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Sedimentation behavior of mixed solid particles

混合粒子の堆積挙動

Sheikh, Md. A. R.*; Son, E.*; 神山 基紀*; 森岡 徹*; 松元 達也*; 守田 幸路*; 松場 賢一; 神山 健司; 鈴木 徹*

Sheikh, Md. A. R.*; Son, E.*; Kamiyama, Motoki*; Morioka, Toru*; Matsumoto, Tatsuya*; Morita, Koji*; Matsuba, Kenichi; Kamiyama, Kenji; Suzuki, Toru*

高速炉の炉心損傷事故時に形成される燃料デブリの堆積高さは、燃料デブリの冷却性及び臨界特性に影響する重要な要因の一つである。本研究では、燃料デブリの堆積挙動に関する実験データベースを構築するため、燃料デブリを模擬した特性(粒子径,密度,球形度等)の異なる固体粒子(アルミナ,スティール)の混合粒子を水プール中へ落下・堆積させる実験を行い、粒子ベッドの堆積高さを測定するとともに、均質粒子及び混合粒子から成るデブリベッドの堆積高さを予測する実験相関式を構築した。構築した実験相関式は粒子ベッドの堆積高さの測定結果と良く一致することを確認した。

During core-disruptive accidents in sodium-cooled fast reactors, the sedimentation behavior of fragmented debris is crucial for in-vessel retention. The height of the beds formed may influence both the cooling of the bed and the neutronic characteristics. To develop an experimental database of bed formation behavior, a series of experiments using simulant materials, namely, Al$$_{2}$$O$$_{3}$$, ZrO$$_{2}$$, and stainless steel, were performed under gravity-driven discharge of solid particles from a nozzle into a quiescent cylindrical water pool. The bed height was measured for particles of different size, density, and sphericity, and an injection nozzle with varying diameter, injection velocity, and injection height. From these experiments, an empirical correlation was established to predict the bed height for both homogeneous and mixed particles for the different properties. This correlation reproduces reasonably well the experimental trend in bed height.

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パーセンタイル:100

分野:Nuclear Science & Technology

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