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首页> 外文期刊>Ambio: A Journal of the Human Environment >Spatiotemporal variability in surface energy balance across tundra, snow and ice in Greenland
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Spatiotemporal variability in surface energy balance across tundra, snow and ice in Greenland

机译:在格陵兰舞曲,雪地和冰上表面能量平衡的时空变异

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摘要

The surface energy balance (SEB) is essential for understanding the coupled cryosphere-atmosphere system in the Arctic. In this study, we investigate the spatiotemporal variability in SEB across tundra, snow and ice. During the snow-free period, the main energy sink for ice sites is surface melt. For tundra, energy is used for sensible and latent heat flux and soil heat flux leading to permafrost thaw. Longer snow-free period increases melting of the Greenland Ice Sheet and glaciers and may promote tundra permafrost thaw. During winter, clouds have a warming effect across surface types whereas during summer clouds have a cooling effect over tundra and a warming effect over ice, reflecting the spatial variation in albedo. The complex interactions between factors affecting SEB across surface types remain a challenge for understanding current and future conditions. Extended monitoring activities coupled with modelling efforts are essential for assessing the impact of warming in the Arctic.
机译:表面能量平衡(SEB)对于了解北极地区的耦合冰晶氛围至关重要。在这项研究中,我们调查苔原,雪和冰的SEB中的时空变异性。在无雪期间,冰场的主要能量水槽是表面熔体。对于苔原,能量用于明智和潜热通量和土壤热量通量,导致永久冻土。较长的无雪期增加了格陵兰冰板和冰川的融化,并可促进Tundra Pumafrost解冻。在冬季,云在表面类型上具有温暖的效果,而在夏季云层上具有对苔原的冷却效果和在冰上的温暖效果,反映了反照镜的空间变化。影响SEB跨越表面类型的因素之间的复杂相互作用仍然是理解当前和未来条件的挑战。扩展监控活动与建模努力相结合,对于评估北极升温的影响至关重要。

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