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.

Gauging the ungauged: Estimating rainfall in urbanized river basins using ground-based and spaceborne sensors

Domaine:

climateenvironment and energy
Créateur:
LinRosTimRem
Éditeur:
Cop
Hôte:
<p>Accurate rainfall estimates in urban areas are vital for water management, pollution transport, and flood forecasts. To cover the high spatial (and temporal) variability of rainfall, uniformly distributed observation networks are required.</p><p>In many urban areas dedicated rainfall observations are limited because of low available budgets or unsuitable technology. Therefore, this study compared and assessed the accuracy of three &#8220;non-traditional&#8221; rainfall datasets in the Odaw (Accra, Ghana) river basin to help future modellers to decide which dataset is the best fit, for instance to predict floods. The&#160;Odaw river basin is one of the main drainage systems in Accra with a total catchment area of about 270 km<sup>2</sup>. Over the past three decades, the Odaw basin has been challenged with floods, but due to the lack of a good representation of rainfall measurements, the ability to accurately simulate or forecast floods in the basin is limited.</p><p>Two rainfall datasets are derived from satellite observations and one from crowdsourced rain gauges. The three estimates were all available for the study period (2020) and were analysed and compared at a thirty-minute time-interval. The first space-based product is the most recent version (V06B) of IMERG, the gridded multisatellite precipitation product of the Global Precipitation Measurement (GPM) mission; the second space-based product is the MSG-SEVIRI infrared satellite imagery,&#160;an innovative rainfall dataset based on geostationary data available day and night.&#160;The ground-based data was retrieved from ten TAHMO rain gauges. Because the satellite products consists of pixels while the TAHMO observations are point measurements, the stations were assigned to the pixels of the satellite products.</p><p>Results show that all three rainfall datasets revealed a systematic spatial variation, with on average more rainfall observed upstream than downstream. Although all datasets reproduced a similar annual accumulation, the rainfall intensity observed by the TAHMO stations (point measurements) were much higher, sometimes even more than twice as high. Days with high rainfall amounts (when the daily average TAHMO rain rate exceeded 15 mm/hr) were used as case studies, as these days were hypothesised to be related to flooding. During these days space-borne radar overpasses were used to get some impression about the spatial characteristics of the rainfall events. With this presentation we aim to demonstrate the applicability of freely available data to estimate rainfall at various temporal and spatial scales in (formerly) ungauged urbanized river basins.</p>

Visit

doi.org

Languages

Ga

Similaires

Meteorological drought monitoring across the main river basins of Ethiopia using satellite rainfall productEstimating Flood Magnitudes of Ungauged Urban Msimbazi River Catchment in Dar es Salaam, TanzaniaBias Adjustment of Four Satellite-Based Rainfall Products Using Ground-Based Measurements over SudanA Convergent Satellite and Machine Learning Framework for Discharge Estimation in Ungauged Wetland BasinsEvaluation of imputation techniques for infilling missing daily rainfall records on river basins in GhanaHydrological real-time modelling in the Zambezi river basin using satellite-based soil moisture and rainfall data

Meteorological drought monitoring across the main river basins of Ethiopia using satellite rainfall product

Abstract Background Drought is a recurrent phenomenon emerging

Estimating Flood Magnitudes of Ungauged Urban Msimbazi River Catchment in Dar es Salaam, Tanzania

More often daily climate data have been used in hydrological models to estimate flood flows in small

Bias Adjustment of Four Satellite-Based Rainfall Products Using Ground-Based Measurements over Sudan

Satellite-based rainfall estimates (SREs) represent a promising alternative dataset for climate and

A Convergent Satellite and Machine Learning Framework for Discharge Estimation in Ungauged Wetland Basins

Research Data and Model Outputs: A Convergent Satellite and Machine Learning

Evaluation of imputation techniques for infilling missing daily rainfall records on river basins in Ghana

Statistical imputation techniques were evaluated for infilling missing records in daily rai

Hydrological real-time modelling in the Zambezi river basin using satellite-based soil moisture and rainfall data

Abstract. Reliable real-time forecasts of the discharge can provide valuable information for the man