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首页> 外文期刊>Science Advances >Wind causes Totten Ice Shelf melt and acceleration
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Wind causes Totten Ice Shelf melt and acceleration

机译:风导致托特冰架融化并加速

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Totten Glacier in East Antarctica has the potential to raise global sea level by at least 3.5 m, but its sensitivity to climate change has not been well understood. The glacier is coupled to the ocean by the Totten Ice Shelf, which has exhibited variable speed, thickness, and grounding line position in recent years. To understand the drivers of this interannual variability, we compare ice velocity to oceanic wind stress and find a consistent pattern of ice-shelf acceleration 19 months after upwelling anomalies occur at the continental shelf break nearby. The sensitivity to climate forcing we observe is a response to wind-driven redistribution of oceanic heat and is independent of large-scale warming of the atmosphere or ocean. Our results establish a link between the stability of Totten Glacier and upwelling near the East Antarctic coast, where surface winds are projected to intensify over the next century as a result of increasing atmospheric greenhouse gas concentrations.
机译:南极东部的托特冰川有可能将全球海平面至少提高3.5 m,但其对气候变化的敏感性尚未得到很好的了解。托特冰架将冰川与海洋耦合,近年来,托特冰架表现出可变的速度,厚度和接地线位置。为了了解这种年际变化的驱动因素,我们将冰速度与海洋风应力进行了比较,并在附近的大陆架断裂发生上升流异常后19个月,发现了一致的冰架加速模式。我们观察到的对气候强迫的敏感性是对海洋热量的风驱动再分布的响应,并且与大气或海洋的大规模变暖无关。我们的结果在托特冰川的稳定性和南极东部海岸附近的上升流之间建立了联系,由于大气温室气体浓度的增加,预计下一个世纪的地面风将加剧。

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