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Experiments of dike erosion due to a wave impact

机译:波撞击导致堤防侵蚀的实验

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Dike erosion is a crucial issue in coastal and fluvial flood risk management. These defense structures appear vulnerable to extreme hydrological events, whose potential occurrence risk seems recently increased due to climate change. Their design and reinforcement is, however, a complex task and, although numerical models are very powerful nowadays, some physical processes cannot be predicted accurately and, therefore, physical models constitute a useful tool to investigate different features under controlled conditions. This paper discusses an experimental study of erosion of a sand dike produced by the impact of a sudden dam-break wave. The experiments have been conducted in the Water Engineering Laboratory at University of Cassino and Southern Lazio, Cassino (FR), Italy, in a small-scale rectangular channel, where a gate constitutes the barrage creating an upstream reservoir, while downstream a dike of almost-uniform non-cohesive material is positioned. Two sands with different diameter size have been used for the dike structure. The experimental evidence proves that the whole erosion process is strongly unsteady and it is significantly different from a gradual overtopping one. Moreover, the results highlight the importance of apparent cohesion for the fine-sand dike.
机译:堤防侵蚀是沿海和河流洪水风险管理的重要问题。这些防御结构似乎容易受到极端水文事件,其潜在的发生风险似乎由于气候变化而似乎增加。然而,他们的设计和加固是一个复杂的任务,尽管现在数值模型非常强大,但是不能准确地预测一些物理过程,因此,物理模型构成调查受控条件下不同特征的有用工具。本文讨论了由突然坝断波产生的砂堤侵蚀的实验研究。在Cassino大学和南方拉齐奥大学的水工程实验室进行了实验,意大利的小型矩形渠道,栅极构成了拦截漏洞,几乎是堤防下游 - 定位均匀的非粘结材料。用于堤防结构的两个具有不同直径尺寸的沙子。实验证据证明,整个侵蚀过程强烈不稳定,与逐渐普通的速度显着不同。此外,结果突出了明显粘合对细沙堤的重要性。

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