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Interruption of two decades of Jakobshavn Isbrae acceleration and thinning as regional ocean cools

机译:随着区域海洋凉爽的中断二十年的Jakobshavn Isbrae加速和变薄

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Jakobshavn Isbrae has been the single largest source of mass loss from the Greenland Ice Sheet over the last 20 years. During that time, it has been retreating, accelerating and thinning. Here we use airborne altimetry and satellite imagery to show that since 2016 Jakobshavn has been re-advancing, slowing and thickening. We link these changes to concurrent cooling of ocean waters in Disko Bay that spill over into Ilulissat Icefjord. Ocean temperatures in the bay's upper 250 m have cooled to levels not seen since the mid 1980 s. Observations and modelling trace the origins of this cooling to anomalous wintertime heat loss in the boundary current that circulates around the southern half of Greenland. Longer time series of ocean temperature, subglacial discharge and glacier variability strongly suggest that ocean-induced melting at the front has continued to influence glacier dynamics after the disintegration of its floating tongue in 2003. We conclude that projections of Jakobshavn's future contribution to sea-level rise that are based on glacier geometry are insufficient, and that accounting for external forcing is indispensable.
机译:jakobshavn isbrae是过去20年来格陵兰冰板的最大大量损失来源。在此期间,它一直在撤退,加速和变薄。在这里,我们使用Airborne Altimetry和卫星图像来表明,自2016年以来,Jakobshavn一直在推进,减缓和增厚。我们将这些变化链接到Disko Bay中的海水并发冷却,泄漏到Ilulissat Icefjord。海湾较高的海洋温度250米已经冷却到自1980年中期以来未见的水平。观察和建模跟踪这种冷却到异常冬季热损失在格陵兰南部的边界电流中的异常冬季热损失。海洋温度较长的时间系列,沉淀放电和冰川变异性强烈建议,海洋诱导的熔点在2003年浮动舌头崩解后继续影响冰川动态。我们得出结论,Jakobshavn未来对海平面的贡献的预测基于冰川几何形状的上升不足,外部强制核算是不可或缺的。

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