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Iceberg melting substantially modifies oceanic heat flux towards a major Greenlandic tidewater glacier

机译:冰山融化基本上改变海洋热通量朝着一个主要的绿地潮水冰川冰川

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Fjord dynamics influence oceanic heat flux to the Greenland ice sheet. Submarine iceberg melting releases large volumes of freshwater within Greenland’s fjords, yet its impact on fjord dynamics remains unclear. We modify an ocean model to simulate submarine iceberg melting in Sermilik Fjord, east Greenland. Here we find that submarine iceberg melting cools and freshens the fjord by up to ~5?°C and 0.7 psu in the upper 100-200?m. The release of freshwater from icebergs drives an overturning circulation, resulting in a ~10% increase in net up-fjord heat flux. In addition, we find that submarine iceberg melting accounts for over 95% of heat used for ice melt in Sermilik Fjord. Our results highlight the substantial impact that icebergs have on the dynamics of a major Greenlandic fjord, demonstrating the importance of including related processes in studies that seek to quantify interactions between the ice sheet and the ocean.
机译:峡湾动力学将海洋热通量影响到格陵兰冰盖。潜艇冰山融化释放格陵兰峡湾中大量淡水,但其对峡湾动态的影响仍不清楚。我们修改了海洋模型,以模拟潜艇冰山在东格陵兰州塞米利克峡湾融化。在这里,我们发现潜艇冰山融化冷却,并在100-200℃的上部100-200℃下达到〜5?°C和0.7 psu。从冰山中释放冰水驱动循环循环,导致净上峡湾热通量增加〜10%。此外,我们发现潜艇冰山融化占95%的热量,用于Sermilik峡湾中的冰熔化。我们的结果突出了冰山对一个主要的格陵兰峡湾的动态的实质性影响,证明了在寻求量化冰盖和海洋之间的相互作用的研究中存在相关过程的重要性。

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