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Topology optimization design for offshore platform jacket structure

机译:海上平台夹克结构的拓扑优化设计

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摘要

Offshore jacket platform is widely used as production or oil recovering platform in the shallow sea, and is also applied to the offshore wind turbine supporting structure in the recent years. The jacket structures are normally designed to be conservative and bulky according to various design codes. In this work, a structural optimization design method for jacket platform structure has been developed based on topology optimization theory. The topology optimization method is applicable at an early design stage, which can determine the initial structure and force transmission path. The whole design space is chosen as design variables, and the goal is to maximize the structural stiffness. A set of constraints based on multi-criteria design assessment is applied according to standard requirements, which includes stress, deformation, vibration and design variable constraints. The optimization results are compared with the original platform for static performance, dynamic performance and Ultimate Carrying Capacity (UCC). Results show that the optimized structure show a 13.7% reduction in the global mass, 46.31% reduction in the maximum equivalent stress, and large ultimate carrying capacity ability under the same environmental loads. It is demonstrated that the proposed topology optimization method is capable of effectively determining the optimal design of jacket platform structures.
机译:海上夹克平台广泛用作浅海的生产或油回收平台,近年来也适用于海上风力涡轮机支撑结构。夹套结构通常设计为根据各种设计代码保守和笨重。在这项工作中,已经基于拓扑优化理论开发了一种用于夹套平台结构的结构优化设计方法。拓扑优化方法适用于早期设计阶段,可以确定初始结构和力传输路径。整个设计空间被选为设计变量,目标是最大化结构刚度。根据标准要求应用了基于多标准设计评估的一组约束,包括压力,变形,振动和设计变量约束。将优化结果与原始平台进行比较,用于静态性能,动态性能和最终承载能力(UCC)。结果表明,优化的结构在全球质量下降13.7%,最大等效应力降低46.31%,以及相同环境负荷下的大终极承载能力。结果证明,所提出的拓扑优化方法能够有效地确定夹克平台结构的最佳设计。

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