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Influence of particle shape on pebble transport in a mixed sand and gravel beach during low energy conditions: Implications for nourishment projects

机译:低能条件下颗粒形状对鹅卵石混合滩中卵石迁移的影响:对营养项目的启示

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Beach nourishments using coarse-gravel sediments are becoming a frequent practice to buffer coastal erosion, but usually little attention is spent on fill material characteristics. A better understanding of the influence of sediment characteristics on transport is crucial to establish the best compatibility of fill material with native beach sediments. Pebble transport is here investigated by means of the RFID tracing technique. The main purpose of the experiment was to verify whether the prevalent shapes populating the beach (disks and spheres) show a different transport under low energy conditions. Tracers were injected in a small and straight portion of a mixed sand and gravel beach, deploying couples of marked particles of the same size (one sphere and one disk shaped pebble on the main geomorphic elements of the beach face), in order to avoid size influence on transport. Tracer recovery was undertaken 6 and 24 h after the injection and wave characteristics were measured during the whole experiment duration by means of a S4 directional wave gauge. After 6 h the marked pebbles underwent significant displacement with a prevalent longshore component, which became evident after 24 h. The swash zone proved to be the most dynamic area of the beach. Spheres covered longer distances and resulted more dynamic than disks, thanks to their capability to roll-over in the swash zone. Lately, many experiments have been carried out with marked pebbles, but this is the first time that an experiment is conceived to prove how shape influences pebble transport. Disks are more subject to burial and due to their higher dynamicity spheres are preferred to disks for nourishment fill material. A fill material comprised of spheres is regularly responding to hydrodynamic forces and can positively speed up the beach recovery after storms especially in highly dynamic systems like pocket beaches, typically subjected to beach rotation processes. The results show an implication for coastal managers having to choose fill sources for replenishments.
机译:使用粗砾石沉积物养护海滩已成为缓冲海岸侵蚀的一种常见做法,但通常很少关注填充材料的特性。更好地了解沉积物特性对运输的影响,对于建立填充材料与本地海滩沉积物的最佳相容性至关重要。本文通过RFID跟踪技术研究了卵石运输。该实验的主要目的是验证在低能量条件下,填充海滩(盘状和球形)的普遍形状是否显示出不同的传输。示踪剂被注入到一个由沙子和砾石混合而成的海滩的一小块平直部分中,以部署两对相同大小的标记颗粒(在海滩面的主要地貌元素上分布有一个球体和一个圆盘状的卵石),以避免尺寸对运输的影响。注入后6和24 h进行示踪剂恢复,并在整个实验过程中通过S4定向波表测量波的特性。 6小时后,标记的鹅卵石发生了明显的位移,并伴有普遍的长岸分量,这在24小时后变得很明显。斜带被证明是海滩上最活跃的区域。由于球具有在斜盘区中翻转的能力,因此球体比盘具有更长的距离,并且具有更大的动态性。最近,已经对带标记的鹅卵石进行了许多实验,但这是第一次构想实验来证明形状如何影响鹅卵石的运输。圆盘更容易被埋葬,由于圆盘具有较高的动态性,所以球形比圆盘更适合营养填充材料。由球体组成的填充材料会定期响应水动力,并且可以在暴风雨后积极加快海滩恢复,尤其是在高度动态的系统(如袋装海滩)中,通常会经历海滩旋转过程。结果表明,沿海管理人员必须选择补给来源。

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