首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Contrasted Summer Processes in the Sea Ice for Two Neighboring Floes North of 84 degrees N: Surface and Basal Melt and False Bottom Formation
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Contrasted Summer Processes in the Sea Ice for Two Neighboring Floes North of 84 degrees N: Surface and Basal Melt and False Bottom Formation

机译:海冰中的夏季过程对比84°N北部的两个邻近的絮状物:表面和基础熔体和假底部形成

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We report continuous observations in the high Arctic (north of 84 degrees N) over the full 2013 summer season at two nearby sites with distinct initial snow depth, ice thickness, and altitude with respect to the local ice topography. The two sites, subject to similar atmospheric conditions that did not favor strong ice melt, showed contrasting evolutions. One site, with initially thin sea ice (1.40 m) at a relatively low location of the floe, witnessed the formation of a spectacular 1.20-m-deep melt pond, a pond-enhanced erosion of the ice surface, and a sudden pond drainage into the ocean. Then, the outpoured fresh water rapidly froze, heated the old ice from below, and also acted as a temporary shield from the ocean heat flux while it was progressively ablated through dissolution. Eventually, the site almost recovered its initial ice thickness. In contrast, the other site, with initially thicker sea ice (1.75 m) at a relatively high location on its floe, did not support any significant meltwater and underwent over 0.5 m of continuous basal ablation. The two sites experienced formation of superimposed and interposed ice. Sea ice survived summer melt at the two sites, which entered the refreezing season with similar snow and ice thicknesses. For the first time, processes associated with the formation of a deep melt pond and subsequent false bottom evolution are continuously documented with ice mass balance instruments.
机译:在附近的2013年夏季,在附近的初始雪地深度,冰厚度和局部冰地形方面的两座景点中,我们报告了在2013年夏季的高北极(北北距离)的持续观察。这两个地点受到类似的大气条件,不利于强烈的冰融化,表现出对比的演变。一个网站,初始薄的海冰(1.40米)在剥落的位置相对较低,目睹了壮观1.20-m-深熔池的形成,一种池塘表面的池塘侵蚀,以及突然的池塘排水进入海洋。然后,出口淡水迅速冻结,从下面加热旧冰,也用作来自海洋热通量的临时盾牌,同时通过溶解逐渐消融。最终,该网站几乎恢复了其初始冰厚度。相反,其他网站,在其剥落的相对较高的位置较初始较厚的海冰(1.75米),不支持任何显着的熔融水,并且在连续的基础消融中进行超过0.5米。这两个网站经历了叠加和插入冰的形成。海冰幸存下来的夏季融化在两个地点,进入了相似的雪和冰厚度的泄漏季节。首次,与冰批量平衡仪器连续记录了与深熔池的形成和随后的假底部进化相关的过程。

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