van de Berg W J, Medley B
IMAU, Utrecht University, Utrecht, The Netherlands.
NASA-GSFC, Greenbelt, Maryland, USA.
Cryosphere. 2016 Jan 5;10(1):459-463. doi: 10.5194/tc-10-459-2016. Epub 2016 Mar 1.
The regional climate model (RCM) RACMO2 has been a powerful tool for improving surface mass balance (SMB) estimates from GCMs or reanalyses. However, new yearly SMB observations for West Antarctica show that the modelled interannual variability in SMB is poorly simulated by RACMO2, in contrast to ERA-Interim, which resolves this variability well. In an attempt to remedy RACMO2 performance, we included additional upper air relaxation (UAR) in RACMO2. With UAR, the correlation to observations is similar for RACMO2 and ERA-Interim. The spatial SMB patterns and ice sheet integrated SMB modelled using UAR remain very similar to the estimates of RACMO2 without UAR. We only observe an upstream smoothing of precipitation in regions with very steep topography like the Antarctic Peninsula. We conclude that UAR is a useful improvement for RCM simulations, although results in regions with steep topography should be treated with care.
区域气候模型(RCM)RACMO2一直是用于改进全球气候模型(GCM)或再分析数据得出的地表物质平衡(SMB)估算值的有力工具。然而,南极西部新的年度SMB观测结果表明,与能很好解析这种变率的ERA-Interim相比,RACMO2对SMB中年际变率的模拟效果不佳。为了改善RACMO2的性能,我们在RACMO2中加入了额外的高空松弛(UAR)。有了UAR后,RACMO2与观测值的相关性与ERA-Interim相近。使用UAR模拟的空间SMB模式和冰盖综合SMB与未使用UAR的RACMO2估算值非常相似。我们仅在南极半岛等地形非常陡峭的地区观测到降水的上游平滑现象。我们得出结论,UAR对区域气候模型模拟是一项有用的改进,不过在地形陡峭的地区,结果应谨慎对待。