Roughness Parameter Estimation for flood numerical simulation using Differential Evolution

A methodology to estimate parameters necessary to carry out numerical simulations of flood phenomena is presented, that may be useful for detecting flood-prone areas. Geospatial information contained in different databases is used as inputs, numerical simulation tools of hydrodynamic flooding phenomenon by solving the shallow water equations, and stochastic optimization algorithms. The objective is to find certain parameters of the simulation model that have a high uncertainty degree through evolutionary algorithms, comparing the simulations carried out with satellite images that monitor the behavior of rivers and streams in areas that may be susceptible to flooding. In this work, the Manning roughness coefficients were determined according to the soil usage identified in a synthetic example, in order to evaluate the usefulness and viability of the methodology proposed.

Datos y Recursos

Información Adicional

Campo Valor
Fuente https://scholar.google.com/citations?view_op=view_citation&hl=es&user=MG1jyREAAAAJ&pagesize=100&sortby=pubdate&citation_for_view=MG1jyREAAAAJ:yB1At4FlUx8C
Autor H Esqueda, SI Valdez, S Botello
Última actualización octubre 21, 2025, 09:00 (UTC)
Creado octubre 21, 2025, 09:00 (UTC)
Año 2022
DOI https://doi.org/10.1109/enc56672.2022.9882946
Google Scholar URL https://scholar.google.com/citations?view_op=view_citation&hl=es&user=MG1jyREAAAAJ&pagesize=100&sortby=pubdate&citation_for_view=MG1jyREAAAAJ:yB1At4FlUx8C
Identificador hash 2b13e5db2741
Lugar de publicación 2022 IEEE Mexican International Conference on Computer Science (ENC), 1-8, 2022
Tipo Publicación
Tipo de publicación Conferencia
URL directo https://ieeexplore.ieee.org/abstract/document/9882946/