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STRUCTURAL FATIGUE ASSESSMENT OF OFFSHORE PLATFORM CONSIDERING THE EFFECT OF NONLINEAR DRAG FORCE

机译:考虑非线性拖曳力影响的海上平台结构疲劳评估

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Fatigue assessment for jacket platforms is an indispensable practical issue. Because of the small-scale leg diameter, these structures are often drag dominated and wave-induced force in these structures can be tackled by using either linear or nonlinear form of Spectral Morison Equation. However, it is really complicated and difficult to incorporate nonlinear form of the Morison Equation to acquire the spectral density of the wave force, which is an important step of fatigue estimation. In this paper, in order to estimate the influence of nonlinear effect in wave force, fatigue assessments containing nonlinear effect for the fixed offshore structure are presented. Firstly, shallow-water jacket model locating at a water depth of 20 m is established and involved in calculation. Besides, for the sake of validating the effectiveness of the nonlinear term, the linear and nonlinear form of wave-induced force spectral densities are calculated by the Morison Equation in frequency domain. Secondly, the fatigue life of the jacket platform is assessed in time domain, where time-history of wave force can be obtained by transforming the linear or nonlinear wave force spectral densities from frequency domain to time domain. After the contrast of acquired fatigue life, the comparative results can indicate that the nonlinear drag force contributes a 14% fatigue damage to the total and the influences of the nonlinear term cannot be ignored for the jacket model.
机译:夹克平台的疲劳评估是必不可少的实际问题。由于小腿的直径较小,这些结构通常受阻力支配,并且可以通过使用线性或非线性形式的Spectral Morison方程来解决这些结构中的波浪感应力。然而,将莫里森方程的非线性形式并入以获取波浪的频谱密度确实是复杂且困难的,这是疲劳估计的重要步骤。为了估算非线性效应对波浪力的影响,本文提出了包含非线性效应的固定式海上结构疲劳评估方法。首先,建立了位于20 m水深处的浅水夹层模型,并进行了计算。此外,为了验证非线性项的有效性,利用频域中的莫里森方程来计算波致力谱密度的线性和非线性形式。其次,在时域上评估护套平台的疲劳寿命,在该时域中,可以通过将线性或非线性波动力谱密度从频域转换为时域来获得波动力的时程。通过对比获得的疲劳寿命,比较结果可以表明,非线性拖曳力对总疲劳贡献率为14%,并且对于套管模型,非线性项的影响不可忽略。

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