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MODELLING THE HEAVE RESPONSE OF TENSION LEG PLATFORMS USING THE VOLTERRA SERIES

机译:使用Volterra系列建模张力腿平台的升降响应

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Tension Leg Platforms (TLPs) are predominately used for deep water oil and gas production. The use of tendons creates a small amplitude, high cyclic response in the vertical plane (heave, roll and pitch). Under these conditions fatigue cracking becomes an important consideration. The amplitude of the vertical motion is minimised by ensuring the natural frequency of the TLP lies above the energetic part of the wave spectrum. However, due to non-linear wave loading effects, it is possible for waves to create an output at their sum-frequency, which may consequently equal the natural frequency of the platform. This phenomenon is more commonly known as 'springing'. The Volterra method is a technique used to model the behaviour of TLPs under these conditions. This approach quantifies the linear and non-linear (quadratic, cubic, etc) responses separately using transfer functions, which are determined from the input and output of the system. In this paper an orthogonalised Volterra series for use with both Gaussian and non-Gaussian input data is presented. The data used in the Volterra modelling was collected from tests conducted on a model TLP. The wave height and platform motion were measured at wave frequencies around one, a half and a third of the model's heave natural frequencies. Both regular and irregular wave tests were performed to varying wave heights and frequencies. Using the Volterra method, the transfer functions were calculated up to the third order. Difficulties encountered due to the use of discrete data were identified and where possible their effects minimized. The results demonstrate clear evidence of springing, with dynamic amplification present at sum-frequencies close to the natural frequency of the platform for the non-linear responses.
机译:张力腿平台(TLP)主要用于深水油和天然气生产。使用肌腱在垂直平面中产生小的幅度,高循环响应(升降,滚动和间距)。在这些条件下,疲劳裂缝成为重要的考虑因素。通过确保TLP的自然频率在波谱的高度上方的高度上方,通过垂直运动的幅度最小化。然而,由于非线性波负载效应,波浪可以以其和频率产生输出,从而等于平台的自然频率。这种现象更俗称为“弹性”。 Volterra方法是一种用于在这些条件下模拟TLP的行为的技术。该方法通过传输函数分别定时定量线性和非线性(二次,立方等)响应,该函数由系统的输入和输出确定。在本文中,介绍了与高斯和非高斯输入数据一起使用的正交式Volterra系列。从模型TLP上进行的测试中收集了Volterra建模中使用的数据。在模型的升降天然频率的一个,半和三分之一的波频下测量波高和平台运动。对不同的波高和频率进行常规和不规则的波试验。使用Volterra方法,将传递函数计算为第三顺序。鉴定了使用离散数据而遇到的困难,并在可能的效果最小化。结果证明了爆炸的明显证据,具有在靠近平台的天然频率的SUM频率下存在的动态放大,用于非线性响应的平台的自然频率。

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