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Intensified Arctic warming under greenhouse warming by vegetation–atmosphere–sea ice interaction

机译:植被-大气-海冰相互作用在温室效应下加剧北极变暖

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Observations and modeling studies indicate that enhanced vegetation activities over high latitudes under an elevated CO2 concentration accelerate surface warming by reducing the surface albedo. In this study, we suggest that vegetation-atmosphere-sea ice interactions over high latitudes can induce an additional amplification of Arctic warming. Our hypothesis is tested by a series of coupled vegetation-climate model simulations under 2xCO2 environments. The increased vegetation activities over high latitudes under a 2xCO2 condition induce additional surface warming and turbulent heat fluxes to the atmosphere, which are transported to the Arctic through the atmosphere. This causes additional sea-ice melting and upper-ocean warming during the warm season. As a consequence, the Arctic and high-latitude warming is greatly amplified in the following winter and spring, which further promotes vegetation activities the following year. We conclude that the vegetation-atmosphere-sea ice interaction gives rise to additional positive feedback of the Arctic amplification.
机译:观测和模型研究表明,在较高的CO2浓度下,高纬度地区增强的植被活动可通过减少表面反照率来加速表面变暖。在这项研究中,我们建议高纬度地区的植被-大气-海冰相互作用可以引起北极变暖的进一步放大。我们的假设通过在2xCO2环境下进行的一系列耦合的植被-气候模型模拟进行了检验。在2xCO2条件下,高纬度地区植被活动的增加引起了额外的表面变暖和湍流通向大气的热通量,这些通量通过大气传输到北极。在温暖的季节,这会导致海冰融化和上层海洋变暖。结果,在随后的冬季和春季,北极和高纬度的变暖大大加剧,第二年进一步促进了植被活动。我们得出结论,植被-大气-海冰的相互作用引起了北极放大作用的额外正反馈。

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