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(사)한국터널지하공간학회

Development of hydro-mechanical-damage coupled model for low to intermediate radioactive waste disposal concrete silos

(사)한국터널지하공간학회 / (사)한국터널지하공간학회, (P)2233-8292; (E)2287-4747
2024, v.26 no.3, pp.191-208
https://doi.org/10.9711/KTAJ.2024.26.3.191
Ji Won Kim
Chang-Ho Hong
Jinseop Kim
Sinhang Kang

Abstract

In this study, a hydro-mechanical-damage coupled analysis model was developed to evaluate the structural safety of radioactive waste disposal structures. The Mazars damage model, widely used to model the fracture behavior of brittle materials such as rocks or concrete, was coupled with conventional hydro-mechanical analysis and the developed model was verified via theoretical solutions from literature. To derive the numerical input values for damage-coupled analysis, uniaxial compressive strength and Brazilian tensile strength tests were performed on concrete samples made using the mix ratio of the disposal concrete silo cured under dry and saturated conditions. The input factors derived from the laboratory-scale experiments were applied to a twodimensional finite element model of the concrete silos at the Wolseong Nuclear Environmental Management Center in Gyeongju and numerical analysis was conducted to analyze the effects of damage consideration, analysis technique, and waste loading conditions. The hydro-mechanical-damage coupled model developed in this study will be applied to the long-term behavior and stability analysis of deep geological repositories for high-level radioactive waste disposal.

keywords
Radioactive waste disposal, Concrete silo, Structural damage analysis, Coupled analysis, 방사성폐기물 처분, 콘크리트 사일로, 구조 손상 해석, 복합거동 해석

(사)한국터널지하공간학회