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Model calculation of Cr dissolution behavior of ODS ferritic steel in high-temperature flowing sodium environment

高温流動Na中のODS鋼のCr溶出挙動モデル計算

大塚 智史   ; 丹野 敬嗣  ; 岡 弘   ; 矢野 康英  ; 加藤 章一 ; 古川 智弘  ; 皆藤 威二 

Otsuka, Satoshi; Tanno, Takashi; Oka, Hiroshi; Yano, Yasuhide; Kato, Shoichi; Furukawa, Tomohiro; Kaito, Takeji

高温流動Na中での燃料被覆管からのCr溶出挙動に及ぼす各種試験パラメータ(Na中溶存Cr濃度、試験温度、軸方向温度勾配、Na流速)の影響を系統的に把握するための計算モデルを構築し、数値計算を行った。Cr溶出挙動が液体Na中の溶存Cr濃度の微量の変化に大きく影響される計算結果を得た。Na中のCr濃度は、Na冷却高速炉(SFR)内における燃料被覆管からのCr溶出挙動の予測・制御のため、注目すべき重要なパラメータであると考えられる。Na中溶存Cr濃度を0.07wtppmmとした場合の本モデル計算で得たODS鋼被覆管肉厚方向のCr濃度プロファイルは、BOR-60照射試験データとよく一致した。

A calculation model was constructed to systematically study the effects of environmental conditions (i.e. Cr concentration in sodium, test temperature, axial temperature gradient of fuel pin, and sodium flow velocity) on Cr dissolution behavior. Chromium dissolution was largely influenced by small changes in Cr concentration (i.e. chemical potential of Cr) in liquid sodium in the model calculation. Chromium concentration in sodium coolant, therefore, should be recognized as a critical parameter for the prediction and management of Cr dissolution behavior in the sodium-cooled fast reactor (SFR) core. Because the fuel column length showed no impact on dissolution behavior in the model calculation, no significant downstream effects possibly take place in the SFR fuel cladding tube due to the much shorter length compared with sodium loops in the SFR plant and the large axial temperature gradient. The calculated profile of Cr concentration along the wall-thickness direction was consistent with that measured in BOR-60 irradiation test where Cr concentration in sodium bulk flow was set at 0.07 wt ppm in the calculation.

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パーセンタイル:21.23

分野:Materials Science, Multidisciplinary

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