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.

Future Changes in Seasonality in East Africa from Regional Simulations with Explicit and Parameterized Convection

Domaine:

climate

Type de record:

paper
Créateur:
CarJohDavDec
Éditeur:
Ame
Hôte:
Abstract The East African precipitation seasonal cycle is of significant societal importance, and yet the current generation of coupled global climate models fails to correctly capture this seasonality. The use of convective parameterization schemes is a known source of precipitation bias in such models. Recently, a high-resolution regional model was used to produce the first pan-African climate change simulation that explicitly models convection. Here, this is compared with a corresponding parameterized-convection simulation to explore the effect of the parameterization on representation of East Africa precipitation seasonality. Both models capture current seasonality, although an overestimate in September–October in the parameterized simulation leads to an early bias in the onset of the boreal autumn short rains, associated with higher convective instability and near-surface moist static energy. This bias is removed in the explicit model. Under future climate change both models show the short rains getting later and wetter. For the boreal spring long rains, the explicit convection simulation shows the onset advancing but the parameterized simulation shows little change. Over Uganda and western Kenya both simulations show rainfall increases in the January–February dry season and large increases in boreal summer and autumn rainfall, particularly in the explicit convection model, changing the shape of the seasonal cycle, with potential for pronounced socioeconomic impacts. Interannual variability is similar in both models. Results imply that parameterization of convection may be a source of uncertainty for projections of changes in seasonal timing from global models and that potentially impactful changes in seasonality should be highlighted to users.

Visit

doi.org

Similaires

Convection-Permitting Regional Climate Change Simulations for Understanding Future Climate and Informing Decision-Making in AfricaFuture changes in heatwaves over Africa at the convection-permitting scaleEffects of Explicit Convection on Future Projections of Mesoscale Circulations, Rainfall, and Rainfall Extremes over Eastern AfricaData and Processing Codes for "Future Changes in Winter-Time Extratropical Cyclones over South Africa from CORDEX-CORE Simulations"Malaria in Senegal: Recent and Future Changes Based on Bias-Corrected CMIP6 SimulationsThe effect of explicit convection on simulated malaria transmission across Africa

Convection-Permitting Regional Climate Change Simulations for Understanding Future Climate and Informing Decision-Making in Africa

Abstract Pan-Africa convection-permitting regional climate model simulations have been performed to

Future changes in heatwaves over Africa at the convection-permitting scale

<p>Mean temperatures and their extremes have increased over Africa since the latter ha

Effects of Explicit Convection on Future Projections of Mesoscale Circulations, Rainfall, and Rainfall Extremes over Eastern Africa

Abstract Eastern Africa’s fast-growing population is vulnerable to changing rainfall and extremes.

Data and Processing Codes for "Future Changes in Winter-Time Extratropical Cyclones over South Africa from CORDEX-CORE Simulations"

This repository contains the data and processing codes used in the study "Future Changes in

Malaria in Senegal: Recent and Future Changes Based on Bias-Corrected CMIP6 Simulations

Malaria is a constant reminder of the climate change impacts on health. Many studies have investigat

The effect of explicit convection on simulated malaria transmission across Africa

Malaria transmission across sub-Saharan Africa is sensitive to rainfall and temperature. Whilst diff