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Relating groundwater to seasonal wetlands in southeastern Wisconsin, USA

机译:与美国威斯康星州东南部的季节性湿地相关的地下水

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Historically, drier types of wetlands have been difficult to characterize and are not well researched. Nonetheless, they are considered to reflect the precipitation history with little, if any, regard for possible relation to groundwater. Two seasonal coastal wetland types (wet prairie, sedge meadow) were investigated during three growing seasons at three sites in the Lake Michigan Basin, Wisconsin, USA. The six seasonal wetlands were characterized using standard soil and vegetation techniques and groundwater measurements from the shallow and deep systems. They all met wetland hydrology criteria (e.g., water within 30 cm of land surface for 5% of the growing season) during the early portion of the growing season despite the lack of appreciable regional groundwater discharge into the wetland root zones. Although root-zone duration analyses did not fit a lognormal distribution previously noted in groundwater-dominated wetlands, they were able to discriminate between the plant communities and showed that wet prairie communities had shorter durations of continuous soil saturation than sedge meadow communities. These results demonstrate that the relative rates of groundwater outflows can be important for wetland hydrology and resulting wetland type. Thus, regional stresses to the shallow groundwater system such as pumping or low Great Lake levels can be expected to affect even drier wetland types.
机译:从历史上看,较干的湿地类型很难表征,并且没有得到很好的研究。但是,它们被认为反映了降水历史,很少考虑(如果有的话)与地下水的可能关系。在美国威斯康星州密歇根湖盆地的三个地点的三个生长季节中,研究了两种季节性的沿海湿地类型(湿草原,莎草草甸)。使用标准的土壤和植被技术以及浅层和深层系统的地下水测量来表征六个季节性湿地。尽管缺乏明显的区域地下水排入湿地根部区域,但它们都在生长季节的早期阶段达到了湿地水文学标准(例如,在生长季节的5%的土地表面30厘米内的水)。尽管根区持续时间分析不符合先前在以地下水为主导的湿地中指出的对数正态分布,但他们能够区分植物群落,并表明,与草原草甸群落相比,湿草原群落的持续土壤饱和持续时间更短。这些结果表明,地下水的相对流出速率对于湿地水文学和由此产生的湿地类型可能很重要。因此,预计对浅层地下水系统的区域性压力,例如抽水或大湖水位较低,甚至会影响到较干燥的湿地类型。

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