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Estimating wetland connectivity to streams in the Prairie Pothole Region: an isotopic and remote sensing approach

机译:估算湿地与草原坑洼地区河流的连通性:一种同位素和遥感方法

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摘要

Understanding hydrologic connectivity between wetlands and perennial streams is critical to understanding the reliance of stream flow on inputs from wetlands. We used the isotopic evaporation signal in water and remote sensing to examine wetland-stream hydrologic connectivity within the Pipestem Creek watershed, North Dakota, a watershed dominated by prairie-pothole wetlands. Pipestem Creek exhibited an evaporated-water signal that had approximately half the isotopic-enrichment signal found in most evaporatively enriched prairie-pothole wetlands. Groundwater adjacent to Pipestem Creek had isotopic values that indicated recharge from winter precipitation and had no significant evaporative enrichment, indicating that enriched surface water did not contribute significantly to groundwater discharging into Pipestem Creek. The estimated surface-water area necessary to generate the evaporation signal within Pipestem Creek was highly dynamic, varied primarily with the amount of discharge, and was typically greater than the immediate Pipestem Creek surface-water area, indicating that surficial flow from wetlands contributed to stream flow throughout the summer. We propose a dynamic range of spilling thresholds for prairie-pothole wetlands across the watershed allowing for wetland inputs even during low flow periods. Combining Landsat estimates with the isotopic approach allowed determination of potential (Landsat) and actual (isotope) contributing areas in wetland-dominated systems. This combined approach can give insights into the changes in location and magnitude of surface water and groundwater pathways over time. This approach can be used in other areas where evaporation from wetlands results in a sufficient evaporative isotopic signal.
机译:了解湿地和多年生河流之间的水文连通性对于了解河流对湿地投入物的依赖至关重要。我们在水和遥感中使用了同位素蒸发信号,以检查北达科他州Pipestem Creek流域内的湿地流水文连通性,该流域以草原坑洼湿地为主。 Pipestem Creek的蒸发水信号大约是大多数蒸发富集的草原-坑口湿地中同位素富集信号的一半。与Pipestem Creek相邻的地下水的同位素值表明冬季降水补充了该同位素,并且没有明显的蒸发富集,这表明富集的地表水对排放到Pipestem Creek的地下水没有显着贡献。在Pipestem Creek内产生蒸发信号所必需的估计地表水面积是高度动态的,主要随排放量而变化,通常大于当前的Pipestem Creek地表水面积,这表明来自湿地的表层水促成了河流整个夏天流。我们提出了跨流域的草原坑洼地湿地溢出阈值的动态范围,即使在低流量时期也允许湿地输入。将Landsat估算值与同位素方法结合起来,可以确定湿地为主的系统中潜在的(Landsat)和实际的(同位素)贡献区域。这种结合的方法可以洞悉地表水和地下水路径的位置和大小随时间的变化。这种方法可用于其他地区,这些地区从湿地蒸发会产生足够的蒸发同位素信号。

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