首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Monitoring Duration and Extent of Storm-Surge and Flooding in Western Coastal Louisiana Marshes With Envisat ASAR Data
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Monitoring Duration and Extent of Storm-Surge and Flooding in Western Coastal Louisiana Marshes With Envisat ASAR Data

机译:利用Envisat ASAR数据监测路易斯安那州西部沿海沼泽风暴潮和洪水的持续时间和范围

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Inundation maps of coastal marshes in western Louisiana were created with multitemporal Envisat Advanced Synthetic Aperture (ASAR) scenes collected before and during the three months after Hurricane Rita landfall in September 2005. Corroborated by inland water-levels, 7 days after landfall, 48% of coastal estuarine and palustrine marshes remained inundated by storm-surge waters. Forty-five days after landfall, storm-surge inundated 20% of those marshes. The end of the storm-surge flooding was marked by an abrupt decrease in water levels following the passage of a storm front and persistent offshore winds. A complementary dramatic decrease in flood extent was confirmed by an ASAR-derived inundation map. In nonimpounded marshes at elevations $ , storm-surge waters rapidly receded while slower recession was dominantly associated with impounded marshes at elevations $ > ! {hbox{80~cm}}$ during the first month after Rita landfall. After this initial period, drainage from marshes—especially impounded marshes—was hastened by the onset of offshore winds. Following the abrupt drops in inland water levels and flood extent, rainfall events coinciding with increased water levels were recorded as inundation re-expansion. This postsurge flooding decreased until only isolated impounded and palustrine marshes remained inundated. Changing flood extents were correlated to inland water levels and largely occurred within the same marsh regions. Trends related to incremental threshold increases used in the ASAR change-detection analyses seemed related to the preceding hydraulic and hydrologic events, and VV and HH threshold differences supported their relationship to the overall wetland hydraulic condition.
机译:路易斯安那州西部沿海沼泽的淹没图是利用2005年9月飓风丽塔飓风登陆之前和之后三个月收集的多时相Envisat高级合成孔径(ASAR)场景制作的。陆地登陆后7天,内陆水位证实了这一点,占48%沿海河口和巴勒斯坦沼泽仍被风暴潮淹没。登陆后四十五天,风暴潮淹没了其中的20%。风暴潮泛滥的结束标志着风暴锋过后和持续的近海风过后水位突然下降。 ASAR得出的淹没图证实了洪水幅度的互补性急剧下降。在高位$的非蓄水沼泽中,风暴潮水迅速消退,而较慢的衰退主要与高位$>的蓄水沼泽相关! {hbox {80〜cm}} $ 在丽塔登陆后的第一个月。在此初始阶段之后,海上风的出现加快了沼泽(特别是蓄积沼泽)的排水。随着内陆水位和洪水范围的突然下降,降雨事件与水位上升相吻合,被记录为洪水泛滥。此后涌洪水减少,直到仅隔离的蓄水和巴勒斯坦沼泽被淹没为止。洪水范围的变化与内陆水位相关,并且大部分发生在同一沼泽地带。与ASAR变化检测分析中使用的增量阈值增加有关的趋势似乎与先前的水文和水文事件有关,VV和HH阈值差异支持了它们与整体湿地水力条件的关系。

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