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A comparative study of interaction of random waves with a cluster of structures on a berm with RANS and LES models

机译:随机波与rans和les模型的群体结构与结构簇相互作用的比较研究

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The interactions of random waves with a cluster of structures positioned in a gridded array are investigated through a series of experiments and high-fidelity RANS and LES simulations. The performances of two different turbulence models, k - omega SST and LES, are evaluated in terms of the predicted flow field and resulting loading on the structures, both in the time and frequency domains. The comparative analyses show that the k - omega SST model predicts the free surface elevations slightly better than that of the LES model. The k - omega SST model fails to resolve the velocity fluctuations leading to the underestimation of the flow kinetic energy. The k - omega SST model underpredicts the wave runup/rundown, as well as the depth-integrated pressure force, compared to the LES model. The wave runup heights and onshore-directed depth-integrated pressure forces are found to follow the Rayleigh distribution. The comparisons of the wave runup heights and corresponding onshore-directed hydrodynamic forces follow a relatively linear trend that is within the -/+ 95% confidence intervals.
机译:通过一系列实验和高保真rans和LES模拟来研究随着定位在网格阵列中的结构的随机波的相互作用。两种不同的湍流模型,K - Omega SST和LES的性能在预测的流场方面评估,并在时间和频域中导致结构上的负载。比较分析表明,K - Omega SST模型预测比LES模型的自由表面高度略好。 K - Omega SST模型无法解决导致流动动能低估的速度波动。与LES模型相比,K - Omega SST模型欠下的波浪螺钉/损失,以及深度集成的压力。找到波浪升空高度和陆上导向的深度集成压力以遵循瑞利分布。波浪升高高度和相应的陆上定向流体动力学的比较遵循相对线性的趋势,即在-/ + 95%的置信区间内。

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