4.7 Article

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

期刊

COASTAL ENGINEERING
卷 168, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.coastaleng.2021.103941

关键词

k - omega SST; Wave runup height; Hydrodynamic pressure force; Wave-structure interaction; Turbulence

资金

  1. New York State Energy Research and Development Authority (NYSERDA) [105162]
  2. New York State Department of Environmental Conservation [77362]

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Through experiments and simulations, the study investigated the interactions of random waves with a cluster of structures, evaluating the performance of different turbulence models. The analysis showed the shortcomings of the k-omega SST model compared to the LES model.
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.

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