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A benchmark dataset of in situ Antarctic surface melt rates and energy balance

机译:原位南极地面熔体率和能量平衡的基准数据集

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Surface melt on the coastal Antarctic ice sheet (AIS) determines the viability of its ice shelves and the stability of the grounded ice sheet, but very few in situ melt rate estimates exist to date. Here we present a benchmark dataset of in situ surface melt rates and energy balance from nine sites in the eastern Antarctic Peninsula (AP) and coastal Dronning Maud Land (DML), East Antarctica, seven of which are located on AIS ice shelves. Meteorological time series from eight automatic and one staffed weather station (Neumayer), ranging in length from 15 months to almost 24 years, serve as input for an energy-balance model to obtain consistent surface melt rates and energy-balance results. We find that surface melt rates exhibit large temporal, spatial and process variability. Intermittent summer melt in coastal DML is primarily driven by absorption of shortwave radiation, while non-summer melt events in the eastern AP occur during fohn events that force a large downward directed turbulent flux of sensible heat. We use the in situ surface melt rate dataset to evaluate melt rates from the regional atmospheric climate model RACMO2 and validate a melt product from the QuikSCAT satellite.
机译:沿海南极冰盖(AIS)上的表面熔体决定了其冰架的可行性和接地冰盖的稳定性,但迄今为止存在很少的原位熔融率估算。在这里,我们在东南南极半岛(AP)和沿海德尔宁Maud Land(DML),东南极洲的九个站点,九个网站,迄今为止,展示了一个原位地面熔体率和能量平衡的基准数据集。从八个自动和一个人员气象站(Neumayer)的气象时间序列,长度从15个月到近24年,用作能量平衡模型的输入,以获得一致的表面熔体速率和能量平衡结果。我们发现表面熔体率表现出大型时间,空间和工艺变异性。在沿海DML中的间歇性夏季熔体主要由短波辐射的吸收驱动,而东部AP中的非夏季熔体事件发生在FOHN事件中,以强制大向下指向的明智的热量湍流通量。我们使用原位表面熔融速率数据集来评估区域大气气候模型Racmo2的熔体率,并从Quikscat卫星验证熔体产品。

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