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Ultimate limit state analysis of a double-hull tanker subjected to biaxial bending in intact and collision-damaged conditions

机译:双壳油轮在完整和碰撞损坏条件下进行双壳油轮的终极极限状态分析

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This study presents a comparison between nonlinear finite element analysis (FEA) and the Smith method of Fujikubo et al. (2012). The objective was to compare the accuracy and computation effort of the two methods for a double-hull tanker under biaxial bending and various ship conditions: intact hull structure, collision-damaged hull structure, newly built condition, and ship hull aged due to corrosion. The results for the non-corroded and intact ship hull structures showed good agreement between FEA, the Smith method and IACS CSR-H for vertical bending loading conditions. For all other bending load combinations, FEA always gave lower ultimate bending moments than the Smith method. The differences between the two methods were larger for the corroded and damaged ship hull structure than for other conditions. Results from ultimate strength analyses of the collision-damaged hull structures showed that both methods captured the expected asymmetric ultimate strength response due to asymmetric damage. A residual strength index calculation showed that the reduction was larger for the FEA than for the Smith method. A procedure is proposed that combines results of a few FEAs with the advantages of the Smith method to generate accurate biaxial bending load interaction curves for different ship conditions.
机译:该研究呈现了非线性有限元分析(FEA)与Fujikubo等人的史密斯方法之间的比较。 (2012)。该目的是在双轴弯曲和各种船舶条件下比较双壳油轮两种方法的准确性和计算工作:完整的船体结构,碰撞损坏的船体结构,新建的状态和由于腐蚀而老化的船体。非腐蚀性和完整船船体结构的结果显示FEA,史密斯方法和IACS CSR-H之间的良好一致性,用于垂直弯曲的负载条件。对于所有其他弯曲载荷组合,FEA总是比史密斯方法更低的终极弯曲力矩。对于腐蚀和损坏的船体结构,两种方法之间的差异比其他条件更大。碰撞损坏船体结构的最终强度分析结果表明,两种方法由于不对称损伤,两种方法都捕获了预期的不对称极限强度响应。残留的强度指数计算表明,FEA的减少比史密斯方法更大。提出了一种过程,将几种令人担忧的结果与史密斯方法产生精确的双轴弯曲负荷相互作用曲线,以用于不同船舶条件。

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