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首页> 外文期刊>Journal of Coastal Research: An International Forum for the Littoral Sciences >The Estimation and Evaluation of Shoreline Locations, Shoreline-Change Rates, and Coastal Volume Changes Derived from Landsat Images
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The Estimation and Evaluation of Shoreline Locations, Shoreline-Change Rates, and Coastal Volume Changes Derived from Landsat Images

机译:海岸线位置,海岸线变化率和沿海体积变化的估算和评估源自Landsat图像

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Shoreline-change data are of primary importance for understanding coastal erosion and deposition as well as for studying coastal morphodynamics. Shoreline extraction from satellite images has been used as a low-cost alternative and as an addition to traditional methods. In this work, satellite-derived shorelines and corresponding shoreline-change rates and changes in volumes of coastal sediments have been estimated and evaluated for the case of the data-rich North-Holland coast. This coast is globally unique for its long in situ monitoring record and provides a perfect case to evaluate the potential of shoreline mapping techniques. A total of 13 Landsat images and 233 observed cross-shore profiles (from the JAaRlijkse KUStmeting [JARKUS] database) between 1985 and 2010 have been used in this study. Satellite-derived shorelines are found to be biased in seaward direction relative to the JARKUS-derived shorelines, with an average ranging 8 m to 9 m over 25 years. Shoreline-change rates have been estimated using time series of satellite-derived shorelines and applying linear regression. The satellite-derived shoreline-change rates show a high correlation coefficient (R-2 0.78) when compared with the JARKUS-derived shoreline-change rates over a period of 20 and 25 years. Volume changes were calculated from the satellite-derived shoreline-change rates using assumptions defining a closure depth. Satellite-derived volume changes also show a good agreement with JARKUS-based values. Satellite-derived shorelines compare better with in situ data on beaches that have intertidal zone widths ranging from one-to two-pixel sizes (30 m-60 m). The results show that the use of Landsat images for deriving shorelines, shoreline-change rates, and volume changes have accuracies comparable to observed JARKUS-based values when considering decadal scales of measurements. This shows the potential of applying Landsat images to monitor shoreline change and coastal volume change over decade
机译:海岸线 - 更改数据对于了解沿海侵蚀和沉积以及研究沿海形态学性质的重要性是重要的。卫星图像的海岸线提取已被用作低成本替代品,作为传统方法的补充。在这项工作中,卫星衍生的海岸线和相应的海岸线变化率和相应的海岸沉积物的变化已经估计,并对数据丰富的北荷兰海岸进行了评估。这家海岸是全球独一无二的,其较长的原位监测记录,提供了一个完美的案例来评估海岸线映射技术的潜力。在这项研究中,总共13个Landsat图像和233观察到的跨岸型材(来自Jaarlijkse Kustmeting [Jarkus]数据库)已经在本研究中使用。发现卫星衍生的海岸线相对于Jarkus衍生的海岸线偏向,平均范围为8米至9米。使用时间序列的卫星衍生的海岸线和应用线性回归估计了海岸线更换率。卫星衍生的海岸线变化率显示出高相关系数(R-2& 0.78),与jarkus衍生的海岸线变化率相比,在20和25年的时间内。使用定义闭合深度的假设从卫星衍生的海岸线变化率计算体积变化。卫星衍生的体积变化也与基于Jarkus的价值观吻合良好。卫星衍生的海岸线比较更好地与透模区宽度的海滩上的原位数据进行比较,从一对二像素尺寸(30 m-60 m)。结果表明,使用Landsat图像用于导出堆积,海岸线变化率和体积变化具有可比观察到的jarkus的价值可比测量的基于jarkus的价值相当。这表明应用Landsat图像以监控海岸线变化和十年的沿海体积变化

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