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Reliability and Response Based Design of a Moored FPSO in West Africa Using Multivariate Environmental Contours and Response Surfaces

机译:基于多元环境轮廓和响应表面的西非停泊FPSO的可靠性和响应基于响应的设计

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The application of Inverse First-Order Reliability Methodology (IFORM) to the determination of response maxima using environmental contours and response surfaces is presented in this paper. In the first part concerned by the environmental data modelling, the directional effects are analysed for the current, wind and wave parameters, and taken into account if necessary. The response modelling is presented in the second part. Current, wind and wave responses are derived using response surface models (RSM). Directional coefficients are obtained from harmonic analysis. Two types of response are considered in this study: the total offset and the total tension in one particular mooring line. The third part is devoted to the application of IFORM approach to the specific case of a moored FPSO in West Africa in ballast condition. Design points and response maxima are computed with a robust iterative gradient method. Directional effects on response maxima are analysed. Results are compared with statistical extreme values from a Direct Simulation Analysis (DSA) in similar loading condition. A reasonably fair agreement is obtained between statistical extreme values from DSA simulations and response maxima from the proposed method combining IFORM approach and RSM technique.
机译:本文介绍了使用环境轮廓和响应表面的逆一阶可靠性方法(IFORM)对响应最大值的确定。在环境数据建模的第一部分中,对当前,风波参数分析定向效果,并考虑必要时考虑。响应建模在第二部分中呈现。使用响应表面模型(RSM)导出电流,风和波响应。从谐波分析中获得方向系数。本研究中考虑了两种类型的反应:一个特定系泊线的总偏移和总张力。第三部分致力于在镇流器条件下在西非被停泊FPSO的特定情况下拟入。使用稳健的迭代梯度方法计算设计点和响应最大值。分析了对响应最大值的定向效应。将结果与类似负载条件的直接仿真分析(DSA)的统计极值进行比较。从DSA模拟的统计极值值与来自IFORM方法的建议方法和RSM技术的方法之间的统计极值和响应最大值之间获得了合理的协议。

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