日本機械学会論文集
Online ISSN : 2187-9761
ISSN-L : 2187-9761

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高速炉向け3次元免震システムの研究開発(1/2縮尺サイズの試験体を用いた静的特性に関する試験的検討)
深沢 剛司平山 智之横井 忍廣田 昭彦杣木 孝裕湯川 正貴宮川 高行内田 昌人山本 智彦宮崎 真之渡壁 智祥岡村 茂樹藤田 聡
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ジャーナル オープンアクセス 早期公開

論文ID: 23-00023

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The seismic resistance of nuclear power plants, particularly those using Sodium-Cooled Fast Reactor (SFR) design, is of crucial significance. This paper presents an innovative three-dimensional seismic isolation system developed to address the inherent challenges of SFR design. Given that these designs necessitate components with a thin wall thickness for achieving high-temperature structural integrity, this can inadvertently lead to a disadvantageous seismic design. Hence, reducing seismic forces in both horizontal and vertical directions is crucial to ensure seismic resistance. This isolation system, designed for application to the reactor building, aims to make it an effectively isolated entity within the larger plant structure. It has been developed to manage seismic forces acting on components, thereby balancing the requirements of both seismic and high-temperature structural designs. The feasibility and effectiveness of this design have been verified through static loading tests conducted on a half-scale model of the system, investigating force-displacement relationships in both horizontal and vertical directions. The results demonstrate that the system's horizontal supporting function provides a stable load path. Additionally, it validates the decoupling of force-displacement interactions under the condition of simultaneous horizontal and vertical loading, an essential presumption in the formulation of the design basis ground motion.

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https://creativecommons.org/licenses/by-nc-nd/4.0/deed.ja
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