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PWR一次冷却水環境の照射下での水素注入効果の評価,10; ラジオリシスと腐食電位の結合解析に及ぼす沸騰の影響

The Effects of hydrogen addition on the corrosive conditions of PWR primary coolant under irradiation, 10; Effects of boiling on combined analysis of water radiolysis and ECP

内田 俊介; 端 邦樹 ; 塙 悟史 ; 知見 康弘; 佐藤 智徳  

Uchida, Shunsuke; Hata, Kuniki; Hanawa, Satoshi; Chimi, Yasuhiro; Sato, Tomonori

ラジオリシスと腐食電位の結合解析コードWRAC-JAEAは、当初、JMTRのインパイルループ実験解析用に開発されたものである。中性のBWR条件から高pHのPWR条件まで広いpH範囲で使用可能であることを示した。BWRでは沸騰の影響が顕著であるが、PWRでもサブクール沸騰の影響への配慮が必要である。炉心部での燃料体に沿った沸騰に伴う分解生成種の液相から気相への移行を解析した。この結果、これまでのBWRの沸騰条件下のみでなく、PWRのサブクール沸騰下でも、本結合解析が適用可能であることを示し、in-pile loop実験解析のみでなく原子力発電プラントの腐食環境評価にも適用可能であることを示した。

A radiolysis and ECP combined code, WRAC-JAEA, has been originally developed for analysis of ECP experiments in the JMTR in-pile loop. It was confirmed that the code could be applied for neutral water conditions of BWRs to high pH water conditions of PWRs. The effects of boiling in BWRs on the analytical results were significantly large, while those of subcooled boiling in PWRs should be also considered. Radiolytic species transfer from liquid phase to gas phase in the coolant flow along the fuel was analyzed. As the results, it was confirmed that the combined code could be applied under subcooled boiling conditions as well as boiling conditions, and then, applicable for analysis of corrosive conditions in the nuclear power plants as well as in-pile loops.

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