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Does Wetland Location Matter When Managing Wetlands for Watershed-Scale Flood and Drought Resilience?

机译:湿地位置是否在管理流域泛滥和干旱弹性的湿地时?

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摘要

Wetland protection and restoration strategies that are designed to promote hydrologic resilience do not incorporate the location of wetlands relative to the main stream network. This is primarily attributed to the lack of knowledge on the effects of wetland location on wetland hydrologic function (e.g., flood and drought mitigation). Here, we combined a watershed-scale, surface-subsurface, fully distributed, physically based hydrologic model with historical, existing, and lost (drained) wetland maps in the Nose Creek watershed in the Prairie Pothole Region of North America to (1) estimate the hydrologic functions of lost wetlands and (2) estimate the hydrologic functions of wetlands located at different distances from the main stream network. Modeling results showed wetland loss altered streamflow, decreasing baseflow and increasing stream peakflow during the period of the precipitation events that led to major flooding in the watershed and downstream cities. In addition, we found that wetlands closer to the main stream network played a disproportionately important role in attenuating peakflow, while wetland location was not important for regulating baseflow. The findings of this study provide information for watershed managers that can help to prioritize wetland restoration efforts for flood or drought risk mitigation.
机译:湿地保护和恢复策略旨在促进水文弹性的湿地不包含湿地相对于主流网络的位置。这主要归因于缺乏关于湿地位置对湿地水文功能的影响的知识(例如,洪水和干旱缓解)。在这里,我们将流域级,表面地下,完全分布的物理基础的水文模型与北美洲的大草原坑洞区的鼻溪流域中的历史,现有和丢失(排出的)湿地图。(1)估计损失湿地的水文功能和(2)估计湿地的水文功能与主流网络不同距离的湿地。建模结果表明,湿地损失改变了流出,降低了灌木事件期间的碱流量,增加了流峰流,导致流域和下游城市大幅洪水。此外,我们发现靠近主流网络的湿地在衰减峰流方面发挥了不成比例的重要作用,而湿地位置对于调节基础并不重要。本研究的调查结果为流域管理者提供了有助于优先考虑洪水或干旱风险减缓的湿地恢复努力的信息。

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