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A Study on the improvement of accuracy of three-dimensional seismic evaluation analysis method for nuclear buildings using a large-scale observation system

大規模観測システムを活用した原子力建屋の3次元耐震評価解析手法の高精度化

西田 明美  ; 川田 学; 崔 炳賢  ; 飯垣 和彦 ; Li, Y. 

Nishida, Akemi; Kawata, Manabu; Choi, B.; Iigaki, Kazuhiko; Li, Y.

著者らは、地震を起因とした確率論的リスク評価(地震PRA)に資する3次元耐震評価解析手法の高精度化を目的とし、研究開発を進めている。2019年からは、原子力規制庁との共同研究の一環として、原子力機構の施設である高温工学試験研究炉(HTTR)を対象とし、地盤や建屋の床だけでなく壁にも加速度計を設置し、自然地震と人工波による多点同時観測が可能な大規模観測システムを構築し、観測データを活用した原子力施設の3次元耐震評価解析手法の精度向上及び妥当性確認に取り組んでいる。本論文では、大規模観測システムの概要及び本システムにより観測されたデータの分析結果から得られた知見について報告する。

We have conducted research and development with the aim of improving the accuracy of three-dimensional seismic evaluation analysis method for nuclear buildings that contributes to probabilistic risk assessment caused by earthquakes (seismic PRA). In 2019, we started our research on improving the accuracy and validating the three-dimensional seismic analysis method used for nuclear buildings using actual seismic observation records in collaboration with the Nuclear Regulation Authority. In this research, we constructed a large-scale observation system that enabled simultaneous observation at multiple positions during natural earthquakes or artificial waves by installing accelerometers not only on/in the soil and on the floors of the building but also on the walls of the building, targeting the High Temperature engineering Test Reactor, which is one of nuclear facilities of JAEA. In this paper, we report the outline of the large-scale observation system and the knowledge obtained from the analysis results of the seismic observation records acquired using this system.

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