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Wave Load and Structural Analysis for a Jack-Up Platform in Freak Waves

机译:奇特波浪中自升式平台的波浪载荷和结构分析

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This paper analyzed the effects of freak waves on a mobile jack-up drilling platform stationed in exposed waters of the North Sea. Under freak wave conditions, highly nonlinear effects, such as wave run-up on platform legs and impact-related wave loads on the hull, had to be considered. Traditional methods based on the Morison formula needed to be critically examined to accurately predict these loads. Our analysis was based on the use of advanced computational fluid dynamics techniques. The code used here solves the Reynolds-averaged Navier-Stokes equations and relies on the interface-capturing technique of the volume-of-fluid type. It computed the two-phase flow of water and air to describe the physics associated with complex free-surface shapes with breaking waves and air trapping, hydrodynamic phenomena that had to be considered to yield reliable predictions. Lastly, the finite element method was used to apply the wave-induced loads onto a comprehensive finite element structural model of the platform, yielding deformations and stresses.
机译:本文分析了怪胎波对驻扎在北海裸露水域的移动自升式钻井平台的影响。在奇特的波浪条件下,必须考虑高度非线性的影响,例如平台腿上的波浪加速以及船体上与冲击有关的波浪载荷。需要严格审查基于Morison公式的传统方法,以准确预测这些负载。我们的分析是基于使用先进的计算流体动力学技术进行的。此处使用的代码解决了雷诺平均Navier-Stokes方程,并依赖于流体体积类型的界面捕获技术。它计算了水和空气的两相流动,以描述与复杂的自由表面形状有关的物理学,这些形状具有破裂波和空气滞留,必须考虑流体动力学现象才能产生可​​靠的预测。最后,使用有限元方法将波浪载荷施加到平台的综合有限元结构模型上,从而产生变形和应力。

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