Water Quality Analysis of a Tropical Reservoir Based on Temperature and Dissolved Oxygen Modeling by CE-QUAL-W2

Author:

Tavera-Quiroz Humberto1ORCID,Rosso-Pinto Mauricio1ORCID,Hernández Gerardo1,Pinto Samuel1,Canales Fausto A.2ORCID

Affiliation:

1. Department of Environmental Engineering, Universidad de Córdoba, Cra. 6 #No. 77-305, Montería 230002, Colombia

2. Department of Civil and Environmental, Universidad de la Costa, Calle 58 #55-66, Barranquilla 080002, Colombia

Abstract

Water quality impacts on water bodies such as reservoirs are strongly influenced by the hydrodynamics of the system. Although multiple models might be applied, they are limited by the simplification of the variables. In this study, a two-dimensional public domain model, CE-QUAL-W2, was adapted to test whether it would generate an accurate hydrodynamic simulation of the URRÁ Reservoir in Córdoba, Colombia, to understand water quality. The variables to be modeled were temperature and dissolved oxygen due to their importance in ecological terms. Thus, trial and error techniques were used to calibrate and validate the model, varying different parameters such as the wind shelter coefficient (WSC). Although the model accurately predicted the hydrodynamic part by having daily flow information, significant modifications to the eddy diffusivity coefficient were required to simulate acceptable longitudinal currents. This research shows that the CE-QUAL-W2 model fits adequately to tropical lentic systems. However, it is recommended that, for future studies, the modeling be adjusted using hourly data, especially in areas where inflow and boundary conditions are unstable.

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference69 articles.

1. The importance of reservoirs for water supply and power generation—An overview;Stelzer;Global Change: Enough Water for All?: Scientific Facts,2007

2. The multipurpose water uses of hydropower reservoir: The SHARE concept;Branche;C. R. Phys.,2017

3. Risk analysis for the multi-reservoir flood control operation considering model structure and hydrological uncertainties;Li;J. Hydrol.,2022

4. Reassessing the projections of the World Water Development Report;Boretti;Npj Clean Water,2019

5. United Nations, U.W. (2015). Wastewater Management A UN-Water Analytical Brief, WHO.

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