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Experimental analysis of infragravity waves in two eroded microtidal beaches

机译:两个侵蚀性微潮滩的重力波实验分析

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This work aims to contribute to the characterization and understanding of infragravity waves on two beaches with erosion problems. For this reason, we have used an array of ADCP and a pressure sensor to measure wave parameters and pressure inside and outside of the surf zone during the dry and rainy period in the beaches of Galerazamba and Manzanillo del Mar (both dissipative and eroded beaches) located in the Colombian Caribbean coast. Based on these measurements, we have carried out a spectral analysis in order to identify the frequency components that characterize the wave and its energy; thus, we identified the characteristic frequencies of infragravity waves to finally filter the infragravity signal on each beach in different seasonal periods. Among the results of the Welch spectrum applied to surface elevation time series, we found that, the frequencies' energy of the sea-swell band decreases due to bottom friction and wave breaking as the wave approaches the shore, while the frequencies' energy of the infragravity band increases significantly. In addition, for the wavelet analysis, we could observe how the energy of the infragravity band, especially the lowest frequencies gain energy as the waves approaches the coast. Furthermore, based on the infragravity wave obtained from the extreme wave event registered during the field campaign we can conclude that the contribution of this signal is important in the erosion problems presented in the beaches of Galerazamba and Manzanillo del Mar. Finally, these results show the need to realize other studies that allow us to understand deeply, the role of infragravity waves on the morphological changes that occurs in these beaches.
机译:这项工作旨在有助于表征和理解两个有侵蚀问题的海滩上的重力波。因此,我们使用了一系列ADCP和压力传感器来测量Galerazamba和Manzanillo del Mar海滩(耗散和侵蚀海滩)在干燥和雨季期间冲浪区内部和外部的波浪参数和压力。位于哥伦比亚加勒比海沿岸。基于这些测量,我们进行了频谱分析,以识别表征波及其能量的频率分量。因此,我们确定了重力波的特征频率,以最终过滤每个海滩在不同季节期间的重力信号。在将Welch频谱应用于地表高程时间序列的结果中,我们发现,海浪膨胀带的频率能量由于海浪接近海岸而由于底部摩擦和波浪破裂而减小,而海浪带的频率能量则随着海浪的上升而减小。次重力带明显增加。此外,对于小波分析,我们可以观察到超重力带的能量(尤其是最低频率)如何随着波接近海岸而获得能量。此外,根据在野战期间记录的极端波浪事件获得的次重力波,我们可以得出结论,该信号的贡献对于Galerazamba和Manzanillo del Mar海滩出现的侵蚀问题很重要。最后,这些结果表明,需要进行其他研究,使我们能够深入了解次重力波对这些海滩发生的形态变化的作用。

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  • 来源
    《海洋学报(英文版)》 |2017年第5期|31-43|共13页
  • 作者单位

    Geosciences Research Group GEO4,Department of Physics,Universidad del Norte,Barranquilla 081007,Colombia;

    Geosciences Research Group GEO4,Department of Physics,Universidad del Norte,Barranquilla 081007,Colombia;

    Geosciences Research Group GEO4,Department of Physics,Universidad del Norte,Barranquilla 081007,Colombia;

    Geosciences Research Group GEO4,Department of Physics,Universidad del Norte,Barranquilla 081007,Colombia;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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