Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Modeling the maximum annual flow in South-East Senegal using the GEV distribution

Domain:

environment and energy

Record type:

paper
Creator:
MelAudAli
Publisher:
Cop
Host:
Abstract. Understanding extreme floods is crucial for water resource management and risk prevention in West Africa. However, the statistical modelling of maximum annual flows in south-East Senegal is still largely unexplored. The present study addresses this gap by analyzing and modelling the maximum annual flow using the generalized extreme value (GEV) distribution. Several statistical methods were compared to fit the model, including maximum likelihood estimation (MLE), probability-weighted moments (PWM), elementary percentiles (EP), and quantile least squares (QLS). The comparative performance of these methods is evaluated using the Average Standardized Absolute Error (ASAE) criterion, as well as probability and quantile plots. The results indicate that the probability-weighted moments method provides the best fit. Goodness-of-fit tests confirm that the Gumbel distribution, a special case of the GEV, is more appropriate for representing maximum annual flows in the study area. The 100-year return level of the maximum annual flow is estimated at 1751.242 m3 s−1, indicating that such a flow is likely to occur on average once every 100 years. This study highlights the value of extreme value models for flood analysis in regions with high hydro-climatic variability. The results provide useful insights for understanding hydrological risks in southeastern Senegal and can support future work in hydrological modeling and water resource management planning.

Visit

doi.org

Licenses

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

Similar

Statistical modeling of monthly maximum temperature in SenegalEnvironmental Suitability of Anopheles Mosquito Species in the Maekel Region, Eritrea: Species Distribution Modeling Using Maximum EntropyMultidimensional Poverty Modeling for Namibia Using the Beta DistributionModeling of wind speed distribution for wind power analysis in the northwestern coast of SenegalModelling non-stationary annual maximum flood heights in the lower Limpopo River basin of MozambiqueHeat flow across the East African Plateau

Statistical modeling of monthly maximum temperature in Senegal

Abstract We provide the first statistical analysis of maximum temperature in Senega

Environmental Suitability of Anopheles Mosquito Species in the Maekel Region, Eritrea: Species Distribution Modeling Using Maximum Entropy

Abstract Introduction: Malaria, a significant global health challenge, is closely associat

Multidimensional Poverty Modeling for Namibia Using the Beta Distribution

Despite global efforts in alleviating poverty, many people are still living in poverty. Different me

Modeling of wind speed distribution for wind power analysis in the northwestern coast of Senegal

International audience Wind energy assessment plays a critical role in the exploitati

Modelling non-stationary annual maximum flood heights in the lower Limpopo River basin of Mozambique

In this article we fit a time-dependent generalised extreme value (GEV) distribution to annual maxim

Heat flow across the East African Plateau

Four new heat flow measurements from western Tanzania are combined with existing data from non‐rifte