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Wave Erosion of Cohesive and non-Cohesive Embankments: Laboratory Experiments

机译:粘性和非粘性堤的波浪侵蚀:实验室实验

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Laboratory experiments were carried out in a wave tank to investigate wave induced beach profile evolution and scarp recession on cohesive and non-cohesive model embankments. The cohesive embankment was constructed using a natural soil mixture, and the noncohesive embankment was constructed using cylindrical shaped polyethylene terephthalate (PET) pellets of uniform size. A standardized packing procedure was used for both cohesive and non-cohesive embankments. The onshore face slope of the embankment was approximately 30 degrees. The morphological evolution of the embankment was monitored using water level sensors and a time-lapse camera. Waves quickly eroded the bank face near the free surface and formed a scarp. While an equilibrium profile was established relatively quickly and at a much steeper slope for the non-cohesive embankment, the cohesive embankment continued to erode for a much longer period. The scarp of the cohesive embankment retreated by a series of wave undercutting and slump failures. An empirical relationship between incident wave height and embankment erosion was established for the tested conditions. The measured beach profiles were compared with the developed analytical solution.
机译:实验室实验是在一个波浪罐中进行的,以调查波浪诱导的海滩型材演化和围巾经济衰退在内聚和非粘性模型堤上。使用天然土壤混合物构建粘性堤防,并且使用圆柱形聚对苯二甲酸乙二醇酯(PET)颗粒的均匀尺寸的颗粒构建。标准化包装程序用于粘性和非粘性堤。堤岸的陆上面坡约为30度。使用水位传感器和延时摄像机监测堤防的形态演化。波浪迅速侵蚀了自由表面附近的银行脸并形成了围巾。虽然相对快速地建立了平衡型材,但在非粘性路堤的斜坡上建立了更陡峭的坡度,但凝聚力的路堤继续侵蚀更长的时间。通过一系列波削弱和坍落度的失败来撤退的凝聚力堤的围巾。为测试条件建立了入射波高度和堤防侵蚀之间的经验关系。将测量的海滩型材与开发的分析解决方案进行了比较。

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