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Snowfall less sensitive to warming in Karakoram than in Himalayas due to a unique seasonal cycle

机译:由于独特的季节周期,降雪对喀喇昆仑山脉的变暖的敏感性低于喜马拉雅山

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The high mountains of Asia, including the Karakoram, Himalayas and Tibetan Plateau, combine to form a region of perplexing hydroclimate changes. Glaciers have exhibited mass stability or even expansion in the Karakoram region~(1-3), contrasting with glacial mass loss across the nearby Himalayas and Tibetan Plateau~(1,4), a pattern that has been termed the Karakoram anomaly. However, the remote location, complex terrain and multi-country fabric of high-mountain Asia have made it difficult to maintain longer-term monitoring systems of the meteorological components that may have influenced glacial change. Here we compare a set of high-resolution climate model simulations from 1861 to 2100 with the latest available observations to focus on the distinct seasonal cycles and resulting climate change signatures of Asia's high-mountain ranges.We find that the Karakoram seasonal cycle is dominated by non-monsoonal winter precipitation, which uniquely protects it from reductions in annual snowfall under climate warming over the twenty-first century. The simulations show that climate change signals are detectable only with long and continuous records, and at specific elevations. Our findings suggest a meteorological mechanism for regional differences in the glacier response to climate warming.
机译:亚洲的高山,包括喀喇昆仑山,喜马拉雅山和青藏高原,共同构成了一个令人困惑的水文气候变化区域。冰川在喀喇昆仑地区〜(1-3)表现出质量稳定,甚至膨胀,与附近喜马拉雅山和青藏高原〜(1,4)的冰川质量损失形成鲜明对比,这种模式被称为喀喇昆仑异常。但是,由于亚洲山区的偏远地区,复杂的地形和多国的结构,很难维护可能影响冰川变化的气象组件的长期监测系统。在这里,我们将一组1861年至2100年的高分辨率气候模型模拟与最新的可用观测值进行了比较,以关注亚洲高山地区不同的季节周期以及由此产生的气候变化特征。非季风的冬季降水,在二十一世纪气候变暖的情况下,可以独特地保护其免受年度降雪的影响。模拟表明,只有长期连续记录且在特定海拔高度才能检测到气候变化信号。我们的发现为冰川对气候变暖的区域差异提供了一种气象机制。

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