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Ultimate Strength of Cape-Size Bulk Carrier Under Alternate Hold Loading

机译:交替保持载荷下的海角大小散装载体的极限强度

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This paper present results from non-linear finite element (FE) analysis of a 170.000 DWT cape-size bulk carrier. Non-linearity in both geometry and material properties is accounted for in order to determine the ultimate capacity, related failure mechanisms and post-critical behaviour. A three cargo hold finite element (FE) model with a detailed representation of the geometry is developed. This model is analysed with different combinations of vertical bending moment, sea pressure and cargo load. The main focus is on assessment of ultimate hogging capacity when the vessel is carrying heavy cargo in alternate hold loading condition on a high draft. The effect of geometrical imperfections is evaluated. Different numerical solution procedures are tested. The calculated hull girder capacity is compared with the reference rules bending moment, calculated according to the IACS Common Structural Rules (CSR) (2008) for this vessel.
机译:本文存在非线性有限元(Fe)分析170.000dwt斗篷散装载体的结果。占几何和材料属性的非线性,以便确定最终的容量,相关的失败机制和关键后行为。开发了三个货物保持有限元(FE)模型,具有几何形状的详细表示。用不同的弯矩,海压和货物负荷的不同组合分析该模型。主要重点是在船舶在高选秀中携带重型货物时载重货物时的终极佣金能力评估。评估几何缺陷的效果。测试了不同的数值解决方案程序。将计算的船体梁容量与参考规则弯曲瞬间进行比较,根据IACS用于该容器的常见结构规则(CSR)(2008)计算。

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