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Improved representation of East Antarctic surface mass balance in a regional atmospheric climate model

机译:在区域大气气候模型中改进了南极东部表面质量平衡的表示

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This study evaluates the impact of a recent upgrade in the physics package of the regional atmospheric climate model RACMO2 on the simulated surface mass balance (SMB) of the Antarctic ice sheet. The modelled SMB increases, in particular over the grounded ice sheet of East Antarctica (+44 Gt a~(–1)), with a small change in West Antarctica. This mainly results from an increase in precipitation, which is explained by changes in the cloud microphysics, including a new parameterization for ice cloud supersaturation, and changes in large-scale circulation patterns, which alter topographically forced precipitation. The spatial changes in SMB are evaluated using 3234 in situ SMB observations and ice-balance velocities, and the temporal variability using GRACE satellite retrievals. The in situ observations and balance velocities show a clear improvement of the spatial representation of the SMB in the interior of East Antarctica, which has become considerably wetter. No improvements are seen for West Antarctica and the coastal regions. A comparison of model SMB temporal variability with GRACE satellite retrievals shows no significant change in performance.
机译:这项研究评估了区域大气气候模型RACMO2的物理软件包最近升级对南极冰盖的模拟表面质量平衡(SMB)的影响。模拟的SMB会增加,特别是在南极东部的地面冰原(+44 Gt a〜(–1))上,而南极西部的变化很小。这主要是由于降水增加而引起的,这可以用云微观物理学的变化来解释,包括对冰云过饱和度的新参数化以及大规模环流模式的变化,这些变化会改变地形强迫降水。使用3234原位SMB观测和冰平衡速度评估SMB的空间变化,并使用GRACE卫星反演来评估时间变化。实地观测和平衡速度表明,南极东部内部的中小型企业的空间代表性有了明显改善,该地区已经变得非常湿润。南极西部和沿海地区没有任何改善。将模型SMB时间变异性与GRACE卫星反演结果进行比较后,发现性能没有明显变化。

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