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首页> 外文期刊>International Journal of Offshore and Polar Engineering >CFD-Based Study of Steep Irregular Waves for Extreme Wave Spectra
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CFD-Based Study of Steep Irregular Waves for Extreme Wave Spectra

机译:基于CFD的陡峭不规则波用于极端波谱的研究

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摘要

Offshore structures are exposed to irregular sea states consisting of breaking and nonbreaking waves. They perpetually experience extreme wave loads after installation in the open ocean. Thus, the study of steep waves is an important factor in the design of offshore structures. In the present study, a numerical investigation is performed to study steep irregular waves in deep water. The irregular waves are generated using the Torsethaugen spectrum, which is a double-peaked spectrum defined for a locally fully developed sea and which takes both the sea and swell waves into account. Thus, the generated waves can be very steep. The numerical investigation of such steep waves is quite challenging because of their high wave steepness and wave-wave interaction. The present investigation is performed using the open-source computational fluid dynamics (CFD) model. The wave generation and propagation of steep irregular waves in the numerical model are validated by comparing the numerical wave spectrum with the experimental input wave spectrum. The numerical results are in good agreement with experimental results. The changes in the spectral wave density during the wave propagation are studied. Further, the double-hinged flap wavemaker is also tested and validated by comparing the numerical and experimental free-surface elevations over time. The time and the frequency domain analysis is also performed to investigate the changes in the free-surface horizontal velocity. Complex flow features during the wave propagation are well captured by the CFD model.
机译:近海结构暴露于由不连续和不连续波浪组成的不规则海况下。安装在公海中后,他们将永远承受极端的波浪载荷。因此,陡波研究是海上结构设计的重要因素。在本研究中,进行了数值研究以研究深水中陡峭的不规则波。不规则波是使用Torsethaugen谱生成的,Torsethaugen谱是为局部完全发育的海域定义的双峰谱,同时考虑了海浪和涌浪。因此,产生的波可能非常陡峭。由于其陡峭度和波-波相互作用,对这种陡波进行数值研究具有很大的挑战性。本研究是使用开源计算流体动力学(CFD)模型进行的。通过比较数值波谱和实验输入波谱,验证了数值模型中陡峭不规则波的产生和传播。数值结果与实验结果吻合良好。研究了波传播过程中频谱波密度的变化。此外,还通过比较随时间变化的数值和实验自由表面标高来测试和验证双铰链襟翼造波器。还进行了时域和频域分析,以研究自由表面水平速度的变化。 CFD模型可以很好地捕获波传播过程中的复杂流动特征。

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