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The Springtime Influence of Natural Tropical Pacific Variability on the Surface Climate of the Ross Ice Shelf West Antarctica: Implications for Ice Shelf Thinning

机译:春季热带太平洋自然变化对南极罗斯冰架表面气候的影响:冰架变薄的意义

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摘要

Observational records starting in the 1950s show West Antarctica is amongst the most rapidly warming regions on the planet. Together with increased intrusions of warm circumpolar deep water (CDW) onto the continental shelf due to local wind forcing (the primary mechanism in recent decades), this has resulted in enhanced surface and basal melting of floating ice shelves and an associated acceleration and thinning of West Antarctic outlet glaciers, increasing the rate of global sea level rise. In this study, it is shown that during the austral spring season, significant surface warming across West Antarctica has shifted westward to the Ross Ice Shelf in recent decades in response to enhanced cyclonic circulation over the Ross Sea. These circulation changes are caused by a Rossby wave train forced by increasing sea surface temperatures in the western tropical Pacific, which is tied to the springtime shift of the Interdecadal Pacific Oscillation (IPO) to its negative phase after 1992. While the local wind trends enhance warm air advection and surface warming across the Ross Ice Shelf, the strong easterly component of the wind trends reduces the likelihood for intrusions of CDW onto the continental shelf in this region. This suggests that during spring there are competing mechanisms of surface and basal melting of the Ross Ice Shelf, both of which are closely tied to natural tropical Pacific decadal variability. Moreover, that the projected transition of the IPO back to its positive phase in the coming decade, though likely to reduce surface warming on the Ross Ice Shelf, could increase the risk of disintegration of Ross Sea ice shelves due to increased intrusions of CDW and enhanced basal melting.
机译:从1950年代开始的观测记录表明,南极洲西部是地球上增速最快的地区之一。由于局部强风(近几十年来的主要机制),加上温暖的极地深水(CDW)侵入大陆架,这导致浮冰架的表面和基础融化增强,并伴随着加速和变薄。南极西部的出口冰川,加剧了全球海平面上升的速度。在这项研究中,研究表明,在最近的几十年中,由于春季罗斯南海气旋环流的增强,整个南极西部的地表变暖已向西转移到罗斯冰架。这些环流变化是由热带热带太平洋西部海平面温度升高推动的Rossby波列引起的,这与1992年后年代际太平洋涛动(IPO)春季转变为负相有关。横跨罗斯冰架的热空气对流和地表变暖,风向的强东风分量减少了CDW侵入该地区大陆架的可能性。这表明在春季,罗斯冰架存在表面和基础融化的相互竞争机制,两者均与热带太平洋自然年代际变化密切相关。此外,预计IPO在未来十年内将恢复到积极阶段,尽管可能会减少罗斯冰架上的表面变暖,但由于CDW的侵入增加和增加,可能会增加罗斯海冰架解体的风险。基础融化。

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