Concurrence of blowing snow and polynya enhances arctic surface–atmosphere interaction: a modeling study with an extreme wind event in 2018

Jing Zhang, Xiangdong Zhang, J. Walsh, E. Roesler, B. Hillman
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Abstract

Snow, a critical element influencing surface energy/mass balance of the Arctic, can also drift in the air to complicate the surface–atmosphere interaction. This complexity can be further enhanced when the surface includes polynya. These processes, however, have not been well studied and are often unrepresented in climate and weather models. We address this by applying a snow/ice-enhanced version of the Weather Research and Forecasting model to examine the impacts of blowing snow and polynya on the surface–atmosphere interaction during an extreme Arctic wind event in February 2018, when an unprecedented polynya occurred off the north coast of Greenland. The results indicate that blowing snow and the polynya contribute opposite signs to the changes of surface sensible/latent heat fluxes, but both cause enhanced downwelling longwave radiation. Process analysis shows that the thermodynamic moistening/cooling effects due to the blowing snow sublimation are amplified by increased surface winds, reduced temperature inversion, and upward wind anomaly associated with the polynya. Enhanced surface–atmosphere interaction over a polynya due to blowing snow sublimation can potentially sustain the continuing development of the polynya.
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吹雪和冰湖的同时增强了北极地表-大气相互作用:2018年极端风事件的建模研究
雪是影响北极地表能量/物质平衡的关键因素,也可以在空气中漂移,使地表-大气相互作用复杂化。当表面包含多冰岩时,这种复杂性可以进一步增强。然而,这些过程还没有得到很好的研究,在气候和天气模式中往往没有得到体现。我们通过应用天气研究和预报模型的雪/冰增强版本来研究2018年2月极端北极风事件期间吹雪和冰穴对地表-大气相互作用的影响,当时格陵兰岛北海岸发生了前所未有的冰穴。结果表明,吹雪和冰湖对地表感/潜热通量的影响相反,但都增强了下坡长波辐射。过程分析表明,地面风的增加、逆温的减弱以及与多冰区相关的上升风异常都放大了吹雪升华的热力增湿/降温效应。由于吹雪升华而增强的冰洼上的地表-大气相互作用可以潜在地维持冰洼的持续发展。
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