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BREAKING WAVE IMPACT ON A PLATFORM COLUMN: AN INTRODUCTORY CFD STUDY

机译:打破波浪对平台栏的影响:介绍性CFD研究

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The slamming of breaking waves on the legs of large volume offshore platforms has received increased attention over recent years. To investigate this problem, MARINTEK's Wave Impact Loads JIP has, in one of its sub-tasks, focused towards an idealised model test setup of a rectangular cylinder in breaking waves. The model consists of a vertical column with a fragment of a horizontal deck attached. The model is fixed at a distance L ahead of the wave maker Physical scale model test experiments of the block in regular waves and in wave groups have been carried out in Phase 1 of the JIP (2008). The objective of this study is the CFD simulation of a long crested breaking wave and its impact on the aforementioned cylinder and deck structure in order to find out the feasibility of the numerical reconstruction of such events. The commercial CFD tool Star-CCM+ V5.03.0056 (www.cd-adapco.com) is used in this study. This paper considers results from the test setup, and compares the measured wave elevation against results from the CFD code. The position of the cylinder in relation to the breaking wave front is investigated in the numerical simulation in order to analyze its effect on the slamming force. Use of an unsteady wave boundary condition, matching the exact motion history of the wave-maker with the measured free surface elevation at the wave maker gives an almost exact matching between the computed wave profile and the measured wave profile. The improvement in the numerical tool of Star-CCM+ which makes it possible to use higher order time integration scheme for VOF significantly decreases the numerical diffusion of the wave propagation. This new scheme also enables the use of a time step 10 times larger than the first order scheme which reduces the computational time. Because a large time step can be chosen it is important that the time step is small enough to capture the correct time evolution of the physical phenomena of interest. Capturing the pressure evolution at a slamming event demands very high spatial resolution. Spatially averaged slamming pressures look fairly similar to the model test observations, while further work is needed for a more detailed comparison.
机译:近年来,大批量海上平台的腿上的破碎波浪砰的一声。为了调查这个问题,Marintek的波浪冲击负载JIP在其中一个子任务中,专注于在破坏波浪中的矩形圆柱的理想化模型测试设置。该模型由垂直列组成,附接水平甲板的片段。该模型固定在距离L之前的距离L,该距离在JIP(2008)的阶段1中进行了常规波和波组中的块的块的测试实验。本研究的目的是长冠式断裂波的CFD模拟及其对上述气缸和甲板结构的影响,以便找出这些事件的数值重建的可行性。本研究使用了商业CFD工具Star-CCM + V5.03.0056(www.cd-adapco.com)。本文考虑了测试设置的结果,并将测量的波升与CFD代码的结果进行比较。在数值模拟中研究了汽缸与断裂波前面的位置,以分析其对剥离力的影响。使用不稳定的波边界条件,将波浪制造机的精确运动历史与波浪制造机处的测量的自由表面高度匹配,在计算的波形轮廓和测量的波形轮廓之间具有几乎精确的匹配。 Star-CCM +的数值工具的改进,这使得可以使用更高阶时间的voF的时间集成方案显着降低了波传播的数值扩散。该新方案还使得能够使用比第一订单方案大的时间步长10倍,这减少了计算时间。因为可以选择大的时间步骤,重要的是,时间步长足以捕获感兴趣的物理现象的正确时间演变。在恐怖事件中捕获压力演变需要非常高的空间分辨率。空间平均陷入压力看起来相当类似于模型测试观察,而需要进一步的工作以更详细的比较。

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