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A New Protocol to Map Permafrost Geomorphic Features and Advance Thaw-Susceptibility Modelling

机译:一种映射永久冻土地貌特征的新协议,提前解冻易感性建模

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Permafrost thaw can destabilize terrain, initiate thermokarst processes that alter landscapes, and create geohazards for communities and infrastructure. A robust, standardized methodology was developed to map indicators of thaw-sensitive permafrost terrain, including mass wasting and periglacial features. The method was applied to a 10-km wide corridor centred on the Dempster and Inuvik-Tuktoyaktuk Highways, which are constructed over a wide range of terrain and permafrost conditions. Here we use random forest models, trained and validated with mass movement and ice-wedge polygon inventories, to develop thaw-susceptibility models for two regions along the corridor, Peel Plateau, and Anderson Plain and Tuktoyaktuk Coastlands. Geomorphological and hydrological variables were used as predictors providing insights into the characteristics constraining the distribution of thaw-sensitive terrain. In the Peel region, mass movements have a higher potential of occurring on concave, moderate to steep slopes (7 to 18°) in fluvially-incised valleys. In uplands of Anderson Plain and Tuktoyaktuk Coastlands, mass movements occur on moderate slopes (5 to 15°) adjacent to incised stream channels, and along lakeshores. The ice-wedge polygon model across the forest tundra transition north of Inuvik highlights the northward increase in polygonal terrain with decreasing ground temperatures.
机译:Permafrost解冻可以使地形稳定,发起改变风景的热量流程,并为社区和基础设施创造地质曲线。开发了一种强大的标准化方法,用于映射解冻敏感的永久性地形的指示,包括大规模浪费和褶皱特征。该方法应用于以10公里的走廊,以Dempster和Inuvik-Tuktoyaktuktuke高速公路为中心,该高速公路均在各种地形和永久冻土条件下构建。在这里,我们使用随机森林模型,培训和验证了大规模运动和冰楔多边形库存,为走廊,剥皮高原和安德森平原和杜托瓦克托克海岸线开发两个地区的解冻易感模型。地貌和水文变量被用作预测器,为限制解冻敏感地形分布的特性提供了洞察力。在剥离区域中,质量运动具有更高的潜力,在凹面上发生,中等至氟化山谷中的陡坡(7至18°)。在Anderson Plane和Tuktoyaktuk海岸的高地,在与切口流频道和湖岸相邻的中等斜坡(5至15°)上发生质量动作。 Inuvik北部森林苔原转换的冰楔多边形模型突出了多边形地形的向北增加,地面温度下降。

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