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Sediment transport and beach profile evolution induced by bi-chromatic wave groups with different group periods

机译:不同群周期双色波群诱发的泥沙输移和滩剖面演变

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In this paper, large-scale experimental data are presented showing the beach profile morphological evolution induced by four different bi-chromatic wave conditions characterized by very similar energy content between them but varying the modulation period. Important differences were observed in the resultant beach profiles as a function of the wave group periods. Larger variability in the profile evolution is generally observed for larger wave group periods and, more importantly, as the wave group period increases the distance between the generated breaker bar and the shoreline increases. The measured primary wave height to depth ratio (gamma) increases with the wave group period, which is consistent with the observed larger wave height at the breaking location. The primary wave breaking location is also observed at increasing distances with respect to the initial shoreline as the wave group period increases. The variation in gamma with wave group period is related to the selective energy dissipation of the higher primary frequency component (f(1)) during the wave group shoaling. Broad bandwith conditions (reduced wave group period) lead to larger dissipation of wave heights at the f(1) component relative to f(2) resulting in a reduction in the wave modulation and primary wave height at the breaking location. Suspended sediment fluxes obtained from collocated velocity and sediment concentration measurements in the surf zone showed a consistently larger contribution of the mean return flow to the suspended sediment fluxes compared with the wave group and primary wave components. The distinct beach profile evolution in terms of bar location is interpreted from an increasing distance of the mean breakpoint location and the location of maximum return flow with respect to the shoreline as the wave group period increases. (C) 2016 Elsevier B.V. All rights reserved.
机译:在本文中,提供了大规模的实验数据,这些数据显示了由四种不同的双色波条件引起的海滩剖面形态演变,其特征在于它们之间的能量含量非常相似,但调制周期有所不同。观测到的海滩剖面随波群周期的变化存在重要差异。通常在较大的波浪群周期中观察到剖面演化的较大可变性,更重要的是,随着波浪群周期的增加,生成的断路器杆和海岸线之间的距离也会增加。测得的主波高度与深度之比(γ)随着波群周期的增加而增加,这与在断裂位置观察到的较大波高相一致。随着波群周期的增加,在相对于初始海岸线的距离也越来越大的情况下,也可以观察到主波破碎的位置。伽玛随波群周期的变化与在波群暗沙过程中较高主频率分量(f(1))的选择性能量耗散有关。宽带条件(减小的波群周期)导致相对于f(2)在f(1)分量处的波高更大的耗散,从而导致波调制和断裂位置处的主波高降低。与海浪组和一次波成分相比,在海浪区通过并置速度和沉积物浓度测量获得的悬浮泥沙通量表明,平均回流对悬浮泥沙通量的贡献一直较大。随着波群周期的增加,从平均断点位置的距离增加和最大回流相对于海岸线的位置来解释在条形位置方面明显的海滩剖面演变。 (C)2016 Elsevier B.V.保留所有权利。

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