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Sensitivity of Greenland Ice Sheet surface mass balance to perturbations in sea surface temperature and sea ice cover: a study with the regional climate model MAR

机译:格陵兰冰盖表面质量平衡对海面温度和海冰覆盖扰动的敏感性:区域气候模型MAR的研究

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摘要

During recent summers (2007–2012), several surface melt records were broken over the Greenland Ice Sheet (GrIS). The extreme summer melt resulted in part from a persistent negative phase of the North Atlantic Oscillation (NAO), favoring warmer atmospheric conditions than normal over the GrIS. Simultaneously, large anomalies in sea ice cover (SIC) and sea surface temperature (SST) were observed in the North Atlantic, suggesting a possible connection. To assess the direct impact of 2007–2012 SIC and SST anomalies on GrIS surface mass balance (SMB), a set of sensitivity experiments was carried out with the regional climate model MAR forced by ERA-Interim. These simulations suggest that perturbations in SST and SIC in the seas surrounding Greenland do not considerably impact GrIS SMB, as a result of the katabatic wind blocking effect. These offshore-directed winds prevent oceanic near-surface air, influenced by SIC and SST anomalies, from penetrating far inland. Therefore, the ice sheet SMB response is restricted to coastal regions, where katabatic winds cease. A topic for further investigation is how anomalies in SIC and SST might have indirectly affected the surface melt by changing the general circulation in the North Atlantic region, hence favoring more frequent warm air advection towards the GrIS.
机译:在最近的夏季(2007-2012年),格陵兰冰原(GrIS)上的一些表面融化记录被打破。夏季的极端融化部分是由于北大西洋涛动(NAO)持续出现负相,与GrIS相比有利于较正常的大气条件。同时,在北大西洋观察到海冰盖(SIC)和海面温度(SST)的大异常,表明可能存在这种联系。为了评估2007-2012年SIC和SST异常对GrIS表面质量平衡(SMB)的直接影响,对ERA-Interim强迫的区域气候模型MAR进行了一系列敏感性实验。这些模拟表明,由于格塔风的阻风作用,格陵兰岛周边海域的SST和SIC扰动不会对GrIS SMB产生重大影响。这些海上定向风可防止受SIC和SST异常影响的近海近海空气渗透到内陆。因此,冰盖SMB的响应仅限于沿海地区,那里的合成风开始停止。进一步调查的主题是SIC和SST的异常如何通过改变北大西洋地区的总环流而间接影响表面融化,从而有利于向GrIS进行更频繁的对流。

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