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首页> 外文期刊>Environmental Research Letters >Acceleration of thaw slump activity in glaciated landscapes of the Western Canadian Arctic
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Acceleration of thaw slump activity in glaciated landscapes of the Western Canadian Arctic

机译:加拿大西部北极冰川景观中的融化坍落度活动加速

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Climate change is increasing the frequency and intensity of thermokarst, but the influences of regional climate and physiography remain poorly understood. Retrogressive thaw slumping is one of the most dynamic forms of thermokarst and affects many areas of glaciated terrain across northwestern Canada. In this study, we used airphotos and satellite imagery to investigate the influence of climate and landscape factors on thaw slump dynamics. We assessed slump size, density, and growth rates in four regions of ice-rich terrain with contrasting climate and physiographic conditions: the Jesse Moraine, the Tuktoyaktuk Coastlands, the Bluenose Moraine, and the Peel Plateau. Observed increases in: (1) the area impacted by slumps (+2 to +407%), (2) average slump sizes (+0.31 to +1.82 ha), and (3) slump growth rates (+169 to +465 m2 yr?1) showed that thermokarst activity is rapidly accelerating in ice-rich morainal landscapes in the western Canadian Arctic, where slumping has become a dominant driver of geomorphic change. Differences in slump characteristics among regions indicate that slump development is strongly influenced by topography, ground ice conditions, and Quaternary history. Observed increases in slump activity occurred in conjunction with increases in air temperature and precipitation, but variation in slump activity among the four regions suggests that increased precipitation has been an important driver of change. Our observation that the most rapid intensification of slump activity occurred in the coldest environment (the Jesse Moraine on Banks Island) indicates that ice-cored landscapes in cold permafrost environments are highly vulnerable to climate change.
机译:气候变化正在增加热岩溶的频率和强度,但是对区域气候和地貌的影响知之甚少。逆行融化塌陷是最动态的地热岩溶形式之一,并影响加拿大西北部许多冰川地区。在这项研究中,我们使用航空照片和卫星图像来研究气候和景观因素对融化坍落度动力学的影响。我们评估了四个冰层丰富地区的坍落度大小,密度和增长率,这些地区的气候和地理条件截然相反:杰西冰a,图克托亚克图克海岸,蓝鼻冰a和皮尔高原。观察到的增长:(1)受坍塌影响的面积(+2至+407%),(2)平均坍落度大小(+0.31至+1.82公顷),以及(3)坍落度增长率(+169至+465 m2 yr?1)表明,在加拿大西部北极地区富含冰块的莫拉山景观中,喀斯特地热活动正在迅速加速,那里的塌陷已成为地貌变化的主要驱动力。区域之间坍落度特征的差异表明,坍落度的发展受地形,地冰条件和第四纪历史的强烈影响。观察到坍落度活动的增加与气温和降水量的增加有关,但四个地区坍落度活动的变化表明降水增加是变化的重要驱动力。我们的观察表明,坍落度活动最迅速的加剧发生在最寒冷的环境中(班克斯岛的Jesse Moraine),这表明寒冷的永久冻土环境中的冰芯景观极易受到气候变化的影响。

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