Spatial distribution of precipitation annual cycles over South Africa in 10 CORDEX regional climate model present-day simulations

被引:0
|
作者
Alice Favre
Nathalie Philippon
Benjamin Pohl
Evangelia-Anna Kalognomou
Christopher Lennard
Bruce Hewitson
Grigori Nikulin
Alessandro Dosio
Hans-Juergen Panitz
Ruth Cerezo-Mota
机构
[1] Université de Bourgogne,Centre de Recherches de Climatologie (CRC), CNRS UMR 6282 Biogéosciences
[2] University of Cape Town,CSAG, ENGEO Department
[3] Aristotle University,Laboratory of Heat Transfer and Environmental Engineering (LHTEE)
[4] Swedish Meteorological and Hydrological Institute (SMHI),Rossby Centre
[5] Institute for Environment and Sustainability,European Commission Joint Research Centre
[6] Karlsruhe Institute of Technology,Institute for Meteorology and Climate Research – Troposphere Research
[7] UNAM,Laboratorio de Ingenería y Procesos Costeros
来源
Climate Dynamics | 2016年 / 46卷
关键词
CORDEX-Africa; Regional climate model; Evaluation; Annual cycle of precipitation;
D O I
暂无
中图分类号
学科分类号
摘要
This study presents an evaluation of the ability of 10 regional climate models (RCMs) participating in the COordinated Regional climate Downscaling Experiment-Africa to reproduce the present-day spatial distribution of annual cycles of precipitation over the South African region and its borders. As found in previous studies, annual mean precipitation is quasi-systematically overestimated by the RCMs over a large part of southern Africa south of about 20°S and more strongly over South Africa. The spatial analysis of precipitation over the studied region shows that in most models the distribution of biases appears to be linked to orography. Wet biases are quasi-systematic in regions with higher elevation with inversely neutral to dry biases particularly in the coastal fringes. This spatial pattern of biases is particularly obvious during summer and specifically at the beginning of the rainy season (November and December) when the wet biases are found to be the strongest across all models. Applying a k-means algorithm, a classification of annual cycles is performed using observed precipitation data, and is compared with those derived from modeled data. It is found that the in-homogeneity of the spatial and temporal distribution of biases tends to impact the modeled seasonality of precipitation. Generally, the pattern of rainfall seasonality in the ensemble mean of the 10 RCMs tends to be shifted to the southwest. This spatial shift is mainly linked to a strong overestimation of convective precipitation at the beginning of the rainy season over the plateau inducing an early annual peak and to an underestimation of stratiform rainfall in winter and spring over southwestern South Africa.
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页码:1799 / 1818
页数:19
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