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Influence of the setdown of a tension leg platform on the extreme airgap response

机译:张力腿平台的下放对极限气隙响应的影响

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One distinguishing characteristic of a tension leg platform (TLP) is the setdown of the hull when the platform moves in its compliant modes (surge, sway and yaw). The nonlinear setdown has profound implications in various aspects of TLP design, but this paper focuses on its impact on the available airgap. Although there is general consensus that setdown should be included in the airgap assessment, to date there is no systematic procedure of analysis, and related literature is scarce. This paper aims to develop a simple method for incorporating setdown in the extreme response prediction of the airgap. The proposed method requires only the covariances of the platform motions, and these are available from a frequency domain analysis. From a case study, the crossing rates calculated by the proposed method is found to be in good agreement with Monte Carlo simulation, with only a slight disparity at high threshold levels. This work has also afforded physical insight; for example, it is discovered that the wave-frequency(WF) motions are more critical to the extreme airgap compared to the low-frequency (LF) motions, because the surface elevation is correlated with the WF motions, but not with the LF motions.
机译:张力腿平台(TLP)的一个显着特征是,当平台以其柔顺模式(喘振,摇摆和偏航)移动时,船体会下沉。非线性降落在TLP设计的各个方面都具有深远的意义,但本文重点关注其对可用气隙的影响。尽管人们普遍认为应该在气隙评估中包括抵销,但迄今为止,还没有系统的分析程序,并且相关文献稀少。本文旨在开发一种简单的方法来将减震纳入气隙的极端响应预测中。所提出的方法仅需要平台运动的协方差,并且这些可从频域分析中获得。从一个案例研究中,发现通过提议的方法计算的交叉速率与蒙特卡洛模拟非常吻合,在高阈值水平下只有很小的差异。这项工作还提供了物理见解;例如,发现与低频(LF)运动相比,波动频率(WF)运动对极端气隙更为关键,因为表面高度与WF运动相关,但与LF运动无关。

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