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Modeling of eutectic reaction between molten stainless steel and B$$_{4}$$C for severe accident simulations

シビアアクシデントシミュレーションのための溶融ステンレス鋼とB$$_{4}$$C間の共晶反応のモデル化

Liu, X.*; 守田 幸路*; 山野 秀将   

Liu, X.*; Morita, Koji*; Yamano, Hidemasa

実験結果に基づき、共晶物質成長速度を放物線型法則によりモデル化した。熱及び物質移行過程についても共晶物質の平衡及び非平衡相変化を考慮してモデル化された。共晶物の熱物性値もまた実験で計測されたデータを用いて、熱物性及び状態方程式の解析モデルに組み込んだ。

On the basis of experimental results, growth of the eutectic material is modeled by the parabolic rate law. Heat and mass transfer processes are also modeled considering both the equilibrium and non-equilibrium phase changes of eutectic material. Thermophysical properties of eutectic material obtained from the experimental measurements are also included in the analytic thermophysical property model and analytic equation-of-state model.

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