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Nonlinear structural behaviour of membrane-type LNG carrier cargo containment systems under impact pressure loads at -163℃

机译:膜式液化天然气船货物围护系统在-163℃冲击压力下的非线性结构行为

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This paper is a sequel to the paper dealing with quasi-static responses previously studied by the authors. The structural failure of membrane-type liquefied natural gas carrier (LNGC) cargo tank is an important issue in the construction of ultra-large an LNG carrier. However, quasi-static analysis to investigate the structural failure is difficult and tends to give conservative results. To compensate the weak points of the quasi-static analysis, a procedure for the dynamic analysis was developed to assess the structural failure using nonlinear finite element method. A nonlinear finite element method is employed to model metal membrane, insulation and surface contacts. Various element formulations are tested at different points along a corrugated surface to optimise the accuracy of the model with respect to computation time. Material properties used in the model are calibrated based on experimentally measured values at cryogenic conditions (-163℃). The model is used to predict the structural failure under different impact pressure loads and loading patterns. It is concluded that the structural damage is less likely to occur under 30 bar.
机译:本文是作者先前研究的关于准静态响应的论文的续篇。膜式液化天然气船(LNGC)液货舱的结构故障是建造超大型LNG船的重要问题。但是,准静态分析难以研究结构破坏,并且倾向于给出保守的结果。为了弥补准静态分析的薄弱环节,开发了一种用于动力学分析的程序,以使用非线性有限元方法评估结构破坏。非线性有限元方法用于模拟金属膜,绝缘和表面接触。沿着波纹表面的不同点对各种元素配方进行测试,以相对于计算时间优化模型的准确性。模型中使用的材料特性是根据在低温条件下(-163℃)的实验测量值进行校准的。该模型用于预测不同冲击压力载荷和载荷模式下的结构破坏。结论是,在30 bar以下,不太可能发生结构损坏。

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