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Detection and quantification of sediment remobilization processes using a dynamic penetrometer

机译:使用动态渗透仪检测和定量化沉积物迁移过程

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Sediment remobilization processes have a high impact on coastal morphology as well as offshore engineering. In many cases countermeasures are required to preserve the stability of the construction or coastline. To apply such countermeasures in the most effective manner, it is crucial to (i) locate and map areas of sediment erosion and deposition and to (ii) quantify the mobilized sediment with a high spatial and temporal resolution. In this study we tested the small dynamic penetrometer Nimrod as a tool for rapid detection and quantification of sediment remobilization processes. More than 20 surveys with about 5000 deployments covered natural-induced sediment remobilization processes such as shifting sandbars and sorted bedforms as well as man-induced processes such as the siltation in navigation channels and scour. The surveys were carried out in areas of different sediment textures ranging from soft clay to hard quartz and carbonate sands. Additionally, preliminary experiments under controlled boundary conditions were accomplished in a wave channel (Franzius Institut, Hannover, Germany).
机译:沉积物的移动过程对沿海形态以及海上工程都有很大的影响。在许多情况下,需要采取对策来保持建筑或海岸线的稳定性。为了以最有效的方式应用这种对策,至关重要的是(i)定位和绘制沉积物侵蚀和沉积的区域,以及(ii)以高的时空分辨率对动员的沉积物进行量化。在这项研究中,我们测试了小型动态渗透仪Nimrod作为快速检测和定量沉积物迁移过程的工具。进行了大约5000次部署的20多项调查涵盖了自然诱发的泥沙迁移过程,例如移动沙洲和分类的床形,以及人为诱发的过程,例如导航通道中的淤积和冲刷。这些调查是在不同质地的沉积物中进行的,从软粘土到坚硬的石英和碳酸盐砂。另外,在可控边界条件下的初步实验是在波浪通道中完成的(Franzius Institut,汉诺威,德国)。

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