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An integrated framework including distinct algorithms for optimization of offshore towers under uncertainties

机译:包含独特算法的集成框架,可在不确定性条件下优化离岸塔架

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摘要

A reliability analysis is usually required to carry out design optimization of large structural systems to incorporate the uncertainties on the parameters such as material properties, external loads, manufacturing condition, etc. This procedure is called Reliability Based Design Optimization (RBDO), and requires a structural analysis program, a reliability analysis and optimization tools to couple effectively. In this paper, an integrated framework is proposed to implement the RBDO of the offshore towers. It has two distinct approaches to evaluate the probabilistic constraints; namely Reliability-Index based Approach (RIA) and Performance Measure Approach (PMA). The proposed framework also suggests Sequential Quadratic Programming (SQP) and Differential Evolution (DE) as optimization methods. Examples of monopod, tripod, and jacket towers under the reliability constraints based on limit states of the critical stress, buckling, and the natural frequency are presented to demonstrate the applicability of the implemented algorithm to realistic structural systems.
机译:通常需要进行可靠性分析,才能对大型结构系统进行设计优化,以纳入诸如材料特性,外部载荷,制造条件等参数的不确定性。此过程称为基于可靠性的设计优化(RBDO),需要进行以下操作:结构分析程序,可靠性分析和优化工具进行有效耦合。在本文中,提出了一个集成框架来实施离岸塔的RBDO。它有两种不同的方法来评估概率约束。即基于可靠性指标的方法(RIA)和性能评估方法(PMA)。所提出的框架还建议采用顺序二次规划(SQP)和差分进化(DE)作为优化方法。基于临界应力,屈曲和固有频率的极限状态,在可靠性约束下的单脚架,三脚架和夹层塔的示例被提出,以证明所实施算法对实际结构系统的适用性。

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