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Dynamic analyses and preliminary design of offshore triceratops in ultra‑deep waters

机译:超深水域近海三角龙的动力学分析和初步设计

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摘要

More adaptable geometric form of offshore platforms, counting on the benefits of form-dominant design, is effective tornencounter various environmental loads. Offshore triceratops is a new-generation offshore platform, whose conceptual designrnshowed good degree-of-adaptability to ultra-deep-water conditions. Deck is partially isolated from the buoyant legs by ballrnjoints by allowing transfer of partial displacements of buoyant legs to deck but restraining transfer of rotational responses.rnPrior to the suitability assessment of triceratops for ultra-deep waters, detailed dynamic analysis on the preliminary geometricrnform is necessary as a proof of validation for design applications. Current study discusses a detailed numeric analysis ofrntriceratops at 2400 m water depth under regular and irregular waves; preliminary design of both buoyant legs and the deckrnis also presented. Buoyant Legs are designed as stiffened cylinders and the deck is designed as the integrated truss system.rnIn compliant structures, the role of tethers is of paramount importance. Hence, the stress analysis and fatigue analysis ofrnthe tethers are also carried out to assess the service life of the structure. Presented study shall aid offshore engineers andrncontractors to understand suitability of triceratops, in terms of design and dynamic response behaviour.
机译:依靠形式优势的设计优势,海上平台的几何形状更具适应性,可有效克服各种环境负荷。离岸三角龙是新一代的离岸平台,其概念设计显示出对超深水条件的良好适应性。通过允许将浮力支腿的部分位移转移到甲板上但抑制旋转响应的传递,通过球形接头将甲板与浮力支腿部分隔离。在对三角龙适用于超深水域进行适宜性评估之前,需要对初步几何形状进行详细的动力学分析作为设计应用程序验证的证明。目前的研究讨论了在规则和不规则波浪作用下水深2400 m的三角龙的详细数值分析。还介绍了浮力支腿和副甲板的初步设计。浮力支腿设计为加劲圆柱体,甲板设计为集成桁架系统。在顺应性结构中,系绳的作用至关重要。因此,还进行了系绳的应力分析和疲劳分析,以评估结构的使用寿命。提出的研究将帮助海上工程师和承包商从设计和动态响应行为方面了解三角龙的适用性。

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