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MULTI-OBJECTIVE OPTIMIZATION DESIGN OF FLEXIBLE RISERS BASED ON BI-SCALE RESPONSE SURFACE MODELS

机译:基于双尺度响应面模型的柔性立管的多目标优化设计

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An optimized flexible riser design not only requests that the stress of local cross-section shouldn't exceed the allowable strength, but also can be compliant with the floater to improve the fatigue life. It should be particularly pointed out that the flexible riser is a typical multi-scale system, which consists of the local cross-sectional scale and the global configuration scale, which differentiates each other a lot from their geometrical scales. A bi-scale response surface model is established to perform the optimized design of flexible risers by considering the parameters of local cross-sections and global configurations simultaneously. The response surface model can be an effective surrogate model to integrate the local and global responses into one loop so that the computational efficiency can be increased significantly. In the bi-scale response model, design variables of a flexible riser are extracted and defined at both the local sectional scale and global configuration scale. Sensitivity analyses of the two objectives, ultimate tension and bending strength on the design variables are then deduced to establish the bi-scale optimization framework through the response surface methodology. Finally, the optimization framework is implemented on a flexible riser with lazy-wave configuration which is considered as a case study. The properties of the optimized flexible risers are compared with those without the optimization. It is found that the ultimate load bearing capacity and fatigue life of the optimized flexible riser are improved significantly. Moreover, the feasibility and effectiveness of the bi-scale optimization strategy are verified through numerical simulations, which indicates that the bi-scale response surface optimization methodology provides a new thought and approach to explore the design potential of flexible risers.
机译:优化的柔性立管设计不仅要求局部横截面的应力不应超过允许的力量,而且也可以符合浮动,提高疲劳寿命。应该特别指出的是,柔性立管是一种典型的多尺度系统,它包括局部横截面规模和全局配置规模,从它们的几何尺度彼此区分了很多。建立双级响应曲面模型来通过考虑局部横截面和全局配置的参数来执行灵活提升机的优化设计。响应表面模型可以是有效的代理模型,以将本地和全局响应集成到一个环路中,以便可以显着增加计算效率。在双级响应模型中,以局部截面规模和全局配置规模两者提取和定义灵活提升器的设计变量。然后推导出在设计变量上的两个目标,最终张力和弯曲强度的敏感性分析来建立通过响应表面方法的双级优化框架。最后,优化框架在具有惰性波形配置的柔性立管上实现,被认为是案例研究。将优化的柔性立管的性质与没有优化的人进行比较。结果发现,优化的柔性立管的最终承载能力和疲劳寿命显着提高。此外,通过数值模拟验证了双级优化策略的可行性和有效性,这表明双级响应表面优化方法提供了探讨柔性立管的设计潜力的新思路和方法。

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