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Assessing glacier melt contribution to streamflow at Universidad Glacier, central Andes of Chile

机译:在智利安第斯山脉中部评估冰川融化对河流流量的贡献

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Glacier melt is an important source of water for high Andean rivers in central Chile, especially in dry years, when it can be an important contributor to flows during late summer and autumn. However, few studies have quantified glacier melt contribution to streamflow in this region. To address this shortcoming, we present an analysis of meteorological conditions and ablation for Universidad Glacier, one of the largest valley glaciers in the central Andes of Chile at the head of the Tinguiririca River, for the 2009–2010 ablation season. We used meteorological measurements from two automatic weather stations installed on the glacier to drive a distributed temperature-index and runoff routing model. The temperature-index model was calibrated at the lower weather station site and showed good agreement with melt estimates from an ablation stake and sonic ranger, and with a physically based energy balance model. Total modelled glacier melt is compared with river flow measurements at three sites located between 0.5 and 50?km downstream. Universidad Glacier shows extremely high melt rates over the ablation season which may exceed 10?m water equivalent in the lower ablation area, representing between 10 and 13?% of the mean monthly streamflow at the outlet of the Tinguiririca River Basin between December?2009 and March?2010. This contribution rises to a monthly maximum of almost 20?% in March?2010, demonstrating the importance of glacier runoff to streamflow, particularly in dry years such as 2009–2010. The temperature-index approach benefits from the availability of on-glacier meteorological data, enabling the calculation of the local hourly variable lapse rate, and is suited to high melt regimes, but would not be easily applicable to glaciers further north in Chile where sublimation is more significant.
机译:冰川融化是智利中部安第斯山脉河流的重要水源,特别是在干旱年份,这可能是夏末和秋季后期流量的重要因素。但是,很少有研究量化该地区冰川融化对水流的贡献。为了解决这一缺点,我们对2009-2010年消融季节的智利安第斯山脉中部最大的山谷冰川之一廷吉里里卡河上游的气象条件和消融进行了分析。我们使用了安装在冰川上的两个自动气象站的气象测量结果,以驱动分布式温度指数和径流路径模型。温度指数模型在较低气象站现场进行了校准,与消融桩和声波测距仪的熔体估算值以及基于物理的能量平衡模型显示出良好的一致性。将模拟的冰川融化总量与下游0.5至50公里之间的三个地点的河流流量测量值进行比较。冰川大学在整个消融季节显示出极高的融化率,在较低消融区域的水当量可能超过10?m水当量,占Tinguiririca流域出口在2009年12月至2009年期间平均月流量的10%至13%。 2010年3月?到2010年3月,这一贡献上升到每月最高的20%左右,这表明冰川径流对水流的重要性,特别是在2009-2010年这样的干旱年份。温度指数方法得益于冰川上气象数据的获取,可以计算当地每小时的时差率,并且适用于高融化条件,但不适用于智利北部向北升华的冰川。更重要。

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