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Comprehensive study on the results of tension leg platform responses in random sea

机译:随机海中张力腿平台反应结果的综合研究

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Compliant offshore structures are used for oil exploitation in deep water. Tension leg platform (TLP) is a suitable type for very deep water. The nonlinear dynamic response of TLP under random sea wave load is necessary for determining the maximum deformations and stresses. Accurate and reliable responses are needed for optimum design and control of the structure. In this paper nonlinear dynamic analysis of TLP is carried out in both time and frequency domains. The time history of random wave is generated based on Pierson-Moskowitz spectrum and acts on the structure in arbitrary direction. The hydrodynamic forces are calculated using the modified Morison equation according to Airy's linear wave theory. The power spectral densities (PSDs) of displacements, velocities and accelerations are calculated from nonlinear responses. The focus of the paper is on the comprehensive interpretation of the responses of the structure related to wave excitation and structural characteristics. As an example a case study is investigated and numerical results are discussed.
机译:符合要求的海上结构用于深水开采。张力腿平台(TLP)是非常深的水的合适类型。 TLP在随机海浪载荷下的非线性动力响应对于确定最大变形和应力是必要的。需要精确可靠的响应,以实现结构的最佳设计和控制。本文在时域和频域都进行了TLP的非线性动态分析。随机波的时程是基于Pierson-Moskowitz谱生成的,并在任意方向上作用于结构。根据艾里线性波理论,使用修正的莫里森方程计算流体动力。位移,速度和加速度的功率谱密度(PSD)由非线性响应计算得出。本文的重点是对与激波和结构特性有关的结构响应的综合解释。举一个案例研究案例,并讨论了数值结果。

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