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Beaver dams and overbank floods influence groundwater-surface water interactions of a Rocky Mountain riparian area

机译:海狸水坝和堤岸洪水影响落基山河岸地区的地下水-地表水相互作用

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Overbank flooding is recognized by hydrologists as a key process that drives hydrogeomorphic and ecological dynamics in mountain valleys. Beaver create dams that some ecologists have assumed may also drive riparian hydrologic processes, but empirical evidence is lacking. We examined the influence of two in-channel beaver dams and a 10 year flood event on surface inundation, groundwater levels, and flow patterns in a broad alluvial valley during the summers of 2002-2005. We studied a 1.5 km reach of the fourth-order Colorado River in Rocky Mountain National Park (RMNP), Colorado, USA. The beaver dams and ponds greatly enhanced the depth, extent, and duration of inundation associated with floods; they also elevate the water table during both high and low flows. Unlike previous studies we found the main effects of beaver on hydrologic processes occurred downstream of the dam rather than being confined to the near-pond area. Beaver dams on the Colorado River caused river water to move around them as surface runoff and groundwater seepage during both high- and low-flow periods. The beaver dams attenuated the expected water table decline in the drier summer months for 9 and 12 ha of the 58 ha study area. Thus we provide empirical evidence that beaver can influence hydrologic processes during the peak flow and low-flow periods on some streams, suggesting that beaver can create and maintain hydrologic regimes suitable for the formation and persistence of wetlands.
机译:水文学家们认为,滩涂洪水是驱动山谷水文地貌和生态动力学的关键过程。海狸制造一些生态学家认为可能还会推动河岸水文过程的水坝,但缺乏经验证据。我们研究了2002-2005年夏季两个河道海狸水坝和10年洪水事件对宽泛冲积山谷中地表淹没,地下水位和流量模式的影响。我们在美国科罗拉多州的落基山国家公园(RMNP)中研究了四阶科罗拉多河的1.5公里段。海狸的水坝和池塘大大增加了洪水泛滥的深度,程度和持续时间;它们还会在高流量和低流量时升高地下水位。与以前的研究不同,我们发现河狸对水文过程的主要影响发生在大坝的下游,而不是局限于近池塘区域。在高流量和低流量期间,由于地表径流和地下水渗漏,科罗拉多河上的海狸水坝导致河水在其周围移动。在58公顷研究区的9公顷和12公顷的夏季,海狸坝减弱了预期的地下水位下降。因此,我们提供了经验证据,表明海狸可以在某些水流的高峰流量和低流量期间影响水文过程,这表明海狸可以创建和维持适合湿地形成和持久性的水文状况。

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