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Análisis de inundaciones a diferentes tiempos de retorno en el río Mala desde la estación hidrométrica La Capilla usando IBER y HEC-RAS

  • Jose Miller Diaz Mejia
  • , Flor Jackelin Auris Mariscal
  • , Carmona Arteaga Abel
  • , Ramos Orlandino Carmela Cristhy
  • Universidad Peruana de Ciencias Aplicadas

Producción científica: Contribución a una revistaArtículo de la conferenciarevisión exhaustiva

Resumen

The increase in global temperature is altering climate patterns, generating changes in watersheds that intensify phenomena such as floods. A notable case is the Mala River basin in Peru, which during the rainy season (December to April) faces extreme rainfall, especially due to the coastal Niño phenomenon. This has devastating consequences, such as crop damage and human loss. To evaluate the impact of these floods, an investigation was carried out with the objective of identifying flood-prone areas in the Mala River channel, downstream of the La Capilla hydrometric station, using two-dimensional models such as IBER and HEC-RAS. A JavaScript code was developed to obtain daily precipitation and temperature data from the ERA5 Land climate product. These data were integrated into the GR4J precipitation-runoff model, generating historical series of daily average flows from 1950 to 2024. Flood simulations were performed using the aforementioned models and compared with multispectral images. The results showed that the maximum instantaneous flow reached 235 m3/s for a return period of 10000 years. Furthermore, IBER showed larger flood areas than HEC-RAS in all evaluated return times, mainly affecting agricultural areas, which has a negative impact on the local economy and the quality of life of the population of the Mala district, especially in the lower part of the river.

Título traducido de la contribuciónFlood analysis at different return times in the Mala River from the La Capilla hydrometric station using IBER and HEC-RAS
Idioma originalEspañol
PublicaciónProceedings of the LACCEI international Multi-conference for Engineering, Education and Technology
N.º2025
DOI
EstadoPublicada - 2025
Publicado de forma externa
Evento23rd LACCEI International Multi-Conference for Engineering, Education and Technology, LACCEI 2025 - Virtual, Online
Duración: 16 jul. 202518 jul. 2025

ODS de las Naciones Unidas

Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

  1. ODS 13: Acción por el clima
    ODS 13: Acción por el clima

Palabras clave

  • HEC-RAS
  • IBER
  • Mala River
  • flood

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