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Ultimate strength of composite ships' hull girders in the presence of composite superstructures

机译:在存在复合上部结构的情况下复合船的船体梁的极限强度

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An extended formulation of the Coupled Beam Theory (CBT) developed by the authors is employed in order to calculate the ultimate strength of composite ships taking into account of the effect of the superstructure. A nonlinear finite element method is applied for solving the equilibrium equations. Behaviour of the stiffened composite panels in tension and compression is modelled by using progressive failure method. Both hull and superstructure of the ship are modelled using beam elements. Connection between beam elements representing hull and superstructure is made using specially developed spring box elements. Accuracy of the extended method is demonstrated using an available experimental result and also the results of finite element analysis. Also, a set of composite ships having different lengths of superstructure is generated and analysed. Efficiency of the composite superstructure in contribution to the ultimate bending strength of the composite ships is finally evaluated. (C) 2016 Elsevier Ltd. All rights reserved.
机译:作者开发了耦合梁理论(CBT)的扩展公式,以便考虑到上部结构的影响来计算复合材料船的极限强度。应用非线性有限元方法求解平衡方程。通过使用渐进破坏方法,对加筋的复合板在拉伸和压缩状态下的行为进行建模。船体和上层建筑均使用梁单元进行建模。代表船体的梁单元和上部结构之间的连接是使用专门开发的弹簧盒单元进行的。使用现有的实验结果以及有限元分析的结果证明了扩展方法的准确性。而且,产生并分析了具有不同上部结构长度的一组复合船。最后评估了复合上部结构对复合船极限抗弯强度的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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