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Challenges to understand the dynamic response of Greenland's marine terminating glaciers to oceanic and atmospheric forcing

机译:理解格陵兰海洋终止冰川对海洋和大气强迫的动态响应的挑战

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摘要

The recent retreat and speedup of outlet glaciers, as well as enhanced surface melting around the ice sheet margin, have increased Greenland's contribution to sea level rise to 0.6±0.1 mm/yr and its discharge of freshwater into the North Atlantic. The widespread, near-synchronous glacier retreat, and its coincidence with a period of oceanic and atmospheric warming, suggest a common climate driver. Evidence points to the marine margins of these glaciers as the region from which changes propagated inland. Yet the forcings and mechanisms behind these dynamic responses are poorly understood and either missing or crudely parameterized in climate and ice sheet models. Resulting projected sea level rise contributions from Greenland by 2100 remain highly uncertain.ududThis paper summarizes current state of knowledge and highlights key physical aspects of Greenland's coupled ice-sheet/ocean/atmosphere system. Three research thrusts are identified to yield fundamental insights into ice sheet, ocean, sea ice and atmosphere interactions, their role in Earth's climate system, and probable trajectories of future changes: (1) focused process studies addressing critical glacier, ocean, atmosphere and coupled dynamics; (2) sustained observations at key sites; and (3) inclusion of relevant dynamics in Earth System Models.ududUnderstanding the dynamic response of Greenland's glaciers to climate forcing constitutes both a scientific and technological frontier given the challenges of obtaining the appropriate measurements from the glaciers' marine termini and the complexity of the dynamics involved, including the coupling of the ocean, atmosphere, glacier and sea ice systems. Interdisciplinary and international cooperation are crucial to making progress on this novel and complex problem.
机译:最近出口冰川的退缩和加速,以及冰盖边缘周围表面融化的增强,使格陵兰岛对海平面上升至0.6±0.1毫米/年的贡献以及其向北大西洋的淡水排放都增加了。广泛的,近乎同步的冰川退缩及其与海洋和大气变暖时期的巧合,暗示了一个共同的气候驱动因素。有证据表明,这些冰川的海洋边缘是变化的区域向内陆传播。然而,对这些动态响应背后的强迫和机制知之甚少,在气候和冰盖模型中要么缺失,要么参数化。格陵兰岛到2100年的预计海平面上升贡献的最终结果仍然不确定。 ud ud本文总结了目前的知识水平,并着重指出了格陵兰岛冰盖/海洋/大气系统耦合的关键物理方面。确定了三个研究重点,以得出关于冰盖,海洋,海冰和大气相互作用,它们在地球气候系统中的作用以及未来变化的可能轨迹的基本见解:(1)针对关键冰川,海洋,大气及其耦合的重点过程研究动力学; (2)对重点部位的持续观测; (3)在地球系统模型中包含相关动力学。 ud ud了解格陵兰冰川对气候强迫的动态响应既构成了科学技术前沿,又面临着从冰川海洋终点获得适当测量值的挑战以及复杂性涉及的动力学,包括海洋,大气,冰川和海冰系统的耦合。跨学科和国际合作对于在这个新颖而复杂的问题上取得进展至关重要。

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