Modelación hidrodinámica y de calidad del agua en un ecosistema estuarino urbano con incidencia maregráfica y vertimientos de aguas residuales
DOI:
https://doi.org/10.18041/1900-3803/entramado.1.7285Palabras clave:
Eutrofización Estuarina, HEC-RAS, Hidrodinámica Mareal, Áreas EstuarinasResumen
El efecto del régimen de mareas y la descarga directa de aguas residuales en áreas estuarinas pueden incrementar los problemas de contaminación debido a la retención y transporte de cargas contaminantes. El uso de modelos matemáticos se ha convertido en una herramienta esencial para la gestión del recurso hídrico en estos ambientes. En esta investigación se modeló la incidencia del régimen de mareas y los vertimientos de aguas residuales en la calidad de agua en un ambiente estuarino urbano utilizando el modelo HEC-RAS. El modelo fue calibrado/validado utilizando el caudal medio de largo periodo (QMLT) y parámetros de calidad de agua medidos en campo, tales como: DBO, OD, N-O2 y N-O3. Los resultados evidenciaron que los niveles de agua, caudales y parámetros de calidad de agua medidos en campo fueron bien representados por el modelo. Las simulaciones mostraron que la calidad del agua en todos los trechos aguas abajo de la PTAR se encuentran eutrofizados. Adicionalmente, el régimen de marea provoca retención y transporte de contaminantes en áreas de baja pendiente. El abordaje propuesto se constituye en una valiosa herramienta para evaluar la calidad de agua en ambientes estuarinos urbanos y áreas circundantes con incidencia de régimen maregráfico.
Descargas
Referencias
APHA - AMERICAN PUBLIC HEALTH ASSOCIATION. Standard Methods for the examination of water and wastewater. 20th ed. Washington D. C: American Public Health Association Inc.1999
AZEVEDO, Luiz Gabriel Todt De; PORTO, Rubem La Laina; PORTO, Monica Ferrerira do Amaral. Sistema de apoio a decisão para o gerenciamento integrado de quantidade e qualidade da água. En: Revista Brasileira de Recursos Hídricos. Mar, 1998. vol. 3, n. 1. p. 21-51. https://doi.org/10.21168/rbrh.v3n1.p21-51
BENEDINI, Marcello. Water Quality Models for Rivers and Streams. State of the Art and Future Perspectives. In: European Water. 2011. vol. 34. p. 27-40. https://www.ewra.net/ew/pdf/EW_2011_34_03.pdf
BNDO-DHN - BANCO NACIONAL DE DADOS OCEANOGRÁFICOS-DIRETORIA DE HIDROGRAFIA E NAVEGAÇÃO. Previsões de marés (máximas e mínimas diárias). Tábua de maré porto de Florianópolis - previsões. 2014. https://tabuademares.com/br/santa-catarina/imbituba
CAO, Di-fan; SHEN, Yong-ming; SU, Mei-rong; YU, Chun-xue. Numerical simulation of hydrodynamic environment effects of the reclamation project of Nanhui tidal flat in Yangtze Estuary. In: Journal of Hydrodynamics. January, 2019. vol. 31, n. 3. p. 603-613. https://doi.org/10.1007/s42241-019-0006-4
CARDOZO, Francielle da Silva. O uso do geoprocessamento como ferramenta na análise dos impactos ambientais em decorrência da evolução urbana no rio Maruim, São Pedro de Alcântara e São José, SC. In: Anais – III Simpósio Regional de Geoprocessamento e Sensoriamento Remoto Aracaju/SE. Outubro, 2006. http://www.cpatc.embrapa.br/labgeo/srgsr3/artigos_pdf/003_t.pdf
CAROL, Eleonora; ÁLVAREZ, María del Pilar. Processes regulating groundwater chloride content in marshes under different environmental conditions: A comparative case study in Península Valdés and Samborombón Bay, Argentina. In: Continental Shelf Research. 2016. vol. 115. p. 33-43. https://doi.org/10.1016/j.csr.2015.12.017
CASAN - COMPANHIA CATARINENSE DE ÁGUAS E SANEAMENTO - Relatório Técnico Estação de Tratamento de Esgoto ETE Potecas. 2016. p.280. https://transparencia.casan.com.br/data/download/45/1
CONAMA. MINISTÉRIO DO MEIO AMBIENTE. CONSELHO NACIONAL DO MEIO AMBIENTE - BRASIL. Resolución 357 Resolução Nº357, de 17 de março de 2005 del Consejo Nacional del Medio Ambiente. Dispõe sobre a classificação dos corpos de água e diretrizes ambientais para seu enquadramento, bem como estabelece as condições e padrões de lançamento de efluentes, e dá outras providências. Brasília, DF, 2005b. https://www.gov.br/mma/pt-br
CORDEIRO, Taynara Cristina; BARRELLA, Walter; BUTTURI-GOMES, Davi; JÚNIOR, Miguel. A modeling approach for reposition dynamics of litter composition in coastal areas of the city of Santos, Sao Paulo, Brazil. In: Marine pollution bulletin. 2018. vol.128. p. 333-339. https://doi.org/10.1016/j.marpolbul.2018.01.054
COX, BA. A review of currently available in-stream water quality models and their applicability for simulating dissolved oxygen in lowland rivers. In: The Science of Total Environment Journal. 2003. vol. 314-316. p.335-377. https://doi.org/10.1016/S0048-9697(03)00063-9
CHOW, Ven Te. Open Channel Hydraulics. New York. McGraw Hill. 1959. 661p. http://web.ipb.ac.id/~erizal/hidrolika/Chow%20-%20OPEN%20CHANNEL%20HYDRAULICS.pdf
CHUKWU, Ogbonnaya. Analysis of Groundwater Pollution from Abattoir Waste in Minna, Nigeria. In: Research Journal of Diary Science. 2008. vol. 2. p. 74-77. https://medwelljournals.com/abstract/?doi=rjdsci.2008.74.77
DHI - ECOLab User Guide DHI Water & Environment, Denmark. Technical Report. 2014.
DOAN, Quang Tri; NGUYEN, Linh; QUACH, Thi Thanh Tuyet; TRAN, Anh Phuong; NGUYEN, Cao Don. Assessment of water quality in coastal estuaries under the impact of an industrial zone in Hai Phong, Vietnam. In: Physics and Chemistry of the Earth, Parts A/B/C. 2019. vol.113. p.100-114. https://doi.org/10.1016/j.pce.2019.04.003
EKUBO, Antony; ABOWEI, Jasper. Review of some water quality management principles inculture fisheries. In: Research Journal of Applied Sciences, Engineering and Technology. 2011. vol. 3. p. 1342-1357. https://maxwellsci.com/print/rjaset/v3-1342-1357.pdf
EPA - ENVIRONMENTAL PROTECTION AGENCY. CE-QUAL-RIV1: A dynamic one-dimensional (longitudinal) water quality model for streams. Vicksburg. MS, USA, 1995. https://apps.dtic.mil/dtic/tr/fulltext/u2/a230794.pdf
EPAGRI - Empresa de Pesquisa Agropecuária e Extensão Rural de Santa Catarina. 2013. Centro de Informações de Recursos Ambientais e de Hidrometeorología de Santa Catarina CIRAM.
FAN, Chihhao; KO, Chun-Han; WANG, Wei-Shen. An innovative modeling approach using Qual2K and HEC-RAS integration to assess the impact of tidal effect on River Water quality simulation. In: Journal of Environmental Management, 2009. vol. 90(5). p. 1824-1832. https://doi.org/10.1016/j.jenvman.2008.11.011
FARR, Tom G; ROSEN, Paul; CARO, Edward; CRIPPEN, Robert; DUREN, Riley; HENSLEY, Scott; KOBRICK, Michael; PALLER, Mimi; RODRIGUEZ, Ernesto; ROTH, Ladislav; SEAL, David; SHAFFER, Scott; SHIMADA, Joanne; UMLAND, Jeffrey; WERNER, Marian; OSKIN, Michael; BURBANK, Douglas; ALSDORF, Douglas. The shuttle radar topography mission. In: Reviews of Geophysics. 2007.vol. 45 (2), p. 33. https://doi.org/10.1029/2005RG000183
FEELY, Richard A; ALIN, Simone; NEWTON Jan; SABINE, Christopher; WARNER, Mark. The combined effects of ocean acidification, mixing, and respiration on pH and carbonate saturation in an urbanized estuary. In: Estuarine, Coastal and Shelf Science. August, 2010. vol. 88, p. 442-449. https://doi.org/10.1016/j.ecss.2010.05.004
FERREIRA, Rúbia Correa da Silva. Bacia do Rio Maruim: transformações e impactos ambientais. In: Dissertação do Mestrado em Geografia. Departamento de Geociências, Universidade Federal de Santa Catarina.1994. https://repositorio.ufsc.br/xmlui/handle/123456789/76051
FONSECA, André; BOTELHO, Cidália; BOAVENTURA, Rui; VILAR, Vítor. Integrated hydrological and water quality model for river management: a case study on lena river. In: Science of The Total Environment. 2014. vol. 485–486. p. 474-489. https://doi.org/10.1016/j.scitotenv.2014.03.111
FRAGOSO Jr, Carlos Ruberto; FERREIRA, Tiago Finkler; MOTTA MARQUES, David. Modelagem Ecológica em Ecossistemas Aquáticos. Oficina de Textos, São Paulo, SP. 2009. p.304.
GEYER, Rockwell; MACCREADY, Parker. The estuarine circulation. In: Annual review of fluid mechanics. 2014 vol. 46.p. 175-197. https://doi.org/10.1146/annurev-fluid-010313-141302
GLAMORE, William; MITROVIC, Sam; RUPRECHT, Jamie; DAFFORN, Keth; SCANES, Parker. The Hunter River estuary water quality model. In: Australasian Coasts and Ports. 2019. https://researchers.mq.edu.au/en/publications/the-hunter-river-estuary-water-quality-model
HANDLER, Nicholas; PAYTAN, Adina; HIGGINS, Christopher; LUTHY, Richard; BOEHM, Alexandria. Human development is linked to multiple water body impairments along the California coast. Estuar. Coasts, 29. 2006; pp. 860-870. https://doi.org/10.1007/BF02786537
HARARI, Joseph; CAMARGO, Ricardo. Modelagem numérica da região costeira de Santos (SP): circulação de maré. Revista Brasileira de Oceanografia. 1998. vol. 46. n. 2. p. 135-156 https://doi.org/10.1590/S1413-77391998000200004
HOYOS, Melissa Andrea; RODRÍGUEZ, Denisse Ariana; TORRES, Jesús Ernesto. Evaluación del recurso hídrico superficial en la subcuenca hidrográfica del río Frío en el departamento de Cundinamarca: Oferta, Demanda y Calidad Del Agua. En: Revista de Investigación Agraria y Ambiental. Universidad Nacional Abierta y a Distancia. 2018. vol. 9. n. 1. https://doi.org/10.22490/21456453.2075
HOPKINSON, Charles; VALLINO, Joseph. The relationships among man’s activities in watersheds and estuaries – a model of runoff effects on patterns of estuarine community metabolism. In: Estuaries. 1995. vol. 18. p. 598-621. https://doi.org/10.2307/1352380
HOPKINSON, Charles; GIBLIN, Annie; TUCKER, Jane; GARRITT, Roberth. Benthic metabolism and nutrient cycling along an estuarine salinity gradient. In: Estuaries. 1999. vol. 22. p. 863–88. https://doi.org/10.2307/1353067
JIANG, Tao; ZHONG, Ming; CAO, Ying Jie; ZOU, Long Jian; LIN, Bo; ZHU, Ai Ping. Simulation of water quality under different reservoir regulation scenarios in the tidal river. In: Water resources management. 2016. vol. 30. n. 10. p. 3593-3607. http://link.springer.com/10.1007/s11269-016-1375-x
JOHNSON, Billy; ZHANG, Zhonglong. One Dimensional Riverine Water Quality Modeling System (HEC-RAS/NSM). In: International Congress on Environmental Modelling and Software. July, 2016. https://scholarsarchive.byu.edu/cgi/viewcontent.cgi?referer=https://www.google.com/&httpsredir=1&article=1296&context=iemssconference
KIM, Seong; ARAL, Mustafa; EUN, Yongsoon., PARK, Jisu; PARK, Chuljin. Impact of sensor measurement error on sensor positioning in water quality monitoring networks. In: Stochastic Environmental Research and Risk Assessment. 2017. vol. 31. n. 3). p. 743-756. https://doi.org/10.1007/s00477-016-1210-1
LEONARD, Brian Philip. A stable and accurate convective modelling procedure based on quadratic upstream interpolation In: Computer Methods in Applied Mechanics and Engineering. 1979. vol.19, p. 59 – 98. https://doi.org/10.1016/0045-7825(79)90034-3
LUCAS, Lisa. Implications of estuarine transport for water quality. In: Estuarine Physics. 2010. pp 273– 307. https://doi.org/10.1017/CBO9780511676567.011
MALONE, Thomas; CROCKER, Louis; PIKE, Sean; WENDLER, Beth. Influences of river flow on the dynamics of phytoplankton production in a partially stratified estuary. In: Marine Ecology Progress Series. 1988.vol. 48. p. 235–49. https://www.jstor.org/stable/24827740
MONTAGNA, Paul; PALMER, Terry. Water and sediment quality status and trends in the coastal bend, phase 2: Data analysis. In: Coastal Bend Bays & Estuaries. May, 2012. http://www.cbbep.org/publications/publication1206updated.pdf
MONTSERRAT, Santiago; TREWHELA, Terry; NAVARRO, Lucas; NAVARRETE, Alexander. Hydrochemical simulation of a mountain basin under hydrological variability. In: AGU Fall Meeting Abstracts. December, 2016. https://ui.adsabs.harvard.edu/abs/2016AGUFM.H23A1535M/abstract
MUNAR, Andrés Mauricio; CAVALCANTI, José Rafel; BRAVO, Juan Martin.; FAN, Fernando Mainardi; DA MOTTA-MARQUES, David; FRAGOSO JR, Carlos Ruberto. Coupling large-scale hydrological and hydrodynamic modeling: Toward a better comprehension of watershed-shallow lake processes. In: Journal of Hydrology. July, 2018. vol. 564. p. 424-441. https://doi.org/10.1016/j.jhydrol.2018.07.045
MUNAR, Andrés Mauricio; CAVALCANTI, José Rafel; BRAVO, Juan Martin; DA MOTTA-MARQUES, David; FRAGOSO JR, Carlos Ruberto. Assessing the large-scale variation of heat budget in poorly gauged watershed-shallow lake system using a novel integrated modeling approach. In: Journal of Hydrology, August, 2019. vol. 575. p. 244-256. https://doi.org/10.1016/j.jhydrol.2019.05.025
PAERL, Hans; PINCKNEY, James; FEAR, Jhon; PEIERLS, Benjamin. Ecosystem responses to internal and watershed organic matter loading: consequences for hypoxia in the eutrophying Neuse River Estuary, North Carolina, USA. In: Marine Ecology Progress Series. May, 1998. vol. 166. p.17-25. https://www.int-res.com/articles/meps/166/m166p017.pdf
PEIERLS, Benjamin; CARACO, Nina; PACE, Michael; COLE, Jonathan. Human influence on river nitrogen. In: Nature.1991. vol. 350.p. 386-387. https://doi.org/10.1038/350386b0
PLEW, David; ZELDIS, Jhon; SHANKAR, Ude. Using Simple Dilution Models to Predict New Zealand Estuarine Water Quality. In: Estuaries and Coasts. 2018. vol. 41. p. 1643–1659. https://doi.org/10.1007/s12237-018-0387-6
RABALAIS, Nancy; DIAZ, Roberth; LEVIN, Lukas; TURNER, Roth; GILBERT, David; ZHANG, Ji. Dynamics and distribution of natural and human-caused hypoxia. In: Biogeociences. 2010, vol. 7(2). p. 585-619. https://doi.org/10.5194/bg-7-585-2010
RIECKEN, Sarah. A Compendium of Water Quality Models. BC Environment. Water Quality Branch. Government of British Columbia. 1995. p.124. https://www2.gov.bc.ca/assets/gov/environment/air-land-water/water/waterquality/water-quality-reference-documents/wq_ref_models_compendium.pdf
ROVERSI, Fernando; ROSMAN, Paulo; HARARI, Joseph. Análise da renovação das águas do Sistema Estuarino de Santos usando modelagem computacional. In: Revista Ambiente Água. 2016. vol. 11. n. 3. p. 566-585. https://doi.org/10.4136/ambi-agua.1770
SDS - Secretaria de Estado de Desenvolvimento Sustentável. Estudo de Regionalização de Vazões das Bacias Hidrográficas Estaduais do Estado de Santa Catarina. 2006. vol. 1. http://www.aguas.sc.gov.br/jsmallfib_top/DHRI/Legislacao/estudo_de_regionalizacao_hidrologica.pdf
SEILER, Lilian; FIGUEIRA, Rubens; SCHETTINI, Carlos; SIEGLE, Eduardo. Three-dimensional hydrodynamic modeling of the Santos-São Vicente-Bertioga estuarine system, Brazil. In: Regional Studies in Marine Science. 2020. vol. 37. https://doi.org/10.1016/j.rsma.2020.101348
SMITH, Ronald. Longitudinal dispersion of a buoyant contaminant in a shallow channel. In: Journal of Fluid Mechanics. December, 1976. vol. 78. n. 22.p. 677 – 688. https://doi.org/10.1017/S0022112076002681
SOUZA, Leandro; Moecke, Elisa Helena. Qualidade das águas superficiais do Rio Maruim avaliada pelo IQA–Índice de Qualidade das Águas. In: Tecnologias para a sustentabilidade/Debates Interdisciplinares. 2018. https://doi.org/10.19177/978-85-8019-206-3.135-151
STARK, Jeroen; SMOLDERS, Sam; MEIRE, Patrick; TEMMERMAN, Stijn. Impact of intertidal area characteristics on estuarine tidal hydrodynamics: A modelling study for the Scheldt Estuary. In: Estuarine, Coastal and Shelf Science. 2017. vol. 198. p. 138-155. https://doi.org/10.1016/j.ecss.2017.09.004
TOSIC, Marko; RESTREPO, Juan Dario; LONIN, Serguei; IZQUIERDO, Alfredo; MARTINS Flávio. Water and sediment quality in Cartagena Bay, Colombia: Seasonal variability and potential impacts of pollution. In: Estuarine Coastal and Shelf Science. January, 2019. vol. 216, p. 187-203. ISSN 0272-7714. https://doi.org/10.1016/j.ecss.2017.08.013
USACE - U. S. ARMY CORPS OF ENGINEERS. HEC-RAS: River Analysis System, Hydraulic Reference Manual. California. 2010
USACE- U. S. ARMY CORPS OF ENGINEER. HEC-GeoRAS: GIS Tools for Suport of HEC-RAS using ArcGIS. California. 2011
VERNBERG, Jhon; VERNBERG, Will; BLOOD, Eddy; FORTNER, Alex. c In: Netherlands Journal of Sea Research. December, 1992. vol. 30. p. 239-248 https://doi.org/10.1016/0077-7579(92)90062-J
VON SPERLING, Marcos. Estudos e modelagem da qualidade da água de rios. Belo Horizonte: Departamento de Engenharia Sanitária e Ambiental. Universidade Federal de Minas Gerais UFMG. 2007. vol. 7. p. 588.
WANG, Biao; LU, Shi; LIN, Wei; YANG, Yi; WANG, Dao. Water quality model with multiform of N/P transport and transformation in the Yangtze River Estuary. In: Journal of Hydrodynamics. 2016. vol. 28(3). p. 423-430. https://doi.org/10.1016/S1001-6058(16)60645-5
WANG, Hongqing; CHEN, Quin; HU, Kelin. A Modeling Study of the Impacts of Mississippi River Diversion and Sea-Level Rise on Water Quality of a Deltaic Estuary. In: Estuaries and Coasts. 2017. vol. 40. p. 1028–1054 https://doi.org/10.1007/s12237-016-0197-7
WANG, Junli; FU, Zishi; QIAO, Hongxia; LIU, Fuxing. Assessment of eutrophication and water quality in the estuarine area of Lake Wuli, Lake Taihu, China. In: Science of the Total Environment. 2019. vol. 650. p. 1392-1402. https://doi.org/10.1016/j.scitotenv.2018.09.137
WHITE, Elliott; KAPLAN, David. Restore or retreat? Saltwater intrusion and water management in coastal wetlands. In: Ecosystem Health and Sustainability. January, 2017. vol.3. https://doi.org/10.1002/ehs2.1258
WU, Weiming. 2008. Computational River Dynamics. Taylor and Francis group, London, UK.
XU, Cong; ZHANG, Jinjie; BI, Xiaowei; XU, Zheng; HE, Yiliang; GIN, Karina. Developing an integrated 3D-hydrodynamic and emerging contaminant model for assessing water quality in a Yangtze Estuary Reservoir. In: Chemosphere. 2017. vol. 188. p. 218-230. https://doi.org/10.1016/j.chemosphere.2017.08.121
YANG, Yen; CHEN, Xiaofeng;LI, Yangyang; XIONG, M Ming; SHEN, Zhenyao. Modeling the effects of extreme drought on pollutant transport processes in the Yangtze River estuary. In: JAWRA Journal of the American Water Resources Association. 2015.vol. 51.n. 3. p.624-636. https://doi.org/10.1111/1752-1688.12313
YAO, Hong; QIAN, Qian; YIN, Hong; GAO, Hailong; WANG, Yulei. Regional risk assessment for point source pollution based on a water quality model of the Taipu river, China. In: Risk Analysis. 2015. vol. 35. n. 2. p. 265-277. https://doi.org/10.1111/risa.12259
ZADEH, Farkhondeh; NOSSENT, Jiri; WOLDEGIORGIS, Befekadu; BAUWENS, Willy; VAN GRIENSVEN, Ann. Impact of measurement error and limited data frequency on parameter estimation and uncertainty quantification. In: Environmental Modelling & Software. 2019. vol. 118. p. 35-47. https://doi.org/10.1016/j.envsoft.2019.03.022
Publicado
Número
Sección
Licencia
Derechos de autor 2021 Entramado

Esta obra está bajo una licencia internacional Creative Commons Atribución-NoComercial-CompartirIgual 4.0.