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Interaction Between the Warm Subsurface Atlantic Water in the Sermilik Fjord and Helheim Glacier in Southeast Greenland

机译:格陵兰东南部塞米利克峡湾和赫尔海姆冰川之间温暖地下大西洋水的互动

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Recent observations of ocean temperature in several Greenland fjords suggest that ocean warming can cause large changes in the outlet glaciers in these fjords. We have observed the Helheim outlet-glacier front in the Sermilik Fjord over the last three decades using satellite images, and the vertical fjord temperature and salinity during three summer expeditions, 2008-2010. We show that the subsurface water below 250 m depth is the warm saline Atlantic Water from the Irminger Sea penetrating into the fjord and exposing the lower part of the Helheim glacier to warm water up to 4°C. Lagged correlation analysis spanning the 30-year time series, using the subsurface Atlantic Water temperature off the coast as a proxy for the variability of the subsurface warm Atlantic Water in the fjord, indicates that 24% of the Helheim ice-front movement can be accounted for by ocean temperature. A strong correlation (-0.75) between the ice-front position and the surface air temperature from a nearby meteorological station suggests that the higher air temperature causes melting and subsequent downward percolation of meltwater through crevasses leading to basal lubrication; the correlation accounts for 56% of the ice-front movement. The precise contribution of air temperature versus ocean temperature however, remains an open question, as more oceanographic and meteorological measurements are needed close to the glacier terminus.
机译:最近几种格陵兰峡湾的海洋温度观察表明,海洋变暖可能会导致这些海湾的出口冰川变化。我们在过去三十年中使用卫星图像观察了赫尔海姆出口 - 冰川前面,在三年夏季探险期间,垂直的峡湾温度和盐度,2008 - 2010年。我们表明,低于250米的地下水是来自IRMINGER海的温泉大西洋水,渗透到峡湾中,并将赫尔海姆冰川的下部暴露在温水至4°C中。滞后的相关性分析跨越30年的时间序列,利用海岸地下的大西洋水温作为峡湾地下暖大型水的可变性的代理,表明24%的赫尔海姆冰前运动可以核算由于海洋温度。从附近的气象站之间的冰前位置和表面空气温度之间的强烈相关性(-0.75)表明,通过导致基底润滑的裂缝导致熔化和随后向熔融水下渗透并随后向下渗透;相关性占冰前运动的56%。然而,空气温度与海洋温度的精确贡献仍然是一个开放的问题,因为需要靠近冰川末端的海洋图和气象测量。

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