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Analysis of the Nonlinear Static and Dynamic Behavior of Offshore Structures

机译:海洋结构非线性静动力特性分析

摘要

Understanding static and dynamic nonlinear behavior of pipes and risers is crucial for the design aspects in offshore engineering fields. In this work, we examine two nonlinear problems in offshore engineering field: vortex Induced vibration of straight horizontal pipes, and boundary layer static solution of inclined risers. In the first study, we analyze the effect of the internal velocity of straight horizontal pipe and obtain the vortex induced vibration forces via coupling the pipe equation of motion with the recently modified Van Der Pol oscillator governing the lift coefficient. Our numerical results are obtained for two different pipe configurations: hinged-hinged, and clamped- clamped. The results show that the internal velocity reduces the vibration and the oscillation amplitudes. Also, it is shown that the clamped-clamped pipe configuration offers a wider range of internal velocities before buckling instability occurs. The results also demonstrate the effect of the end condition on the amplitudes of vibration. In the second study, we develop a boundary layer perturbation static solution to govern and simulate the static behavior of inclined risers. In the boundary layer analysis, we take in consideration the effects of the axial stretch, applied tension, and internal velocity. Our numerical simulation results show good agreement with the exact solutions for special cases. In addition, our developed method overcomes the mathematical and numerical limitations of the previous methods used before.
机译:了解管道和立管的静态和动态非线性行为对于海上工程领域的设计至关重要。在这项工作中,我们研究了海上工程领域中的两个非线性问题:涡旋引起的水平直管振动以及倾斜立管的边界层静解。在第一项研究中,我们分析了水平直管内部速度的影响,并通过将管的运动方程式与最近修改的控制升力系数的Van Der Pol振子耦合来获得涡流诱发的振动力。我们的数值结果是针对两种不同的管道配置而获得的:铰链式和夹钳式。结果表明,内部速度降低了振动和振荡幅度。另外,还表明,在发生屈曲不稳定性之前,夹紧管结构可提供更大范围的内部速度。结果还证明了最终条件对振动幅度的影响。在第二项研究中,我们开发了边界层摄动静态解,以控制和模拟倾斜立管的静态行为。在边界层分析中,我们考虑了轴向拉伸,施加的张力和内部速度的影响。我们的数值模拟结果与特殊情况下的精确解具有很好的一致性。此外,我们开发的方法克服了以前使用的先前方法的数学和数值限制。

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  • 作者

    Alfosail Feras;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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