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首页> 外文期刊>Geophysical Research Letters >Climate Change Drives Widespread and Rapid Thermokarst Development in Very Cold Permafrost in the Canadian High Arctic
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Climate Change Drives Widespread and Rapid Thermokarst Development in Very Cold Permafrost in the Canadian High Arctic

机译:气候变化在加拿大高北极的非常冷的永久冻土中推动了广泛和快速的热量发展

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Climate warming in regions of ice-rich permafrost can result in widespread thermokarst development, which reconfigures the landscape and damages infrastructure. We present multisite time series observations which couple ground temperature measurements with thermokarst development in a region of very cold permafrost. In the Canadian High Arctic between 2003 and 2016, a series of anomalously warm summers caused mean thawing indices to be 150-240% above the 1979-2000 normal resulting in up to 90 cm of subsidence over the 12-year observation period. Our data illustrate that despite low mean annual ground temperatures, very cold permafrost (<-10 degrees C) with massive ground ice close to the surface is highly vulnerable to rapid permafrost degradation and thermokarst development. We suggest that this is due to little thermal buffering from soil organic layers and near-surface vegetation, and the presence of near-surface ground ice. Observed maximum thaw depths at our sites are already exceeding those projected to occur by 2090 under representative concentration pathway version 4.5.
机译:富含冰冻永久冻土区域的气候变暖可能导致广泛的热致发展,重新配置景观和损坏基础设施。我们提出了多级时间序列观测,在非常冷的永久冻土区域中与热潮流发展进行地面温度测量。在2003年至2016年的加拿大高北极地区,一系列异常温暖的夏季引起了平均解冻指数在1979 - 2000年正常的150-240%,导致12年期观察期内高达90厘米的沉降。我们的数据表明,尽管平均年的地面温度低,但非常冷的永久冻土(<-10℃),靠近表面的巨大地冰是高度易受多年冻土的降解和热潮流的群体。我们建议这是由于土壤有机层和近地植被的近似的热缓冲,以及近地磨冰的存在。观察到我们网站的最大解冻深度已经超过2090年在代表浓度途径4.5下预测的那些。

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