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論文

Numerical simulation of the solid particle sedimentation and bed formation behaviors using a hybrid method

Sheikh, M. A. R.*; Liu, X.*; 松元 達也*; 守田 幸路*; Guo, L.*; 鈴木 徹*; 神山 健司

Energies (Internet), 13(19), p.5018_1 - 5018_15, 2020/10

 被引用回数:0

In the safety analysis of sodium-cooled fast reactors, numerical simulations of various thermal-hydraulic phenomena with multicomponent and multiphase flows in core disruptive accidents (CDAs) are regarded as particularly difficult. In the material relocation phase of CDAs, core debris settle down on a core support structure and/or an in-vessel retention device and form a debris bed. The bed's shape is crucial for the subsequent relocation of the molten core and heat removal capability as well as re-criticality. In this study, a hybrid numerical simulation method, coupling the multi-fluid model of the three-dimensional fast reactor safety analysis code SIMMER-IV with the discrete element method (DEM), was applied to analyze the sedimentation and bed formation behaviors of core debris. Three-dimensional simulations were performed and compared with results obtained in a series of particle sedimentation experiments. The present simulation predicts the sedimentation behavior of mixed particles with different properties as well as homogeneous particles. The simulation results on bed shapes and particle distribution in the bed agree well with experimental measurements. They demonstrate the practicality of the present hybrid method to solid particle sedimentation and bed formation behaviors of mixed as well as homogeneous particles.

論文

Development of a criticality evaluation method considering the particulate behavior of nuclear fuel

酒井 幹夫; 山本 俊弘; 村崎 穣; 三好 慶典

Nuclear Technology, 149(2), p.141 - 149, 2005/02

 被引用回数:1 パーセンタイル:88.54(Nuclear Science & Technology)

従来から行われてきたMOX燃料粉末の混合撹拌時の臨界特性評価では、粉体混合に伴うMOX燃料粉末界面(粉末と空気の境界面)の変形や粉末の混合状態を考慮することができなかった。そこで、離散要素法と核計算を結合し、粉末界面の変形を考慮できる臨界特性評価手法を開発した。粉末界面変形及び粉末の混合状態が中性子実効増倍率に及ぼす影響を評価した。

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