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- W2026164605 abstract "최근 안정성 및 경제성 측면에서 완전방호식 LNG 저장탱크(full-containment LNG storage tank)의 대안으로 검토되고 있는 멤브레인 LNG 저장탱크(membrane LNG storage tank)에 대해서 정량적 위험성 평가 방법(QRA; Quantitative Risk Analysis)과 유한요소해석법(FEM; Finite Element Method)을 통하여 안전성 평가를 수행하였다. 본 논문에서는 유한요소해석법(FEM)을 통한 구조안전성 평가에서 140,000 <TEX>$m^3$</TEX> 저장용량을 갖는 LNG 저장탱크의 두 가지 모델은 저장탱크 시스템에 대한 강도 안전성과 누출 안전성 측면에서 해석한 결과에 의하면 모두 안전한 것으로 평가되었다. 또한, 고장수목분석(FTA; Fault Tree Analysis)을 통하여 멤브레인 LNG 저장탱크에 안전성을 강화하기 위해 설계 초기모델에 안전장치로서 멤브레인 바닥부의 충격흡수장치(impact absorber structure), 1차 멤브레인 저장 파손 시 콘크리트 외부탱크(outer tank) 코너부(corner part)의 열충격(thermal stress)을 감소시킬 수 있는 열보호장지(secondary barrier) 및 펌프 낙하 시 안전장치로서 펌프캐쳐(pump catcher)를 보완하고 평가하였다. 결론적으로 개선된 멤브레인 LNG 저장탱크는 안전성 측면에서 완전방호식 LNG 저장탱크와 대등하다는 결론을 도출할 수 있었다. RMembrane LNG storage tanks have been recently investigated to replace full-containment LNG storage tanks because of safety and cost aspects. Quantitative Risk Analysis (QRA) and Finite Element Method (FEM) were used to evaluate safety of membrane LNG storage tanks. In this study, structural safety evaluation results via FEM analysis showed that both membrane type and full-containment type cryogenic LNG storage tanks with 140,000 <TEX>$m^3$</TEX> capacity were equivalently safe in terms of strength safety and leakage safety of a storage tank system. Also, Fault Tree Analysis (FTA) was used to improve the safety of membrane LNG storage tanks and membrane LNG tanks were modified by adding three safety equipments: impact absorber structure for the low part of the membrane, the secondary barrier to diminish the thermal stress of the corner part of the outer tank, and a pump catcher in case of falling of a pump. Consequently, the safety of the modified membrane LNG storage tanks were proved to be equivalent to that of full-containment LNG storage tanks." @default.
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- W2026164605 date "2012-12-31" @default.
- W2026164605 modified "2023-09-25" @default.
- W2026164605 title "A study on the safety improvement of above ground membrane LNG storage tank" @default.
- W2026164605 doi "https://doi.org/10.5855/energy.2012.21.4.339" @default.
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