inter-ELM H-mode plasma in DIII-D

L.W. Owen, J.M. Canik, R.J. Groebner, J.D. Callen, X. Bonnin, T.H. Osborne2010年被引用 12Nuclear FusionIF 3出版社

A DIII-D inter-ELM H-mode plasma that is in approximate transport equilibrium is analysed with the 1.5D ONETWO core code and the 2D SOLPS code. In order to investigate the importance of core–edge coupling and 2D effects, including divertor fuelling across the X-point and poloidal asymmetries that are not explicitly included in ONETWO, the domain of SOLPS is extended to very near the magnetic axis. Two principal objectives are (1) to determine whether poloidal asymmetries in the plasma distributions are large enough to vitiate a core-type interpretive plasma transport analysis and (2) to determine whether the interpretive transport coefficients and neutral beam power and particle sources from ONETWO, when used in 2D SOLPS full plasma simulations, yield the same quality fits to the measured upstream density and temperature profiles as obtained with ONETWO. Results show that only a small increase in the separatrix value of the particle diffusion coefficient, and no change in the thermal diffusivities from ONETWO was needed to get excellent agreement of the upstream SOLPS density and temperature profiles and the Thomson scattering and CER data. Good agreement of the ONETWO and SOLPS flux surface averaged distributions of the core electron and D+ densities and temperatures are also obtained. Likewise the C6+ density, with a simple chemical sputtering model based on a constant fraction of the divertor D+ flux, the core heat and particle fluxes and the neutral density reveal no 2D effects in the core/pedestal region that would vitiate a 1.5D treatment of the inter-ELM H-mode plasma.

日本語訳

ほぼ輸送平衡にあるDIII-Dのinter-ELM Hモードプラズマを、1.5D ONETWOコアコードと2D SOLPSコードを用いて解析した。ONETWOには明示的に含まれないX点を横切るダイバータ燃料供給とポロイダル非対称性を含む、コア-エッジ結合と2D効果の重要性を調べるために、SOLPSの領域を磁気軸の非常に近くまで拡張した。主な目的は2つあり、(1) プラズマ分布におけるポロイダル非対称性が、コア型の解釈的プラズマ輸送解析を無効にするほど大きいかどうかを判断すること、(2) ONETWOからの解釈的輸送係数と中性粒子ビームのパワーおよび粒子源を2D SOLPSの全プラズマシミュレーションで使用した場合に、ONETWOで得られたものと同じ品質の、測定された上流の密度・温度プロファイルへの適合が得られるかどうかを判断することである。結果は、上流のSOLPS密度・温度プロファイルとトムソン散乱およびCERデータとの優れた一致を得るために、粒子拡散係数のセパラトリックス値のわずかな増加のみが必要であり、ONETWOからの熱拡散率の変更は不要であったことを示している。コア電子とD+の密度および温度の、ONETWOとSOLPSのフラックス面平均分布の良好な一致も得られた。同様に、ダイバータD+フラックスの一定割合に基づく単純な化学スパッタリングモデルを用いたC6+密度、コアの熱・粒子フラックス、および中性粒子密度は、inter-ELM Hモードプラズマの1.5D処理を無効にするようなコア/ペデスタル領域における2D効果を明らかにしない。

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diii-d高精度(タイトル一致)

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DIII-DEdge localized modeH-modeScrape-Off Layer Plasma Simulation
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