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Groundwater Connectivity of Upland-Embedded Wetlands in the Prairie Pothole Region

机译:草原坑洼地高地湿地的地下水连通性

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Groundwater connections from upland-embedded wetlands to downstream waterbodies remain poorly understood. In principle, water from upland-embedded wetlands situated high in a landscape should flow via groundwater to waterbodies situated lower in the landscape. However, the degree of groundwater connectivity varies across systems due to factors such as geologic setting, hydrologic conditions, and topography. We use numerical models to evaluate the conditions suitable for groundwater connectivity between upland-embedded wetlands and downstream waterbodies in the prairie pothole region of North Dakota (USA). Results show groundwater connectivity between upland-embedded wetlands and other waterbodies is restricted when these wetlands are surrounded by a mounding water table. However, connectivity exists among adjacent upland-embedded wetlands where water-table mounds do not form. In addition, the presence of sand layers greatly facilitates groundwater connectivity of upland-embedded wetlands. Anisotropy can facilitate connectivity via groundwater flow, but only if it becomes unrealistically large. These findings help consolidate previously divergent views on the significance of local and regional groundwater flow in the prairie pothole region.
机译:从高地嵌入式湿地到下游水体的地下水连接仍然知之甚少。原则上,来自高处景观的高地嵌入湿地的水应通过地下水流向低处景观的水体。但是,由于诸如地质环境,水文条件和地形等因素,整个系统的地下水连通程度不同。我们使用数值模型来评估适合北达科他州(美国)大草原坑洼地区高地嵌入式湿地与下游水体之间的地下水连通性的条件。结果表明,当这些湿地被堆积的地下水位所包围时,嵌入高地的湿地与其他水体之间的地下水连通性受到限制。但是,在没有形成地下水位的相邻高地嵌入式湿地之间存在连通性。此外,沙层的存在极大地促进了高地嵌入式湿地的地下水连通性。各向异性可以促进通过地下水流动的连通性,但前提是各向异性过大。这些发现有助于巩固先前对草原坑洼地区局部和区域地下水流动重要性的不同观点。

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