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Modeling the Impact of the Implementation of a Submerged Structure on Surf Zone Sandbar Dynamics

机译:为水下区域沙洲动力学建模对水下结构实施的影响进行建模

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Coastal defense strategies based on structures are increasingly unpopular as they are costly, leave lasting scars on the landscape, and sometimes have limited effectiveness or even adverse impacts. While a clear improvement concerning aesthetic considerations using soft submerged breakwater is undeniable, their design has often focused on wave transmission processes across the crest of the structure, overlooking short- to medium-term morphodynamic responses. In this study, we used a time- and depth-averaged morphodynamic model to investigate the impact of the implementation of a submerged breakwater on surf zone sandbar dynamics at the beach of Sète, SE France. The hydrodynamic module was calibrated with data collected during a field experiment using three current profilers deployed to capture rip-cell circulation at the edge of the structure. The model showed good agreement with measurements, particularly for the longshore component of the flow (RMSE = 0.07 m/s). Results showed that alongshore differential wave breaking at the edge of the submerged breakwater drove an intense (0.4 m/s) two-dimensional circulation for low- to moderate-energy waves. Simulations indicated that inner-bar rip channel development, which was observed prior to the submerged reef implementation, was inhibited in the lee of the structure as rip-cell circulation across the inner bar disappeared owing to persistently low-energy breaking waves. The cross-shore sandbar dynamics in the lee of the structure were also impacted due to the drastic decrease of the offshore-directed flow over the inner-bar during energetic events. This paper highlights that implementation of a submerged breakwater results in larges changes in nearshore hydrodynamics that, in turn, can affect overall surf zone sandbar behavior.
机译:基于结构的海防策略成本高昂,在景观上留下持久的疤痕,有时效果有限,甚至产生不利影响,因此越来越不受欢迎。尽管不可否认的是,使用软浸式防波堤在美学方面有明显的改进,但其设计通常集中在整个结构波峰的波传播过程上,忽略了中短期的形态动力响应。在这项研究中,我们使用了时间平均和深度平均的形态动力学模型来研究实施水下防波堤对法国东南部Sète海滩冲浪区沙洲动力学的影响。使用三个电流剖面仪,利用在野外实验期间收集的数据对水动力模块进行校准,这些电流剖面仪部署为捕获结构边缘的裂隙细胞循环。该模型与测量值显示出良好的一致性,特别是对于长岸流(RMSE = 0.07 m / s)。结果表明,在淹没式防波堤边缘处的近岸微分波破裂驱动了中低能波的强烈二维流动(0.4 m / s)。模拟表明,在实施水下珊瑚礁之前观察到的内杆裂隙通道发展在结构的背风中受到抑制,因为由于持续的低能破碎波,跨内杆的裂隙细胞循环消失了。在高能事件期间,结构内层的跨岸沙洲动力学也受到影响,这是由于在内层上的海上定向流急剧减少。本文强调指出,实施淹没式防波堤会导致近岸水动力发生较大变化,进而影响整体冲浪区沙洲的行为。

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