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Relating ocean temperatures to frontal ablation rates at Svalbard tidewater glaciers: Insights from glacier proximal datasets

机译:斯瓦尔巴群岛潮水冰川的海洋温度与额叶消融率的关系:来自冰川近端数据集的见解

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摘要

Fjord-terminating glaciers in Svalbard lose mass through submarine melt and calving (collectively: frontal ablation), and surface melt. With the recently observed Atlantification of water masses in the Barents Sea, warmer waters enter these fjords and may reach glacier fronts, where their role in accelerating frontal ablation remains insufficiently understood. Here, the impact of ocean temperatures on frontal ablation at two glaciers is assessed using time series of water temperature at depth, analysed alongside meteorological and glaciological variables. Ocean temperatures at depth are harvested at distances of 1 km from the calving fronts of the glaciers Kronebreen and Tunabreen, western Svalbard, from 2016 to 2017. We find ocean temperature at depth to control c. 50% of frontal ablation, making it the most important factor. However, its absolute importance is considerably less than found by a 2013–2014 study, where temperatures were sampled much further away from the glaciers. In light of evidence that accelerating levels of global mass loss from marine terminating glaciers are being driven by frontal ablation, our findings illustrate the importance of sampling calving front proximal water masses.
机译:斯瓦尔巴群岛的峡湾终结冰川由于海底融化和产犊(统称:额叶消融)和表面融化而失去了质量。随着最近巴伦支海水团的大西洋化,较温暖的水进入这些峡湾,并可能到达冰川前沿,在冰川前沿,它们在促进额叶消融中的作用仍知之甚少。在这里,使用深度水温的时间序列评估海洋温度对两个冰川的正面消融的影响,并与气象和冰川学变量一起进行分析。从2016年至2017年,距斯瓦尔巴特群岛西部克朗布里恩和图纳布赖恩冰川的产犊锋线1公里处,采集了深海温度。我们找到了控制c的深海温度。额叶消融的50%,使其成为最重要的因素。但是,它的绝对重要性远不及2013-2014年的一项研究发现的那样,在该研究中,采样温度离冰川更远。鉴于有证据表明额叶消融是海洋终止冰川加速全球质量损失的重要原因,我们的发现表明,取样产犊前近端水团很重要。

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