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PNAS Plus: Stochastic ice stream dynamics

机译:PNAS Plus:随机冰流动力学

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摘要

Ice streams are narrow corridors of fast-flowing ice that constitute the arterial drainage network of ice sheets. Therefore, changes in ice stream flow are key to understanding paleoclimate, sea level changes, and rapid disintegration of ice sheets during deglaciation. The dynamics of ice flow are tightly coupled to the climate system through atmospheric temperature and snow recharge, which are known exhibit stochastic variability. Here we focus on the interplay between stochastic climate forcing and ice stream temporal dynamics. Our work demonstrates that realistic climate fluctuations are able to (i) induce the coexistence of dynamic behaviors that would be incompatible in a purely deterministic system and (ii) drive ice stream flow away from the regime expected in a steady climate. We conclude that environmental noise appears to be crucial to interpreting the past behavior of ice sheets, as well as to predicting their future evolution.
机译:冰流是快速流动的冰的狭窄走廊,构成了冰盖的动脉排水网络。因此,冰流的变化是了解古气候,海平面变化以及在冰消冰过程中冰盖快速崩解的关键。冰流的动力学通过大气温度和降雪补给与气候系统紧密耦合,众所周知,这表现出随机可变性。在这里,我们关注随机气候强迫与冰流时间动态之间的相互作用。我们的工作表明,现实的气候波动能够(i)导致在纯确定性系统中不兼容的动态行为的共存,并且(ii)在稳定的气候条件下驱使冰流离开预期的状态。我们得出结论,环境噪声对于解释冰盖的过去行为以及预测冰盖的未来演变至关重要。

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