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Reliability assessment for ultimate longitudinal strength of ship hulls in composite materials

机译:复合材料船体极限纵向强度的可靠性评估

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摘要

A method for reliability assessment of the ultimate longitudinal strength of ship hulls in composite materials is described. The ultimate longitudinal strength of a ship hull is predicted by a progressive collapse analysis based on load-average strain curves of stiffened composite panels that are developed by a progressive failure nonlinear finite element analysis. Sagging, hogging and slamming conditions are regarded as three extreme loading conditions and the corresponding limit state functions are established with an appropriate stochastic modeling of the basic design variables, such as the modeling uncertainties, the materials properties, the lamina thickness, the lamination angle, the still-water moment, the wave-induced moment, and the slamming-induced moment. The reliability estimation is achieved by an improved first-order reliability algorithm. The sensitivities of the reliability estimates with respect to model parameters are determined and those parameters with small sensitivity factors are replaced by deterministic values to improve the computational efficiency in the prediction of the ultimate longitudinal strength of ship hull. An all-composite ship is analyzed for demonstration.
机译:描述了一种用于评估复合材料中船体极限纵向强度的方法。船体的极限纵向强度是通过基于加强复合板载荷平均应变曲线的渐进倒塌分析来预测的,而渐进破坏分析是通过渐进破坏非线性有限元分析得出的。下垂,起皱和砰击条件被认为是三个极端载荷条件,并且通过对基本设计变量进行适当随机建模,建立了相应的极限状态函数,例如建模不确定性,材料特性,层厚度,层压角度,静止水力矩,波浪感应力矩和砰击感应力矩。通过改进的一阶可靠性算法来实现可靠性估计。确定可靠性估计相对于模型参数的敏感性,并用确定性值替换那些敏感性系数较小的参数,以提高预测船体最终纵向强度的计算效率。分析全复合材料船以进行演示。

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