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Coupled dynamics of SeaStar mini tension leg platform

机译:SeaStar迷你张力腿平台的耦合动力学

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The role of mini tension leg platforms (TLP) in oil exploration and production in marginal deepwater fields is becoming increasingly important. SeaStar is a mini TLP that combines the simplicity of a spar and favourable response features of a TLP. In this paper, the results of a detailed numerical investigation of the coupled dynamic behaviour of SeaStar are reported with special attention to platform-tether coupling. The numerical study has been carried out using a finite element computer code developed for the nonlinear dynamic analysis of compliant offshore platforms in the time domain using Morison type wave loading. A typical SeaStar platform has been considered at two water depths, 215 m and 1000 m. Experimental investigation was conducted for a scaled model corresponding to 215 m water depth for validation of the numerical model. The model-prototype correlation studies have been conducted using the numerical model. Response amplitude operators of motion and tether tension are presented for the two typical water depths and conclusions drawn.
机译:微型张力腿平台(TLP)在边缘深水油田的石油勘探和生产中的作用变得越来越重要。 SeaStar是一个迷你TLP,结合了晶石的简单性和TLP的良好响应特性。在本文中,报告了对SeaStar耦合动力学行为进行详细数值研究的结果,并特别关注平台-绳索耦合。数值研究是使用有限元计算机代码进行的,该代码用于使用Morison型波浪载荷在时域内对顺应性海上平台进行非线性动态分析。已考虑在两个水深215 m和1000 m处使用典型的SeaStar平台。针对与215 m水深相对应的比例模型进行了实验研究,以验证数值模型。已经使用数值模型进行了模型-原型相关性研究。给出了两种典型水深的运动和系绳张力的响应幅度算符,并得出了结论。

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