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Rock Glacier Degradation and Instabilities in the European Alps: A Characterisation and Monitoring Experiment in the Turtmanntal, CH

机译:欧洲阿尔卑斯山区岩石冰川退化和稳定性:攀岩,CH的特征与监测实验

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Global climate change is impacting sensitive alpine cryogenic regions, through slope instabilities in rocks and soils. Significant temperature increase at the air-ground surface interface may be accompanied by increased rainfall, more extreme storms and additional severe rise in mean global temperatures in the coming decades, enhancing risk of mass movement hazards to human life and infrastructure. Rock glaciers and degrading permafrost on steep Alpine slopes are particularly susceptible to warming and phase change in either massive or interstitial ground ice, which may lead to release of water, accelerated motions, initiation of landslides and instabilities. Accumulated failure in soil elements, determined on artificial frozen specimens of rock glacier materials at temperatures below 0 °C, is linked to these processes at field scale. A geophysical and geotechnical field characterisation and monitoring experiment is being conducted on a rock glacier that is undergoing thermally induced creep and growth of thermokarst. Preliminary investigations are described in this contribution.
机译:全球气候变化正在影响敏感的高山低温区域,通过岩石和土壤中的坡度稳定性。在未来几十年中,空气地面界面的显着温度升高可能伴随着降雨量的降雨量增加,更极端的风暴和平均全球气温的额外严重升高,从而提高了对人类生命和基础设施的群众运动危害的风险。陡峭的高山斜坡上的岩石冰川和降解永久冻土尤其容易受到大规模或间质磨冰的热温和相变,这可能导致水,加速运动,对山体滑坡和稳定性的启动。在低于0°C的温度下,在岩石冰川材料的人工冷冻标本上测定土壤元素的累积失效与这些过程以现场等级连接。地球物理和岩土工艺特征和监测实验正在进行经历热诱导的蠕变和热潮流的蠕变和生长的岩石冰川上。在本贡献中描述了初步调查。

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