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Estimating restorable wetland water storage at landscape scales

机译:在景观尺度上估算可恢复的湿地蓄水量

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摘要

Globally, hydrologic modifications such as ditching and subsurface drainage have significantly reduced wetland water storage capacity (i.e., volume of surface water a wetland can retain) and consequent wetland functions. While wetland area has been well documented across many landscapes and used to guide restoration efforts, few studies have directly quantified the associated wetland storage capacity. Here, we present a novel raster-based approach to quantify both contemporary and potential (i.e., restorable) storage capacities of individual depressional basins across landscapes. We demonstrate the utility of this method by applying it to the Delmarva Peninsula, a region punctuated by both depressional wetlands and drainage ditches. Across the entire peninsula, we estimated that restoration (i.e., plugging ditches) could increase storage capacity by 80%. Focusing on an individual watershed, we found that over 59% of restorable storage capacity occurs within 20 m of the drainage network, and that 93% occurs within 1 m elevation of the drainage network. Our demonstration highlights widespread ditching in this landscape, spatial patterns of both contemporary and potential storage capacities, and clear opportunities for hydrologic restoration. In Delmarva and more broadly, our novel approach can inform targeted landscape-scale conservation and restoration efforts to optimize hydrologically mediated wetland functions.
机译:在全球范围内,诸如沟渠和地下排水之类的水文改良大大降低了湿地的蓄水能力(即湿地可以保留的地表水量),从而导致了湿地的功能。湿地面积已在许多景观中得到了很好的记录,并用于指导恢复工作,但很少有研究直接量化相关的湿地存储能力。在这里,我们提出了一种新颖的基于栅格的方法来量化跨景观的单个depression陷盆地的当代和潜在(即可恢复)存储能力。通过将其应用于德尔马半岛(Delmarva Peninsula),该地区被凹陷的湿地和排水沟所打断,我们证明了该方法的实用性。在整个半岛上,我们估计恢复(即堵塞沟渠)可以使存储容量增加80%。着眼于单个流域,我们发现超过59%的可恢复存储容量发生在排水网络的20 m之内,而93%发生在排水网络的海拔1m之内。我们的演示突出显示了该景观中广泛的沟渠,当代和潜在存储能力的空间格局以及明显的水文修复机会。在德尔马瓦以及更广泛的地方,我们的新颖方法可以为有针对性的景观尺度保护和恢复工作提供信息,以优化水文介导的湿地功能。

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