Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

The effect of topography on east African rainfall based on regional climate model

Domaine:

climate

Type de record:

paper
Créateur:
BobHaiL.
Éditeur:
Ind
Hôte:
The effect of topography on June to August (JJA) rainfall over east Africa is investigated using the International Centre for Theoretical Physics (ICTP) Regional Climate Model (RegCM4.0). Grell convection scheme with Fritsch-Chappell closure assumption is used. The control simulation is done with actual topography and sensitivity experiments are carried out with topography reduced to 75%, 25% and to zero. The model output was evaluated against Climate Research Unit (CRU) dataset, gridded at 0.5 degree resolution and ERA-interim datasets, gridded at 0.75 degree resolution. Results show that the mean JJA rainfall significantly reduces over the region when topography elevation is reduced. Based on the model, when the topography over the selected region (KTU) is reduced to 25%, the mean JJA rainfall over east Africa is reduced by roughly half. The maximum rainfall reduction is however observed around the region over which topography is reduced. The reduction in topography resulted into an anomalous moisture divergence over the region at low level (850 hPa). Divergence at low level results in vertical shrinking which suppresses convection due to subsidence. The strength of moisture transport and the zonal wind speed at 850hpa increased with decrease in topography, which may be responsible for the observed shift in moisture convergence zone from western Kenya to northern Uganda. The findings from this study would provide insight into the effect of topography on the east African climate and call for more detailed investigative research, particularly in the region. The results may motivate researchers and modeling centers to further improve on the performance of the model over the region.

Visit

doi.org

Licenses

https://creativecommons.org/licenses/by-nc/4.0

Similaires

Variability of East African rainfall based on multiyear Regcm3 simulationsThe impact of deep convection on the West African summer monsoon climate: a regional climate model sensitivity studyThe Effect of Explicit Convection on Climate Change in the West African Monsoon and Central West African Sahel RainfallThe Impact of the African Great Lakes on the Regional ClimateProjections of indices of daily temperature and precipitation based on bias-adjusted CORDEX-Africa regional climate model simulationsA mid-troposphere perspective on the East African climate paradox

Variability of East African rainfall based on multiyear Regcm3 simulations

Abstract The International Center for Theoretical Physics (ICTP) regional climate model version 3 (

The impact of deep convection on the West African summer monsoon climate: a regional climate model sensitivity study

Abstract The role of the representation of deep convection on key elements of the West African summ

The Effect of Explicit Convection on Climate Change in the West African Monsoon and Central West African Sahel Rainfall

Abstract The West African monsoon (WAM) is the dominant feature of West African climate providing t

The Impact of the African Great Lakes on the Regional Climate

Abstract Although the African Great Lakes are important regulators for the East African climate, th

Projections of indices of daily temperature and precipitation based on bias-adjusted CORDEX-Africa regional climate model simulations

Abstract We present a dataset of daily, bias-adjusted temperature and precipitation projections for

A mid-troposphere perspective on the East African climate paradox

Abstract The East African climate paradox—a term framing the observed precipitation