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Structure Analysis and Design Optimization of Stiffeners in LNG Tanks

LNG 저장탱크 보강재의 구조해석 및 최적설계

  • Received : 2010.03.16
  • Accepted : 2012.01.09
  • Published : 2012.03.01

Abstract

This paper describes the structural analysis and optimization of stiffeners used in inner tanks for liquid natural gas (LNG) storage, so that the costs can be minimized while the critical buckling load of the inner tank still exceeds the external pressure exerted by the perlite. The original calculation of perlite pressure applied to the inner tank was based on Zick's code, which led to the overestimation of the external pressure, and consequently, an oversized stiffener. In this study, the effects of the material properties of perlite on the external pressure distribution are scrutinized, and the optimum dimensions of a single stiffener are finally obtained through a series of parametric studies. A 15% decrease in the cost of the stiffener compared with the original design is achieved.

본 연구에서는 액화천연가스(LNG 즉 Liquefied Natural Gas) 저장탱크의 보강재(stiffener) 설계를 위한 주요 설계인자들의 특성을 파악하고 구조 최적설계를 수행하였다. 보강재가 결합된 LNG 저장탱크의 내조는 외부의 펄라이트(perlite)의 압력에 의해 좌굴되지 않도록 설계되는데, 기존의 보강재 설계방법에서는 펄라이트 압력이 내조 높이에 무관하게 동일하다고 가정하여, 보강재의 과도한 설계를 초래하였다. 본 연구에서는 펄라이트의 물성값에 따른 펄라이트 압력분포의 영향을 살펴보았고, 최적설계를 통해 기존 설계보다 보강재의 재료비용이 15.3% 절감됨을 알 수 있었다.

Keywords

References

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