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Deglacial rapid sea level rises caused by ice-sheet saddle collapses

机译:冰盖鞍塌陷导致冰川急速海平面上升

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摘要

The last deglaciation (21 to 7 thousand years ago) was punctuated by several abrupt meltwater pulses, which sometimes caused noticeable climate change. Around 14 thousand years ago, meltwater pulse 1A (MWP-1A), the largest of these events, produced a sea level rise of 14-18 metres over 350 years. Although this enormous surge of water certainly originated from retreating ice sheets, there is no consensus on the geographical source or underlying physical mechanisms governing the rapid sea level rise. Here we present an ice-sheet modelling simulation in which the separation of the Laurentide and Cordilleran ice sheets in North America produces a meltwater pulse corresponding to MWP-1A. Another meltwater pulse is produced when the Labrador and Baffin ice domes around Hudson Bay separate, which could be associated with the /`8,200-year/' event, the most pronounced abrupt climate event of the past nine thousand years. For both modelled pulses, the saddle between the two ice domes becomes subject to surface melting because of a general surface lowering caused by climate warming. The melting then rapidly accelerates as the saddle between the two domes gets lower, producing nine metres of sea level rise over 500 years. This mechanism of an ice /`saddle collapse/' probably explains MWP-1A and the 8,200-year event and sheds light on the consequences of these events on climate.
机译:最后一次冰消作用(21至7,000年前)被几次突然的融化水脉冲所打断,有时会引起明显的气候变化。大约一万四千年前,其中最大的一次融水脉冲1A(MWP-1A)在350多年的时间里使海平面上升了14-18米。尽管水的激增固然是由退缩的冰盖引起的,但对于控制海平面迅速上升的地理来源或潜在的物理机制尚无共识。在这里,我们介绍了一个冰盖模型模拟,其中在北美,Laurentide和Cordilleran冰盖的分离产生了与MWP-1A相对应的融水脉冲。当哈德逊湾附近的拉布拉多和巴芬冰穹分开时,又产生了另一个融水脉冲,这可能与“ 8,200年”事件有关,这是过去九千年来最明显的气候事件。对于两个模拟脉冲,由于气候变暖引起的总体表面下降,两个冰穹之间的鞍座表面容易融化。然后,随着两个穹顶之间的鞍座降低,融化迅速加速,在500年的时间内海平面上升了9米。这种冰/“鞍崩溃”的机制可能解释了MWP-1A和8200年的事件,并阐明了这些事件对气候的影响。

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