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Sediment transport patterns in front of reflective structures under wind wave-dominated conditions

机译:风波主导条件下反射结构前的泥沙输移规律

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This article presents a field study of the bed response near linear reflective structures under wind wave-dominated conditions at the Motril harbor (Spain) on the Mediterranean coast. In 1999 the harbor breakwater was enlarged 600 m by adding vertical caissons. Before this enlargement took place, no significant bed features had been observed in the area. However, at the end of 2004 high resolution bathymetry showed the existence of 3-4 bars parallel to the structure with lengths between crests of 0(70 m) in the cross-shore direction and heights of 0(25 cm). Toe erosion with an amplitude up to 25 cm was also observed along the structure. The necessary conditions for the appearance of the bar system are: (1) a standing wave pattern in front of the structure; (2) local satisfaction of the wave-height and wave-period threshold limits for sediment mobility. Using an energy-based approach, we analyze the time series of sea states with sediment transport capacity after breakwater construction. The cumulative distributions of the shear velocities related to WSW-SW sea states show that all the bars have a greater probability of being retype features (predominant bed load) under generalized sediment transport conditions. These conclusions were verified by matching nodal lines of standing WSW-SW wave patterns with the bar locations. The results suggest that the Motril bar system of Motril is possibly generated by the standing wave patterns induced by several sea states with peak periods of O(10 s) and significant sediment transport capacity resulting from WSW-SW severe storm events that occurred in Motril after breakwater construction. This article highlights the need to verify in field conditions the present threshold limits for sediment transport mobility.
机译:本文提出了在地中海沿岸的莫特里尔港(西班牙)风波主导条件下线性反射结构附近床响应的现场研究。 1999年,港口防波堤通过增加垂直沉箱而扩大了600 m。在扩大之前,在该地区没有观察到明显的床特征。然而,在2004年底,高分辨率测深表明存在3-4条与该结构平行的横条,其跨岸方向的波峰长度为0(70 m),高度为0(25 cm)。沿结构还观察到脚趾侵蚀,幅度最大为25 cm。钢筋系统外观的必要条件是:(1)结构前面的驻波图; (2)沉积物迁移率的波浪高度和波浪周期阈值极限的局部满意度。使用基于能量的方法,我们分析了防波堤建成后具有沉积物传输能力的海况的时间序列。与WSW-SW海状态有关的剪切速度的累积分布表明,在普遍的泥沙输运条件下,所有钢筋都具有较大的被改型特征的可能性(主要的床体载荷)。通过将站立的WSW-SW波型的节点线与钢筋位置进行匹配,可以验证这些结论。结果表明,Motril的Motril bar系统可能是由几个海洋状态引起的驻波模式产生的,这些海状态的峰值周期为O(10 s),并且由于WSW-SW严重风暴事件在Motril发生后造成了严重的泥沙输送能力防波堤建设。本文强调需要在野外条件下验证沉积物迁移流动性的当前阈值限制。

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