阿根廷安第斯山脉中部东部科迪勒拉地区近期气候变暖与瓦拉斯岩石冰川活动

GeoResJ Pub Date : 2017-12-01 DOI:10.1016/j.grj.2017.08.002
Mateo A Martini , Jorge A Strelin , Eliseo Flores , Ricardo A Astini , Michael R Kaplan
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引用次数: 7

摘要

最近的研究表明,在高海拔山区环境中,过去几十年全球变暖趋势有被强烈放大的趋势。然而,很少有人尝试监测这种气候变化对高海拔岩石冰川可能产生的影响。本文对阿根廷西北部安第斯山脉的瓦拉斯岩石冰川进行了地貌分析,并首次观测到岩石冰川的温度(空气和地面)和地表速度。在2012年至2016年期间,使用差分全球定位系统每年监测30个巨石网络。在整个观测期间,瓦拉斯活动岩石冰川的速度在125到5 cm/年之间,除了四个巨石没有移动。在5年的监测中,空气和地面(5和50 厘米深)的年平均温度保持在0 °C以上。位于La Quiaca站距离Varas岩石冰川约130 公里处的长期仪器天气数据集(106年)显示,上个世纪的变暖趋势为0.8 °C,在过去25年中急剧上升。该地区记录的变暖趋势可能导致或促进了瓦拉斯活跃岩石冰川中较暴露部分的不活动。然而,岩石冰川对过去几十年变暖的相对缓慢和全面的反应也可能有所延迟。最后,观测结果使我们能够提出瓦拉斯岩石冰川谷自冰期以来的形成序列。
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Recent climate warming and the Varas rock glacier activity, Cordillera Oriental, Central Andes of Argentina

Recent studies have revealed that in high-altitude mountain environments the global warming trend over the last few decades tends to be strongly amplified. However, few attempts have been made to monitor the possible effects of such climate changes on high-altitude rock glaciers. In this paper, we provide a geomorphic analysis of the Varas rock glacier, and present the first observations of rock glacier temperature (air and ground) and surface velocities in the Andes of northwestern Argentina. A network of 30 boulders was monitored every year between 2012 and 2016 using a differential Global Positioning System. Over the observational period, the Varas active rock glacier registered velocities between 125 and 5 cm/yr, except for four boulders which did not shift. Over the five years of monitoring, the mean annual air and ground (at 5 and 50 cm depth) temperature remained above 0 °C. A long-term instrumental weather dataset (106 years), located ∼130 km from the Varas rock glacier, at La Quiaca station, reveals a warming trend of 0.8 °C during the last century, with a steep increase during the last two and half decades. The warming trend recorded in the region may have produced or facilitated the inactivity of the more-exposed sectors of the Varas active rock glacier. However, there also may be a delay in the relatively slow and full response of rock glaciers to the last few decades of warming. Finally, the observations allow us to propose a formation sequence in the Varas rock glacier valley, since postglacial time.

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