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Wave-in-Deck Load Analysis for a Jack-Up Platform

机译:自升式平台的甲板波荷载分析

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This paper describes the prediction of environmental loads on a typical three-leg jack-up platform under freak wave conditions. Considered were cases where the air gap is small and the hull is subject to impact-related wave-in-deck loads. The technique to predict wave loads was based on the use of a validated CFD code that solves the Reynolds-averaged Navier-Stokes equations. This code relies on the interface-capturing technique of the volume-of-fluid type to account for highly nonlinear wave effects. It computes 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. The Stokes fifth-order wave theory initialized volume fractions of water, velocity distributions in the solution domain, and time-dependent boundary conditions at inlet and outlet boundaries. This paper demonstrates that this technique can be a valuable numerical tool for preliminary designs as well as subsequent safety assessments. In particular, it shows that effects of different operating and design parameters on wave-in-deck loads, such as wave direction, wave height, wave period, and wind speed, can be evaluated with an affordable computing effort.
机译:本文介绍了在怪异的波浪条件下典型的三腿自升式平台上环境负荷的预测。考虑了气隙较小且船体承受与冲击有关的甲板波载荷的情况。预测波浪载荷的技术是基于使用经过验证的CFD代码来求解雷诺平均Navier-Stokes方程的。该代码依靠流体量类型的接口捕获技术来解决高度非线性的波效应。它计算水和空气的两相流动,以描述与具有破碎波和空气滞留的复杂自由表面形状相关的物理学,必须考虑流体动力学现象才能产生可​​靠的预测。斯托克斯五阶波动理论初始化了水的体积分数,溶液域中的速度分布以及入口和出口边界处的时间依赖边界条件。本文证明了该技术可以作为初步设计以及后续安全评估的有价值的数值工具。特别是,它表明,可以通过负担得起的计算工作来评估不同操作和设计参数对甲板波浪载荷的影响,例如波浪方向,波浪高度,波浪周期和风速。

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