AUTHOR=Laux Patrick , Dieng Diarra , Portele Tanja C. , Wei Jianhui , Shang Shasha , Zhang Zhenyu , Arnault Joel , Lorenz Christof , Kunstmann Harald TITLE=A High-Resolution Regional Climate Model Physics Ensemble for Northern Sub-Saharan Africa JOURNAL=Frontiers in Earth Science VOLUME=9 YEAR=2021 URL=https://www.frontiersin.org/journals/earth-science/articles/10.3389/feart.2021.700249 DOI=10.3389/feart.2021.700249 ISSN=2296-6463 ABSTRACT=
While climate information from General Circulation Models (GCMs) are usually too coarse for climate impact modelers or decision makers from various disciplines (e.g., hydrology, agriculture), Regional Climate Models (RCMs) provide feasible solutions for downscaling GCM output to finer spatiotemporal scales. However, it is well known that the model performance depends largely on the choice of the physical parameterization schemes, but optimal configurations may vary e.g., from region to region. Besides land-surface processes, the most crucial processes to be parameterized in RCMs include radiation (RA), cumulus convection (CU), cloud microphysics (MP), and planetary boundary layer (PBL), partly with complex interactions. Before conducting long-term climate simulations, it is therefore indispensable to identify a suitable combination of physics parameterization schemes for these processes. Using the