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Experimental and Numerical Study of Coupled Dynamic Response of a Mini Tension Leg Platform

机译:微型张力腿平台耦合动力响应的实验与数值研究

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摘要

Role of mini tension leg platforms (TLP) in oil exploration and production in marginal deepwater fields is becoming increasingly important. Mini TLP combines the simplicity of a spar and favorable response features of a TLP. In this paper, the results of a detailed experimental and numerical investigation of the coupled dynamic behavior of a mini TLP are reported with special attention to hull-tether coupling. The experimental study has been carried out using a scaled model in wave flume with specially designed tethers whose first two "string" natural frequencies are excited by waves, thus achieving strong hull-tether coupling. The numerical study has been carried out using a nonlinear time domain finite element method specifically addressed to compliant offshore platforms using a combination of potential theory based wave loading and Morison-type wave loading. Extensive comparisons between numerical and experimental results have been made both for platform motions and deflected shapes of the tethers 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越来越重要。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,报告了对小型TLP耦合动力学行为进行详细实验和数值研究的结果,并特别关注了船体-绳索耦合。实验研究是在波浪槽中使用比例模型进行的,该模型具有经过特殊设计的系链,其前两个“弦”固有频率被海浪激发,从而实现了牢固的船体-系链耦合。数值研究是通过使用非线性时域有限元方法进行的,该方法专门针对顺应性海上平台,结合了基于势能理论的波浪载荷和Morison型波浪载荷。对于平台的运动和系绳的挠曲形状,已经在数值和实验结果之间进行了广泛的比较,并得出了结论。

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