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A significant nexus: Geographically isolated wetlands influence landscape hydrology

机译:一个重要的联系:地理上孤立的湿地影响景观水文学

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摘要

Recent U.S. Supreme Court rulings have limited federal protections for geographically isolated wetlands (GIWs) except where a "significant nexus" to a navigable water body is demonstrated. Geographic isolation does not imply GIWs are hydrologically disconnected; indeed, wetland-groundwater interactions may yield important controls on regional hydrology. Differences in specific yield (S_y) between uplands and inundated GIWs drive differences in water level responses to precipitation and evapotranspiration, leading to frequent reversals in hydraulic gradients that cause GIWs to act as both groundwater sinks and sources. These reversals are predicted to buffer surficial aquifer dynamics and thus base flow delivery, a process we refer to as landscape hydrologic capacitance. To test this hypothesis, we connected models of soil moisture, upland water table, and wetland stage to simulate hydrology of a low-relief landscape with GIWs, and explored the influences of total wetland area, individual wetland size, climate, and soil texture on water table and base flow variation. Increasing total wetland area and decreasing individual wetland size substantially decreased water table and base flow variation (e.g., reducing base flow standard deviation by as much as 50%). GIWs also decreased the frequency of extremely high and low water tables and base flow deliveries. For the same total wetland area, landscapes with fewer (i.e., larger) wetlands exhibited markedly lower hydrologic capacitance than those with more (i.e., smaller) wetlands, highlighting the importance of small GIWs to regional hydrology. Our results suggest that GIWs buffer dynamics of the surficial aquifer and stream base flow, providing an indirect but significant nexus to the regional hydrologic system.
机译:美国最高法院最近的裁决限制了联邦对地理上孤立的湿地(GIW)的保护,除非证明了对通航水体的“重要联系”。地理隔离并不意味着GIW在水文上是不相连的。实际上,湿地与地下水的相互作用可能会对区域水文学产生重要的控制作用。高地和淹没的GIW之间的单产差异(S_y)导致水位对降水和蒸散的响应差异,导致水力梯度频繁逆转,导致GIW既充当地下水汇又充当地下水源。预计这些逆转会缓冲地表含水层的动力学,从而缓冲基础水流的输送,这一过程我们称为景观水文电容。为了验证该假设,我们将土壤水分,高地水位和湿地阶段的模型连接起来,利用GIW来模拟低浮雕景观的水文状况,并探讨了总湿地面积,单个湿地面积,气候和土壤质地的影响。地下水位和基流量变化。增加湿地总面积并减少单个湿地面积会大大降低地下水位和基础流量变化(例如,将基础流量标准差降低多达50%)。 GIW还降低了极高和极低的地下水位和基本流量的输送频率。对于相同的湿地总面积,湿地较少(即较大)的景观所表现出的水文电容明显低于湿地较多(即较小)的景观,这突出了小型GIW对区域水文学的重要性。我们的研究结果表明,GIW缓冲了表层含水层和河流基流的动力,为区域水文系统提供了间接但重要的联系。

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  • 来源
    《Water resources research》 |2014年第9期|7153-7166|共14页
  • 作者单位

    School of Forest Resources and Conservation, University of Florida, Gainesville, Florida, USA,Department of Forest Resources and Environmental Conservation, Virginia Polytechnic Institute and State University, Blacksburg, Virginia, USA;

    Department of Environmental Engineering Sciences, University of Florida, Gainesville, Florida, USA;

    School of Forest Resources and Conservation, University of Florida, Gainesville, Florida, USA;

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