利用地理空间技术揭示飓风伊恩对佛罗里达西南部地貌的影响

Q2 Social Sciences
D. Bhatt, M. Savarese, N. S. Hewitt, A. Gross, J. Wilder
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引用次数: 0

摘要

摘要地理空间数据用于分析2022年9月下旬飓风伊恩对佛罗里达州西南部障壁岛和海滩地貌的影响。飓风产生了高强度的风和风暴潮,造成了超过1120亿美元的损失,同时由于侵蚀和沉积,沉积物大量流动。这项研究通过比较无人机飞行的激光雷达传感器生成的伊恩前后地形,量化了风暴潮(萨尼贝尔、那不勒斯、迈尔斯堡海滩等,尽管本文仅关注萨尼贝尔)在特定屏障岛屿上的净沉积物损失和增加;高程的变化被用来量化沉积物体积的空间变化。数据是在飓风伊恩过后立即收集的,并与美国国家海洋和大气管理局2018年收集的地形数据进行了比较。数字高程模型(DEM)用于使用GIS技术比较地形、海岸线位置(相对于平均高水位)、前沙丘位置和体积变化。总的来说,伊恩之后的海岸线位置变化不大,这表明即将到来的涌浪对海滩的影响很小。然而,前沙丘由于涌浪过冲而收缩和后退。流出的涌浪造成了更为剧烈的地貌变化。侵蚀性涌浪通道沿着海岸线的许多区域穿过前沙丘和上海滩护堤。退潮侵蚀还对位于前沙丘正后方的物理结构造成了广泛的破坏。最后,这项工作证明了利用地理信息系统和遥感技术解决海滩和沙丘管理、恢复沿海生态系统、提高自然和发达基础设施的复原能力以及制定应对气候变化影响所需的新政策等问题的价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
REVEALING THE GEOMORPHOLOGIC IMPACTS OF HURRICANE IAN IN SOUTHWEST FLORIDA USING GEOSPATIAL TECHNOLOGY
Abstract. Geospatial data were used to analyze changes to geomorphology of barrier islands and beaches in Southwest Florida resulting from Hurricane Ian in late September 2022. The hurricane generated high intensity winds and storm surge causing more than $112 billion in damages, along with massive sediment mobilization due to erosion and deposition. This study quantified net sediment loss and gain on specific barrier islands by storm surge (Sanibel, Naples, Fort Myers Beach, others, though this paper focuses exclusively on Sanibel) by comparing pre- and post-Ian topography generated by a drone-flown LiDAR sensor; changes in elevation were used to quantify spatial variation in sediment volume. Data were collected immediately after Hurricane Ian and compared against topographic data collected by NOAA in 2018. Digital elevation models (DEMs) were used to compare topography, shoreline positions (relative to Mean High Water), foredune position, and volumetric changes using GIS technology. In general, the shoreline position after Ian changed little, indicating that the incoming surge had little influence on the beach. The foredunes, however, were deflated and set back by surge overwash. The outgoing surge created a much more dramatic geomorphologic change. Erosional surge channels cut through the foredunes and upper beach berm along many regions of the coastline. The ebb erosion also caused extensive damage to physical structures when located immediately behind the foredune. Lastly, this work demonstrates the value of employing GIS and remote sensing technology to problems of beach and dune management, the restoration of coastal ecosystems, the enhancement of resilience capacity of both natural and developed infrastructure, and the development of new policy needed to contend with the effects of climate change.
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
949
审稿时长
16 weeks
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