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.

Evaluation of High-Resolution Precipitation Products over the Rwenzori Mountains (Uganda)

Domaine:

climate
Créateur:
FalInnJonNic
Éditeur:
Ame
Hôte:
Abstract The Rwenzori Mountains, in southwest Uganda, are prone to precipitation-related hazards such as flash floods and landslides. These natural hazards highly impact the lives and livelihoods of the people living in the region. However, our understanding of the precipitation patterns and their impact on related hazardous events and/or agricultural productivity is hampered by a dearth of in situ precipitation observations. Here, we propose an evaluation of gridded precipitation products as potential candidates filling this hiatus. We evaluate three state-of-the-art gridded products, the ERA5 reanalysis, IMERG satellite observations, and a simulation from the convection-permitting climate model (CPM), COSMO-CLM, for their ability to represent precipitation totals, timing, and precipitation probability density function. The evaluation is performed against observations from 11 gauge stations that provide at least 2.5 years of hourly and half-hourly data, recorded between 2011 and 2016. Results indicate a poor performance of ERA5 with a persistent wet bias, mostly for stations in the rain shadow of the mountains. IMERG gives the best representation of the precipitation totals as indicated by bias score comparisons. The CPM outperforms both ERA5 and IMERG in representing the probability density function, while both IMERG and the CPM have a good skill in capturing precipitation seasonal and diurnal cycles. The better performance of CPM is attributable to its higher resolution. This study highlights the potential of using IMERG and CPM precipitation estimates for hydrological and impact modeling over the Rwenzori Mountains, preferring IMERG for precipitation totals and CPM for precipitation extremes.

Visit

doi.org

Licenses

http://www.ametsoc.org/PUBSReuseLicenses

Similaires

Testing the accuracy of high-resolution satellite-based and numerical model output precipitation products over EthiopiaValidation of high-resolution satellite precipitation products over West Africa for rainfall monitoring and early warningEvaluation of Monthly Satellite-Derived Precipitation Products over East AfricaEvaluation of the COSMO‐CLM high‐resolution climate simulations over West AfricaPerformance of High Resolution Satellite Rainfall Products over Data Scarce Parts of Eastern EthiopiaStatistical evaluation of High Resolution satellite precipitation products in arid and semi‐arid parts of Ethiopia: a note for hydro‐meteorological applications

Testing the accuracy of high-resolution satellite-based and numerical model output precipitation products over Ethiopia

Abstract The indirect rainfall estimates by satellites and numerical models are the alternative opt

Validation of high-resolution satellite precipitation products over West Africa for rainfall monitoring and early warning

Satellite rainfall estimation products (SRPs) can help overcome the absence of rain gauge data to mo

Evaluation of Monthly Satellite-Derived Precipitation Products over East Africa

Abstract East Africa experienced in the 2001–11 time period some of the worst droug

Evaluation of the COSMO‐CLM high‐resolution climate simulations over West Africa

Abstract The evaluation of a high‐resolution simulation at 0.11° (12 km) with the COnsortium for Sm

Performance of High Resolution Satellite Rainfall Products over Data Scarce Parts of Eastern Ethiopia

Accurate estimation of rainfall in mountainous areas is necessary for various water resource-related

Statistical evaluation of High Resolution satellite precipitation products in arid and semi‐arid parts of Ethiopia: a note for hydro‐meteorological applications

Abstract The prime objective of this study was evaluating six satellite precipitation products by u