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Climatic drivers of seasonal glacier mass balances: an analysis of 6 decades at Glacier de Sarennes (French Alps)

机译:季节性冰川质量平衡的气候驱动因素:对法国阿尔卑斯山的萨尔内斯冰川(Glacier de Sarennes)6年的分析

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Refined temporal signals extracted from a winter and summer mass balance series recorded at Glacier de Sarennes (French Alps) using variance decomposition are related to local meteorological data and large-scale North Atlantic Oscillation (NAO) anomalies in terms of interannual variability, trends of the low-frequency signals, and breaks in the time series. The winter balance has increased by +23% since 1976 due to more precipitation in early and late winter. The summer balance has decreased since 1982 due to a 43% increase in snow and ice melt. A 24-day lengthening of the ablation period a?? mainly due to longer ice ablation a?? is the main component in the overall increase in ablation. In addition, the last 25 yr have seen increases in ablation rates of 14 and 10% for snow and ice, respectively. A simple degree-day analysis can account for both the snow/ice melt rate rise and the lengthening of the ablation period as a function of higher air temperatures. From the same analysis, the equilibrium-line altitude of this 45° N latitude south-facing glacier has a sensitivity to temperature of +93 m °Csupa??1/sup around its mean elevation of 3100 m a.s.l. over 6 decades. The sensitivity of summer balance to temperature is −0.62 m w.e. yrsupa??1/sup ?°Csupa??1/sup for a typical 125-day-long ablation season. Finally, the correlation of winter and summer mass balance terms with NAO anomalies is investigated. Singularly, highest values are obtained between winter NAO anomalies and summer balance. Winter NAO anomalies and winter balance and precipitation are almost disconnected. However, these results strongly depend on how the NAO signal is smoothed, so that the link between Sarennes mass balance seasonal terms and NAO signal remains tenuous and hard to interpret.
机译:使用方差分解从Glacier de Sarennes(法国阿尔卑斯山)记录的冬季和夏季质量平衡系列中提取的精细时间信号与当地气象数据和大规模北大西洋涛动(NAO)异常有关,年际变化,趋势低频信号,并在时间序列中中断。自1976年以来,由于早冬和晚冬的降水增加,冬季的平衡增加了23%以上。由于冰雪融化增加了43%,自1982年以来,夏季余额有所下降。消融期延长24天???主要是由于消融时间更长?是消融总体增加的主要组成部分。此外,最近25年的雪和冰消融率分别提高了14%和10%。简单的度日分析可以说明雪/冰融化速率的上升和烧蚀时间的延长与较高空气温度的关系。根据相同的分析,该45°的平衡线高度为N纬度朝南的冰川在其平均海拔3100 m a.s.l附近对温度敏感度为+93 m°C a ?? 1 。超过6年。夏季平衡对温度的敏感度为--0.62 m w.e. yr a ?? 1 ?°C a ?? 1 对于典型的125天长的消融季节。最后,研究了冬季和夏季质量平衡项与NAO异常的相关性。仅在冬季NAO异常和夏季平衡之间获得最高值。冬季NAO异常和冬季平衡与降水几乎是脱节的。但是,这些结果很大程度上取决于NAO信号的平滑程度,因此Sarennes质量平衡季节项和NAO信号之间的联系仍然很脆弱并且难以解释。

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