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Development of a nuclear-thermal coupled calculation code system

Shin-ichi Sugaya, Hiromitsu Kawasaki, Koubun Yamada, Yasushi Seki1995年Fusion Engineering and DesignIF 1.7出版社

AbstractTo obtain detailed time-dependent temperature distributions in fusion reactor nuclear components, a nuclear-thermal coupled calculation code system is developed. The code system couples the two-dimensional radiation transport code dot-3.5 and a finite element non-linear temperature analysis code adinat. The neutron flux and gamma-ray flux distributions in a fusion reactor model are first calculated with the dot-3.5 code, and these are then converted to time-dependent nuclear heating rate distributions by the apple-3 code. The nuclear heating rate distribution is then converted to a data format compatible with the input for the adinat code, to calculate the temperature distribution. The coupled calculation code system, i.e. dot-apple-adinat, has been tested for the calculation of the time-dependent temperature distributions in graphite, molybdenum and Li2CO3 probes for nuclear heating measurements in the fusion neutronics course at the Japan Atomic Energy Research Institute.

日本語訳

核融合炉構成部品における時間依存の温度分布を得るために、核-熱連成計算コードシステムが開発された。本コードシステムは、二次元放射線輸送コードDOT-3.5と有限要素非線形温度解析コードADINAを連成するものである。核融合炉モデルにおける中性子フラックス分布とガンマ線フラックス分布は、まずDOT-3.5コードを用いて計算され、その後、APPLE-3コードによって時間依存の核発熱率分布に変換される。核発熱率分布は、さらにADINAコードの入力に適合するデータ形式に変換され、温度分布を計算する。本連成計算コードシステム、すなわちDOT-APPLE-ADINAは、日本原子力研究所における核融合中性子学コースでの核発熱測定用のグラファイト、モリブデン、およびLi₂CO₃プローブにおける時間依存温度分布の計算に適用され、検証された。

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