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Dramatic mass loss in extreme high-elevation areas of a western Himalayan glacier: observations and modeling

机译:喜马拉雅西部冰川高海拔极端地区的巨大质量损失:观测与模型

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Rapid climate change at high elevations has accelerated glacier retreat in the Himalayas and Tibetan Plateau. However, due to the lack of long-term glaciological measurements, there are still uncertainties regarding when the mass loss began and what the magnitude of mass loss is at such high elevations. Based on in situ glaciological observations during the past 9 years and a temperature-index mass balance model, this study investigates recent mass loss of the Naimona'nyi Glacier in the western Himalayas and reconstructs a 41-year (1973/74-2013/14) equilibrium line altitude (ELA) and glacier-wide mass loss. The result indicates that even at 6000?m above sea level (a.s.l.), the annual mass loss reaches ~0.73?m water equivalent (w.e.) during the past 9 years. Concordant with the abrupt climate shift in the end of 1980s, the ELA has dramatically risen from ~5969?±?73?m a.s.l. during 1973/74-1988/89 to ~6193?±?75?m a.s.l. during 1989/90-2013/14, suggesting that future ice cores containing uninterrupted climate records could only be recovered at least above 6200?m a.s.l. in the Naimona'nyi region. The glacier-wide mass balance over the past 41 years is averaged to be approximately -0.40?±?0.17?m w.e., exhibiting a significant increase in the decadal average from -0.01?±?0.15 to -0.69?±?0.21?m w.e.
机译:高海拔地区的快速气候变化加快了喜马拉雅山和青藏高原的冰川退缩。然而,由于缺乏长期的冰川测量,对于何时开始质量损失以及在如此高的海拔高度处质量损失的大小仍存在不确定性。基于过去9年的冰河观测资料和温度指数质量平衡模型,本研究调查了喜马拉雅山西部Naimona'nyi冰川的近期质量损失,并重建了41年(1973 / 74-2013 / 14平衡线高度(ELA)和冰川范围内的质量损失。结果表明,在过去的9年中,即使在海拔高度为6000?m的情况下,年度质量损失也达到了约0.73?m水当量(w.e.)。与1980年代末的突然的气候变化相一致,ELA已从约5969?±?73?m.a.s.l。急剧上升。在1973 / 74-1988 / 89到a.s.l.〜6193?±?75?m在1989 / 90-2013 / 14年期间,这表明未来包含不间断气候记录的冰芯至少只能在6200?m.a.s.l。以上被回收。在Naimona'nyi地区。在过去41年中,整个冰川的质量平衡平均约为-0.40?±?0.17?m,十年平均值从-0.01?±?0.15显着增加到-0.69?±?0.21?m我们

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