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An estimate of ice wedge volume for a High Arctic polar desert environment, Fosheim Peninsula, Ellesmere Island

机译:Ellesmere岛Fosheim半岛高北极极地沙漠环境的冰楔体积估计

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Quantifying ground-ice volume on a regional scale is necessary to assess the vulnerability of permafrost landscapes to thaw-induced disturbance like terrain subsidence and to quantify potential carbon release. Ice wedges (IWs) are a ubiquitous ground-ice landform in the Arctic. Their high spatial variability makes generalizing their potential role in landscape change problematic. IWs form polygonal networks that are visible on satellite imagery from surface troughs. This study provides a first approximation of IW ice volume for the Fosheim Peninsula, Ellesmere Island, a continuous permafrost area characterized by polar desert conditions and extensive ground ice. We perform basic GIS analyses on high-resolution satellite imagery to delineate IW troughs and estimate the associated IW ice volume using a 3-D subsurface model. We demonstrate the potential of two semi-automated IW trough delineation methods, one newly developed and one marginally used in previous studies, to increase the time efficiency of this process compared to manual delineation. Our methods yield acceptable IW ice volume estimates, validating the value of GIS to estimate IW volume on much larger scales. We estimate that IWs are potentially present on 50?% of the Fosheim Peninsula ( ~3000 km sup2/sup ), where 3.81?% of the top 5.9?m of permafrost could be IW ice.
机译:为了评估多年冻土景观对融化引起的干扰(例如地形沉降)的脆弱性并量化潜在的碳释放量,有必要在区域范围内量化冰的体积。冰楔(IWs)是北极普遍存在的地冰地形。它们的高空间变异性使其在景观变化中的潜在作用普遍化。 IW形成了多边形网络,这些卫星在地面槽上的卫星图像上可见。这项研究为Ellesmere岛的Fosheim半岛提供了IW冰量的第一个近似值,这是一个以极地沙漠条件和大量地面冰为特征的连续多年冻土区。我们对高分辨率卫星图像进行基本的GIS分析,以描绘IW谷并使用3-D地下模型估算相关的IW冰量。我们展示了两种半自动IW槽划定方法的潜力,一种是新开发的方法,另一种是先前研究中很少使用的方法,与手动划定方法相比,可以提高该过程的时间效率。我们的方法得出了可接受的IW冰量估计值,从而验证了GIS的价值,可以在更大范围内估计IW冰量。我们估计在Fosheim半岛(〜3000 km 2 )的50%上可能存在IW,其中永久冻土层顶部5.9?m的3.81%可能是IW冰。

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