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WAVE PATTERNS, WAVE INDUCED FORCES AND MOMENTS FOR A GRAVITY BASED STRUCTURE PREDICTED USING CFD

机译:使用CFD预测的基于重力的基于重力的波形图案,波引起的力和矩

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Gravity Based Structures (GBSs) are commonly used in the offshore oil and gas industry for storage during the production of hydrocarbons. The GBS sits on the sea bed, but it is subjected to forces and moments caused by waves. Obtaining accurate predictions of the magnitude of wave induced forces and bending moments is essential input to the structural design. Other key operational factors are the wave field in the vicinity of the structure and the amount of green water that will come onto the deck of the GBS. Scale model experiments can be used to obtain these predictions but this is an expensive option, especially in the early stages of a design, when many different concepts may be considered. An alternative method is to use Computational Fluid Dynamics (CFD). One CFD approach that is particularly suited to the challenges of predicting the required performance parameters for a GBS is the Volume of Fluid method, which is available in the commercial code Flow-3D. This paper presents the numerical simulation of the wave field around a surface piercing cylinder using the Volume of Fluid approach and compares it to published results. It also presents the simulations of the forces, moments and wave field around a proposed Gravity Based Structure, for which model data was available. The results show that predictions made using the Volume of Fluid method agree well with the observed wave patterns close to the structure in both cases, and that the method also gives good predictions of the observed forces and bending moments acting on the GBS.
机译:基于重力的结构(GBSS)通常用于海上石油和天然气工业,用于生产碳氢化合物的储存。 GBS坐落在海上床上,但它受到波浪引起的力量和时刻。获得对波引起力和弯曲力矩的大小的精确预测是结构设计的必要输入。其他关键操作因素是结构附近的波浪场和将进入GBS甲板上的绿色水量。尺度模型实验可用于获得这些预测,但这是一种昂贵的选择,特别是在设计的早期阶段,当可以考虑许多不同的概念时。另一种方法是使用计算流体动力学(CFD)。一种特别适用于预测GBS所需性能参数的挑战的一种CFD方法是商业代码流-3D中可用的流体方法的体积。本文介绍了使用流体方法的体积和将其与公布结果进行比较的表面刺穿缸周围的波场的数值模拟。它还呈现了基于重力的基于重力的力,矩和波浪场的模拟,其可获得型号数据。结果表明,使用流体方法的体积制造的预测与在两种情况下接近该结构的观察到的波形图案吻合,并且该方法还提供了对在GBS上作用作用的观察力和弯矩的良好预测。

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