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Wetlandscape hydrologic dynamics driven by shallow groundwater and landscape topography

机译:浅层地下水和景观地形驱动的湿地景观水文动力学

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摘要

Wetlands play an important role in watershed eco-hydrology. The occurrence and distribution of wetlands in a landscape are affected by the surface topography and the hydro-climatic conditions. Here, we propose a minimalist probabilistic approach to describe the dynamic behaviour of wetlandscape attributes, including number of inundated wetlands and the statistical properties of wetland stage, surface area, perimeter, and storage volume. The method relies on two major assumptions: (a) wetland bottom hydrologic resistance is negligible; and (b) groundwater level is parallel to the mean terrain elevation. The approach links the number of inundated wetlands (depressions with water) to the distribution of wetland bottoms and divides, and the position of the shallow water table. We compared the wetlandscape attribute dynamics estimated from the probabilistic approach to those determined from a parsimonious hydrologic model for groundwater-dominated wetlands. We test the reliability of the assumptions of both models using data from six cypress dome wetlands in the Green Swamp Wildlife Management Area, Florida. The results of the hydrologic model for groundwater-dominated wetlands showed that the number of inundated wetlands has a unimodal dependence on the groundwater level, as predicted by the probabilistic approach. The proposed models provide a quantitative basis to understand the physical processes that drive the spatiotemporal hydrologic dynamics in wetlandscapes impacted by shallow groundwater fluctuations. Emergent patterns in wetlandscape hydrologic dynamics are of key importance not only for the conservation of water resources, but also for a wide range of eco-hydrological services provided by connectivity between wetlands and their surrounding uplands.
机译:湿地在流域生态水文中起着重要作用。景观中湿地的发生和分布受地表地形和水文气候条件的影响。在这里,我们提出了一种极简概率方法来描述湿地景观属性的动态行为,包括淹没湿地的数量以及湿地阶段,表面积,周长和存储量的统计属性。该方法基于两个主要假设:(a)湿地底部水文阻力可以忽略不计; (b)地下水位平行于平均地形标高。该方法将淹没的湿地数量(水洼)与湿地底部和分隔的分布以及浅水位的位置联系起来。我们将概率方法估计的湿地景观属性动力学与地下水为主的湿地的简约水文模型确定的动力学属性进行了比较。我们使用佛罗里达州绿色沼泽野生动物管理区的六个柏树圆顶湿地的数据来测试这两个模型的假设的可靠性。地下水为主的湿地的水文模型的结果表明,如概率方法所预测的,被淹没的湿地的数量对地下水位具有单峰依赖性。所提出的模型为理解在浅水地下水波动影响下的湿地景观中驱动时空水文动力学的物理过程提供了定量基础。湿地景观水力动力学中的新模式不仅对于水资源保护至关重要,而且对于湿地与其周围高地之间的连通性提供的各种生态水文服务也至关重要。

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