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Airborne Laser Quantification of Florida Shoreline and Beach Volume Change Caused by Hurricanes

机译:佛罗里达海岸线的航空激光量化和飓风造成的海滩体积变化

摘要

This dissertation combines three separate studies that measure coastal change using airborne laser data. The initial study develops a method for measuring subaerial and subaqueous volume change incrementally alongshore, and compares those measurements to shoreline change in order to quantify their relationship in Palm Beach County, Florida. A poor correlation (R2 = 0.39) was found between shoreline and volume change before the hurricane season in the northern section of Palm Beach County because of beach nourishment and inlet dynamics. However, a relatively high R2 value of 0.78 in the southern section of Palm Beach County was found due to little disturbance from tidal inlets and coastal engineering projects. The shoreline and volume change caused by the 2004 hurricane season was poorly correlated with R2 values of 0.02 and 0.42 for the north and south sections, respectively. The second study uses airborne laser data to investigate if there is a significant relationship between shoreline migration before and after Hurricane Ivan near Panama City, Florida. In addition, the relationship between shoreline change and subaerial volume was quantified and a new method for quantifying subaqueous sediment change was developed. No significant spatial relationship was found between shoreline migration before and after the hurricane. Utilization of a single coefficient to represent all relationships between shoreline and subaerial volume change was found to be problematic due to the spatial variability in the linear relationship. Differences in bathymetric data show only a small portion of sediment was transported beyond the active zone and most sediment remained within the active zone despite the occurrence of a hurricane. The third study uses airborne laser bathymetry to measure the offshore limit of change, and compares that location with calculated depth of closures and subaqueous geomorphology. There appears to be strong geologic control of the depth of closure in Broward and Miami-Dade Counties. North of Hillsboro Inlet, hydrodynamics control the geomorphology which in turn indicates the location of the depth of closure.
机译:本文结合三项独立研究,利用机载激光数据测量海岸变化。最初的研究开发了一种增量测量沿海地区的海底和水下水量变化的方法,并将这些测量结果与海岸线变化进行比较,以量化它们在佛罗里达州棕榈滩县的关系。由于海滩养分和进水动力学的原因,在棕榈滩县北部飓风季节来临之前,海岸线与体积变化之间的相关性很差(R2 = 0.39)。但是,由于潮汐进口和海岸工程项目的干扰较小,在棕榈滩县南部发现相对较高的R2值为0.78。 2004年飓风季节造成的海岸线和体积变化与北部和南部的R2值分别为0.02和0.42关联性很差。第二项研究使用机载激光数据调查佛罗里达州巴拿马城附近的伊万飓风前后海岸线迁移之间是否存在显着关系。此外,定量分析了海岸线变化与地下空间量之间的关系,并开发了一种新的量化水下沉积物变化的方法。飓风前后海岸线迁移之间未发现明显的空间关系。由于线性关系的空间变异性,发现使用单个系数来表示海岸线和空中流量变化之间的所有关系都是有问题的。水深数据的差异表明,尽管发生了飓风,但只有一小部分沉积物被输送到活动区之外,并且大多数沉积物仍保留在活动区内。第三项研究使用机载激光测深法测量离岸变化极限,并将该位置与计算出的闭合深度和水下地貌进行比较。布劳沃德县和迈阿密戴德县似乎对封闭深度有很强的地质控制作用。在希尔斯伯勒湾(Hillsboro Inlet)北部,流体动力学控制着地貌,进而指示了封闭深度的位置。

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    Robertson William;

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  • 年度 2007
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