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An Application of Topology Optimization for Strength Design of FPSO Riser Support Structure  

Song, Chang-Yong (Dep't of Mechanical Engineering, Graduate School, Yonsei University)
Choung, Joon-Mo (Dep't of Naval Architecture and Ocean Engineering, Inha University)
Shim, Chun-Sik (Dep't of Naval Architecture and Marine Engineering, Mokpo National University)
Publication Information
Journal of Ocean Engineering and Technology / v.24, no.1, 2010 , pp. 153-160 More about this Journal
Abstract
This paper deals with the topology optimized design of the riser support structures for floating production storage and offloading units (FPSOs) under global and local loading conditions. For a preliminary study and validation of the numerical approach, a simplified plate under static loading is first evaluated with the representative topology optimization methods, the Homogenization Design Method (HDM) and Density Method (DM) or Simple Isotropic Material with Penalization (SIMP). In the context of the corresponding riser support structures, the design problem is formulated such that structure shapes based on design domain variables are determined by minimizing the compliance subject to a mass target, considering the stress criterion. An initial design model is generated based on an actual FPSO riser support configuration. The topology optimization results present improved design performances under various loading conditions, while staying within the allowable limit of the offshore area.
Keywords
Strength design; Riser support structure; Floating production storage and offloading unit(FPSO); Topology optimization;
Citations & Related Records
Times Cited By KSCI : 6  (Citation Analysis)
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