Hydrological model, water quality and climate change: support for the integral management of the Soto la Marina river watershed

AudienciaPúblico en generales_ES
CoberturaMéxicoes_ES
Fecha de ingreso2026-10-05T16:32:24Z
Fecha de publicación2021-01-01
ResumenThe management of water resources is a priority on the agenda of the United Nations. Three vectors are essential, quantity, quality, and climate change scenarios in water resources. In the central region of Tamaulipas, Mexico, the fluvial network of the Soto la Marina river watershed stands out, with the Corona, Purificacion and Pilon rivers as the main tributaries. In this region there are significant volumes of wastewater and other discharges that put the conditions of the water system at risk, particularly of the Vicente Guerrero dam. The objective of this work was to develop a hydrological model of water availability and quality of the Soto la Marina river watershed (CRSLM) that considers climate change through the regionalization of two global circulation models, which are the closest to the latitude in which the watershed is located (GFDL-CM3 and HAGDGEM2-ES), using two representative concentration routes (RCP): 4.5 and 8.5 with projection to the year 2100, with the purpose of analyzing the watershed behavior, in order to simulate water vulnerability. The quality of the spatial-temporal system was evaluated: floods and droughts, by determining the biochemical oxygen demand, chemical oxygen and dissolved oxygen demand, as well as temperature, in 15 sites of the Soto la Marina river watershed, with modeling of the abatement of dissolved oxygen. Vectors for hydrology, monitoring and water quality were developed. The concentrations of the measured pollutants showed an increase in the Vicente Guerrero dam, although their seasonal behavior was more sensitive in low water levels than in floods. In the simulations with the WEAP built model with climate change scenarios, more conservative results were predicted in the dry season than in the rainfall season, with the RCP 4.5 W / m(2) for the GFDL-CM3 model being the most adverse projection.es_ES
Doihttps://doi.org/10.29059/cienciauat.v16i1.1498es_ES
URIhttps://riuat.uat.edu.mx/handle/123456789/4223
Idiomaeses_ES
EditorialUNIV AUTONOMA TAMAULIPASes_ES
RelaciónCienciauates_ES
URL relacionadohttps://doi.org/10.29059/cienciauat.v16i1.1498es_ES
DerechosAcceso abierto (Metadatos de producción científica)es_ES
Licenciahttp://purl.org/coar/access_right/c_abf2es_ES
FuenteCienciauat
Palabra claveWEAPes_ES
Palabra clavehidrologyes_ES
Palabra clavewater qualityes_ES
Palabra claveclimate changees_ES
Palabra clavemodelinges_ES
TítuloHydrological model, water quality and climate change: support for the integral management of the Soto la Marina river watershedes_ES
TipoArtículoes_ES
ArbitradoHa sido Arbitradoes_ES
AutorVazquez-Ochoa, Luis Antonio
AutorCorrea-Sandoval, Alfonso
AutorVargas-Castilleja, Rocio Del Carmen
AutorVazquez-Sauceda, Maria De La Luz
AutorRodriguez-Castro, Jorge Homero
AutorVazquez-Ochoa, Luis Antonioes_ES
AutorCorrea-Sandoval, Alfonsoes_ES
AutorVargas-Castilleja, Rocio Del Carmenes_ES
AutorVazquez-Sauceda, Maria De La Luzes_ES
AutorRodriguez-Castro, Jorge Homeroes_ES
InstituciónUniversidad Autónoma de Tamaulipas
InstituciónUniversidad Autónoma de Tamaulipases_ES
Número1es_ES
Rango de páginas20-41es_ES
URL relacionadahttps://doi.org/10.29059/cienciauat.v16i1.1498
Tipo de artículoIndexado
Tipo de artículoIndexadoes_ES
Volumen16es_ES

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