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Satellite-derived shoreline detection at a high-energy meso-macrotidal beach

机译:在高能量的Meso-Macrotidal海滩处卫星衍生的海岸线检测

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Publicly available satellite imagery can now provide multi-decadal time series of shoreline data from local to global scale, enabling analysis of sandy beach shoreline variability across a spectrum of temporal scales. Such data can, however, be associated with large uncertainties, particularly for beaches experiencing a large tidal range (>2 m) and energetic incident waves. We use a decade of bi-monthly topographic surveys at the high-energy meso-macrotidal beach of True Vert, southwest France, and concurrent wave and water-level hindcast to investigate the uncertainties associated with satellite-derived time series of the shoreline position. We show that consideration of the water level and wave runup elevation is critical for accurately estimating waterline position and, in turn, shoreline position. At True Vert, including non-tidal water level residuals (e.g. wind-driven surge) and accounting for time- and elevation-varying beach slope for horizontal correction did not improve satellite-derived shoreline position. A new total water level threshold is proposed to maximize the number of usable images while minimizing errors. Accounting for wave runup and the new water level threshold at True Vert, the number of usable satellite images is doubled and shoreline position errors are at least halved compared to previous work at this site. Using the 1984-2019 reconstructed shoreline, we also show that the satellite-derived shoreline trends and in-terannual variability are in better agreement with field measurements. Although the approach proposed here needs to be tested on other sites in different tidal/wave forcing environments with different morphological and sediment characteristics, we anticipate that it will improve the temporal and spatial description of shoreline change on most surf tidal beaches where accurate continuous water level and wave hindcasts and/or observations are available.
机译:公开可用的卫星图像现在可以提供从本地到全球规模的多码时间系列海岸线数据,从而可以分析跨越颞级的沙滩海岸线变异性。然而,这种数据可以与大的不确定性相关联,特别是对于经历大型潮汐范围(> 2米)和能量入射波的海滩。我们在真正的Vert,法国西南部和水平Hindcast的高能量Meso-Macrotidal海滩上使用十年的双月地形调查,并调查与海岸线位置的卫星衍生的时间序列相关的不确定性。我们表明,考虑水位和波浪升高的升高对于准确地估计水线位置,以及反过来的海岸线位置至关重要。在真正的VERT中,包括非潮水水位残差(例如风力驱动的浪涌)和核算水平校正的时间和高度不同的海滩斜率并未改善卫星衍生的海岸线位置。提出了新的总水位阈值,以最大限度地提高可用图像的数量,同时最小化错误。对于Wave Vert的Wave Runup和新的水位阈值,可用卫星图像的数量加倍,与此站点上的先前工作相比,海岸线位置错误至少减半。使用1984-2019重建的海岸线,我们还表明,卫星源性的海岸线趋势和单机的变异性与现场测量更好。尽管这里提出的方法需要在不同的潮汐/波迫使环境中的其他网站上进行测试,但是,我们预计它将改善大多数冲浪潮汐海滩对海岸线变化的时间和空间描述,在那里准确的连续水位和波浪Hindcasts和/或观察可用。

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    《Oceanographic Literature Review》 |2021年第5期|1013-1013|共1页
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