THE EFFECT OF WIND STRESS ON WAVE OVERTOPPING ON VERTICAL SEAWALL

Sara Tuozzo, Angela Di Leo, Mariano Buccino, Fabio Dentale, Eugenio Pugliese Carratelli, Mario Calabrese
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Abstract

Onshore wind can significantly affect wave overtopping process and increase mean overtopping discharge. Thus, the wind should be an important variable in coastal design process. However, despite many researches have analyzed the influence of wind on the overtopping, there is still a lack of exhaustive knowledge about this phenomenon. To further analyze the wind effects, the CFD model FLOW-3D has been used to investigate wave overtopping at vertical seawalls. The single-fluid approach has been adopted, i.e. the presence of wind has been simulated via the wind shear stress on the sea surface. The main aim of this work is to verify the ability of this simplified numerical modelling to capture the macro-processes involved in the phenomenon of wave overtopping. The presence of wind shear stress has led to physically consistent results. It confirmed that as the mean overtopping discharge decreases, as the wind effect increases. Furthermore, numerical results have shown that the advection of water droplets behind the structure by the wind is the key mechanism for the enhancement of wave overtopping. Finally, by gathering numerical results and laboratory data carried out by Durbridge (2021), a new predictive formula to estimate the wind factor is provided.
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风应力对垂直海堤波浪超顶的影响
陆上风能显著影响波浪过顶过程,增加平均过顶流量。因此,风应该是海岸设计过程中的一个重要变量。然而,尽管有许多研究分析了风对过顶的影响,但对这一现象仍缺乏详尽的认识。为了进一步分析风的影响,采用CFD模型FLOW-3D对垂直海堤的波浪过顶进行了研究。采用单流体方法,即通过海面上的风切应力模拟风的存在。这项工作的主要目的是验证这种简化的数值模拟捕捉波浪过顶现象所涉及的宏观过程的能力。风切应力的存在导致了物理上一致的结果。结果表明,随着平均过顶流量的减小,风的影响增大。此外,数值结果还表明,水滴在结构后面被风平流是增强波浪过顶的关键机制。最后,通过收集数值结果和Durbridge(2021)进行的实验室数据,提供了估算风因子的新预测公式。
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