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Unpacking storm damages on a developed shoreline: Relating dune erosion and urban runoff

机译:在发达的海岸线上解包风暴损害:与沙丘侵蚀和城市径流有关

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摘要

Hurricane Matthew (2016) caused significant beach and dune erosion from Cape Hatteras, North Carolina, USA, to Cape Canaveral, Florida, USA. At Myrtle Beach, South Carolina, the storm caused beach recession, and much of the southern half of the city's beaches appeared to be overwashed in post-storm surveys. Around half of the city's beaches appeared overwashed following the storm; however, the Storm Impact Scale (SIS; Sallenger 2000) applied to a pre-storm elevation model suggests less than 10% of the city's beaches should have experienced overwash. Spatial analysis of elevation and land cover data reveals dunes that were "overwashed" during Matthew drain from watersheds that are >35% impervious, where those showing only dune recession are <5% impervious. The densely developed downtown of Myrtle Beach sits on a low seaward-sloping terrace. Additionally, indurated strata beneath the downtown area can prevent groundwater from draining during excessive rain events. As a result, the most continuous impervious surface cover and near-surface strata lie within a half-kilometer of the beach and drain directly to the backshore. Along the U.S. Southeast coast, this is somewhat rare; many coastal systems feature a lagoon or low-lying bottomland along their landward border, which facilitates drainage of upland impervious surfaces following storm passage. At Myrtle Beach, all of the stormwater runoff is drained directly to the beach through a series of outfall pipes. Many of the outfall pipes are located along the backshore, near the elevation of storm surge during Matthew. Runoff from Matthew's heavy rains was observed causing ponding on the landward side of the foredune and scouring around beach access walkways. Based on these observations, the severe dune erosion experienced near downtown Myrtle Beach during Hurricane Matthew may have been caused by runoff and/or groundwater flux rather than overwash. These results highlight an unexpected relationship between upland conditions and dune erosion on a developed shoreline. That is, dune erosion can be caused by mechanisms beside overwash during storm events.
机译:Mattricane Matthew(2016)造成了大型海滩和沙丘侵蚀,从哈特拉斯,北卡罗来纳州,美国,佛罗里达州佛罗里达州佛罗里达州。在南卡罗来纳州的默特尔海滩,风暴引起了海滩经济衰退,城市海滩的大部分海滩的大部分海滩都在暴风雨监测中被淹没。大约一半的城市的海滩出现在暴风雨之后被淹没;然而,风暴冲击量表(SIS; SIS; SIS; SIS 2000)适用于暴风雨预升高模型,占城市海滩的10%不到10%,应该经历过泄露。海拔和陆地覆盖数据的空间分析揭示了在Matthew排水期间“被撇开”的沙丘,从分水岭渗透,只有沙丘经济衰退的那些人的渗透率较不受欢迎。默特尔海滩的浓密开发的街区坐落在低海上倾斜的露台上。此外,市区地区下面的封闭地层可以防止地下水在过度雨季期间排放。结果,最连续的不透水表面覆盖和近表面地层位于海滩半千米之内,并直接排放到后岸。沿着美国东南海岸,这有点罕见;许多沿海系统沿着陆地边界饰出泻湖或低洼的底线,这促进了风暴通道后普满的不透水表面的排水。在默特尔海滩,所有的雨水径流通过一系列出口管道直接排放到海滩上。许多排水管沿岸位于后岸,在马修期间靠近风暴浪涌的海拔。观察到Matthew's大雨的径流,造成陆地面的陆地一侧和在海滩访问步行道上挖掘。基于这些观察,在飓风马修期间,默特尔海滩附近经历的严重沙丘侵蚀可能是由径流和/或地下水通量而不是透露般的侵蚀。这些结果突出了普通条件与开发海岸线上的普通条件与沙丘侵蚀之间的意外关系。也就是说,Dune侵蚀可能是由风暴事件期间露天旁边的机制引起的。

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