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首页> 外文期刊>Atmosphere >Downscaling Atmosphere-Ocean Global Climate Model Precipitation Simulations over Africa Using Bias-Corrected Lateral and Lower Boundary Conditions
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Downscaling Atmosphere-Ocean Global Climate Model Precipitation Simulations over Africa Using Bias-Corrected Lateral and Lower Boundary Conditions

机译:使用偏向校正的侧向和较低边界条件缩小非洲的大气-海洋全球气候模型降水模拟

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A prequel study showed that dynamic downscaling using a regional climate model (RCM) over Africa improved the Goddard Institute for Space Studies Atmosphere-Ocean Global Climate Model (GISS AOGCM: ModelE) simulation of June–September rainfall patterns over Africa. The current study applies bias corrections to the lateral and lower boundary data from the AOGCM driving the RCM, based on the comparison of a 30-year simulation to the actual climate. The analysis examines the horizontal pattern of June–September total accumulated precipitation, the time versus latitude evolution of zonal mean West Africa (WA) precipitation (showing monsoon onset timing), and the latitude versus altitude cross-section of zonal winds over WA (showing the African Easterly Jet and the Tropical Easterly Jet). The study shows that correcting for excessively warm AOGCM Atlantic sea-surface temperatures (SSTs) improves the simulation of key features, whereas applying 30-year mean bias corrections to atmospheric variables driving the RCM at the lateral boundaries does not improve the RCM simulations. We suggest that AOGCM climate projections for Africa should benefit from downscaling by nesting an RCM that has demonstrated skill in simulating African climate, driven with bias-corrected SST.
机译:前期研究表明,使用非洲上的区域气候模型(RCM)进行的动态降尺度改善了戈达德空间研究所大气-海洋全球气候模型(GISS AOGCM:ModelE)对非洲6月至9月降雨模式的模拟。当前的研究基于对30年模拟与实际气候的比较,对驱动RCM的AOGCM的横向和下边界数据进行了偏差校正。该分析检查了6月至9月总降水量的水平模式,西非纬向平均降水的时间与纬度演变(显示季风开始时间)以及西澳纬向风的纬度与海拔截面(显示非洲东风喷气机和热带东风喷气机)。研究表明,对过度温暖的AOGCM大西洋海表温度(SST)进行校正可以改善关键特征的模拟,而对在横向边界处驱动RCM的大气变量应用30年平均偏差校正并不能改善RCM模拟。我们建议,通过套用已证明具有模拟非洲气候能力的RCM(受偏向校正的SST驱动),可以通过缩小规模来使AOGCM对非洲的气候预测受益。

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