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Regional grid refinement in an Earth system model: impacts on the simulated Greenland surface mass balance

机译:地球系统模型中的区域网格细化:对模拟格陵兰岛表面质量平衡的影响

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In this study, the resolution dependence of the simulated Greenland ice sheet surface mass balance (GrIS SMB) in the variable-resolution Community Earth System Model (VR-CESM) is investigated. Coupled atmosphere–land simulations are performed on two regionally refined grids over Greenland at 0.5 sup°/sup ( ~55 km) and 0.25 sup°/sup ( ~28 km), maintaining a quasi-uniform resolution of 1 sup°/sup ( ~111 km) over the rest of the globe. On the refined grids, the SMB in the accumulation zone is significantly improved compared to airborne radar and in situ observations, with a general wetting (more snowfall) at the margins and a drying (less snowfall) in the interior GrIS. Total GrIS precipitation decreases with resolution, which is in line with best-available regional climate model results. In the ablation zone, CESM starts developing a positive SMB bias with increased resolution in some basins, notably in the east and the north. The mismatch in ablation is linked to changes in cloud cover in VR-CESM, and a reduced effectiveness of the elevation classes subgrid parametrization in CESM. Overall, our pilot study introduces VR-CESM as a new tool in the cryospheric sciences, which could?be used to dynamically downscale SMB in scenario simulations and to force dynamical ice sheet models through the CESM coupling framework.
机译:在这项研究中,研究了在可变分辨率社区地球系统模型(VR-CESM)中模拟格陵兰冰盖表面质量平衡(GrIS SMB)的分辨率依赖性。在格陵兰岛上两个区域精细的网格上进行气-陆耦合模拟,分别为0.5 °(〜55 km)和0.25 °(〜28 km),并保持准均匀在全球其他地区的分辨率为1 °(〜111 km)。在精炼的网格上,与机载雷达和原位观测相比,积累区中的SMB得到了显着改善,边缘处普遍湿润(降雪更多),内部GrIS干燥(降雪更少)。 GrIS的总降水量随着分辨率的降低而下降,这与最佳可用的区域气候模型结果相符。在消融区,CESM开始在某些盆地,特别是东部和北部,发展出正的SMB偏向,且分辨率提高。消融的不匹配与VR-CESM中云层的变化以及CESM中高程类别亚电网参数化的有效性降低有关。总体而言,我们的先导研究将VR-CESM引入冰冻圈科学领域,作为一种新工具,可用于在情景模拟中动态缩小SMB规模,并通过CESM耦合框架推动动态冰盖模型。

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