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Glaciar Perito Moreno, Patagonia: climate sensitivities and glacier characteristics preceding the 2003/04 and 2005/06 damming events

机译:巴塔哥尼亚的佩雷托·莫雷诺冰川:2003/04年和2005/06年大坝事件之前的气候敏感性和冰川特征

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Mass balance and climate sensitivity of Glaciar Perito Moreno (GPM), one of the main outlet glaciers of Hielo Patago′nico Sur (southern Patagonia icefield), were investigated. Field measurements were carried out from 1995 to 2003, including ice ablation and velocity at stakes, seismic profiling, bathymetry of the lake near the calving fronts and meteorological data. The database was complemented by satellite observations, to derive the motion field by interferometric data, map glacier boundaries and snowlines from multi-year time series of radar images, and obtain glacier topography from the Shuttle Radar Topography Mission. In September 2003, GPM started to dam the southern arm of Lago Argentino, resulting in a maximum rise of the lake level of 9.35m before the dam burst in March 2004. The ice dam formed again in August 2005, bursting in March 2006. Analysis of mass fluxes indicates no long-term trend in mass balance. This behaviour, contrasting with most retreating glaciers in the vicinity, can be attributed to a particular glacier geometry. Monthly climate sensitivity characteristics for glacier mass balance were derived using a degree-day model, showing similar importance of both temperature and precipitation. Also, the reconstruction of the mass balance for the last 50 years from local climate data shows a near-steady-state condition for GPM, with some small fluctuations, such as a slightly positive balance after 1998, that may have triggered the minor advance leading to damming events in 2003 and 2005.
机译:研究了Hielo Patago'nico Sur(巴塔哥尼亚南部冰原)的主要出口冰川之一Glaciar Perito Moreno(GPM)的质量平衡和气候敏感性。从1995年到2003年进行了野外测量,包括冰消融和桩顶速度,地震剖面,产犊前线附近湖泊的测深法和气象数据。该数据库还辅以卫星观测数据,可通过多年期雷达图像序列中的干涉测量数据,冰川边界和雪线得出运动场,并从航天飞机雷达地形任务中获取冰川地形。 2003年9月,GPM开始在Lago Argentino的南臂上筑坝,导致在2004年3月大坝破裂前最大的湖泊水位上升了9.35m。冰坝在2005年8月再次形成,在2006年3月破裂。质量流量表示质量平衡没有长期趋势。与附近大多数后退冰川相反,这种行为可归因于特定的冰川几何形状。利用度日模型推导了每月对冰川质量平衡的气候敏感性特征,显示出温度和降水的相似重要性。同样,根据当地气候数据重建过去50年的质量平衡表明,GPM处于接近稳态的状态,并且存在一些小波动,例如1998年以后的平衡略为正,这可能触发了小幅上涨。阻止2003年和2005年发生的事件。

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