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Large-scale Dune Erosion Tests To Study The Influence Of Wave Periods

机译:大型沙丘侵蚀试验,研究波浪周期的影响

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Large-scale physical model tests were performed to quantify the effects of the wave period on dune erosion. Attention was focussed on 2D cross-shore effects in a situation with sandy dunes and extreme water levels and wave conditions. Besides profile measurements, detailed measurements in time and space of water pressure, flow velocities and sediment concentrations were performed in the near near-shore area. It was concluded that a longer wave period leads to a larger dune erosion volume and to a larger landward retreat of the dune face. Tests with double-peaked wave spectra showed that the influence of the spectral shape on dune erosion was best represented by the T_(m-1.0) spectral mean wave period, better than the peak wave period, T_p. The effect of the wave period on dune erosion was implemented in a dune erosion prediction method that estimates erosion volumes during normative storm conditions for the Dutch coast. More details of the measurements and additional analyses of physical processes are described in an accompanying paper by Van Thiel de Vries et al. [Van Thiel de Vries, J.S.M., van Gent, M.R.A., Reniers, AJ.H.M. and Walstra, D.J.R., submitted for publication. Analysis of dune erosion processes in large scale flume experiments. In this volume of Coastal Engineering.].
机译:进行了大规模的物理模型测试,以量化波浪周期对沙丘侵蚀的影响。在沙丘,极端水位和波浪条件下,注意力集中在2D跨岸效应上。除了剖面测量外,在近岸地区还进行了水压,流速和沉积物浓度的时间和空间的详细测量。结论是,较长的波浪周期会导致较大的沙丘侵蚀量和较大的沙丘面向内退缩。用双峰波频谱进行的测试表明,频谱形状对沙丘侵蚀的影响最好用T_(m-1.0)频谱平均波周期表示,优于峰值波周期T_p。波浪期对沙丘侵蚀的影响是通过沙丘侵蚀预测方法实现的,该方法可以估算荷兰海岸规范风暴条件下的侵蚀量。 Van Thiel de Vries等人在随附的论文中描述了测量的更多详细信息以及物理过程的其他分析。 ]和D.J.R.的Walstra提交出版。大型水槽实验中沙丘侵蚀过程的分析。在这本《海岸工程》中。

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