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Radar monitoring of hydrology in Maryland's forested coastal plain wetlands: Implications for predicted climate change and improved mapping.

机译:马里兰州森林沿海平原湿地的水文学雷达监测:对预测的气候变化和改进的制图的意义。

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Wetlands provide important services to society but Mid-Atlantic wetlands are at high risk for loss, with forested wetlands being especially vulnerable. Hydrology (flooding and soil moisture) controls wetland function and extent but it may be altered due to changes in climate and anthropogenic influence. Wetland hydrology must better understood in order to predict and mitigate the impact of these changes. Broad-scale forested wetland hydrology is difficult to monitor using ground-based and traditional remote sensing methods. C-band synthetic aperture radar (SAR) data could improve the capability to monitor forested wetland hydrology but the abilities and limitations of these data need further investigation. This study examined: (1) the link between climate and wetland hydrology; (2) the ability of ENVISAT SAR (C-HH and C-VV) data to monitor inundation and soil moisture in forested wetlands; (3) limitations inherent to C-band data (incidence angle, polarization, and phenology) when monitoring forested wetland hydrology; and (4) the accuracy of forested wetland maps produced using SAR data. The study was primarily conducted near the Patuxent River in Maryland but the influence of incidence angle was considered along the Roanoke River in North Carolina. This study showed: (1) climate was highly correlated with wetland inundation; (2) significant differences in C-VV and C-HH backscatter existed between forested areas of varying hydrology (uplands and wetlands) throughout the year; (3) C-HH backscatter was better correlated to hydrology than C-VV backscatter; (4) correlations were stronger during the leaf-off season; (5) the difference in backscatter between flooded and non-flooded areas did not sharply decline with incidence angle, as predicted; and (6) maps produced using SAR data had relatively high accuracy levels. Based on these findings, I concluded that hydrology is influenced by climate at the study site, and C-HH data should be able to monitor changes in hydrology throughout the year. Larger incidence angles should be explored when using C-HH data to monitor forested wetland hydrology, and C-band SAR has the potential to increase the ability to map forested wetlands throughout the year. The methods developed have the potential to fill the need of managers for increased hydrologic information and improved forested wetland maps.
机译:湿地为社会提供重要服务,但大西洋中部的湿地遭受损失的风险很高,森林湿地尤为脆弱。水文学(洪水和土壤湿度)控制着湿地的功能和范围,但由于气候变化和人为影响而可能改变。必须更好地理解湿地水文学,以预测和减轻这些变化的影响。广泛的森林湿地水文学很难使用地面和传统的遥感方法进行监测。 C波段合成孔径雷达(SAR)数据可以提高监测森林湿地水文学的能力,但这些数据的能力和局限性需要进一步研究。这项研究检查了:(1)气候与湿地水文学之间的联系; (2)ENVISAT SAR(C-HH和C-VV)数据监测森林湿地的淹没和土壤湿度的能力; (3)监测森林湿地水文学时C波段数据固有的局限性(入射角,极化和物候学); (4)使用SAR数据制作的森林湿地图的准确性。该研究主要在马里兰州的Patuxent河附近进行,但考虑了北角罗阿诺克河沿岸入射角的影响。这项研究表明:(1)气候与湿地淹没高度相关; (2)全年不同水文森林区(高地和湿地)之间的C-VV和C-HH后向散射存在显着差异; (3)C-HH背向散射与水文相关性比C-VV背向散射更好; (4)在休假期相关性较强; (5)淹没区和非淹没区之间的反向散射差异并未随入射角急剧下降,正如所预测的; (6)使用SAR数据制作的地图具有较高的准确度。基于这些发现,我得出结论,水文受到研究地点气候的影响,C-HH数据应能够监测全年的水文变化。当使用C-HH数据监测森林湿地水文时,应探索更大的入射角,并且C波段SAR有潜力提高全年绘制森林湿地的能力。所开发的方法有可能满足管理者对增加水文信息和改进森林湿地图的需求。

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