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Changes in ice dynamics and mass balance of the Antarctic ice sheet

机译:南极冰盖冰动力学和质量平衡的变化

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The concept that the Antarctic ice sheet changes with eternal slowness has been challenged by recent observations from satellites. Pronounced regional warming in the Antarctic Peninsula triggered ice shelf collapse, which led to a 10-fold increase in glacier flow and rapid ice sheet retreat. This chain of events illustrated the vulnerability of ice shelves to climate warming and their buffering role on the mass balance of Antarctica. In West Antarctica, the Pine Island Bay sector is draining far more ice into the ocean than is stored upstream from snow accumulation. This sector could raise sea level by I m and trigger widespread retreat of ice in West Antarctica. Pine Island Glacier accelerated 38% since 1975, and most of the speed up took place over the last decade. Its neighbour Thwaites Glacier is widening up and may double its width when its weakened eastern ice shelf breaks up. Widespread acceleration in this sector may be caused by glacier ungrounding from ice shelf melting by an ocean that has recently warmed by 0.3 degrees C. In contrast, glaciers buffered from oceanic change by large ice shelves have only small contributions to sea level. In East Antarctica, many glaciers are close to a state of mass balance, but sectors grounded well below sea level, such as Cook Ice Shelf, Ninnis/Mertz, Frost and Totten glaciers, are thinning and losing mass. Hence, East Antarctica is not immune to changes.
机译:最近来自卫星的观测结果对南极冰盖随时间的缓慢变化而变化的概念提出了挑战。南极半岛明显的区域变暖引发了冰架坍塌,这导致冰川流量增加了10倍,冰盖迅速退缩。这一系列事件说明了冰架对气候变暖的脆弱性及其对南极物质平衡的缓冲作用。在南极西部,与积雪上游存储的冰相比,松岛湾部门向海洋排放的冰量要多得多。该区域可能会使海平面升高I m,并引发南极西部冰的大范围撤退。自1975年以来,松岛冰川(Pine Island Glacier)的速度就提高了38%,并且大部分的提速发生在过去十年中。它的邻居Thwaites冰川正在扩大,并且当其减弱的东部冰架破裂时可能会使其宽度加倍。该领域的广泛加速可能是由于最近升温了0.3摄氏度的海洋融化的冰架使冰川脱离地面而引起的。相反,大型的冰架在海洋变化的作用下缓冲的冰川对海平面的贡献很小。在南极东部地区,许多冰川接近于质量平衡状态,但落在海平面以下的部分,例如库克冰架,Ninnis / Mertz,Frost和Totten冰川正在变薄并失去质量。因此,南极东部地区无法幸免变化。

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