Abstract
The port of Valparaiso is located in the central region of Chile. Its topography is dominated by several creeks that drain waters from hills that surround the city. These creeks were formed through natural terrain abrasion produced by precipitation events that occur mainly in the winter season (June–August). Francia Creek drains waters from a catchment area of approximately 324 ha (3.24 km2) covered mainly by native and exotic vegetation, eroded soil and urban areas. The waters drained by the creek feed the storm water pipes of the city system. Sediment transport and deposition has been a recurring problem through the years. This research tests the following hypothesis: if a city restores its surrounding natural systems this would lead to the reduction of the occurrence of floods and high sediment-load events. Since Francia Creek is moderately urbanized and still preserves some of the natural vegetation while also having land covers with exotic (non-native) vegetation and loose soil, a hydrological and sediment transport model is developed for its catchment and streams to computationally test the hypothesis. The model is used to simulate possible natural scenarios of land use. The results show that a scenario in which current non-native vegetation land covers is replaced by a combination of native forest and native shrub (70% and 30%, respectively) produces the least amount of sediment volume to accumulate at the sand trap. This scenario reduces the sediment volume in around 200 m3 (up to 20% percent reduction) and at the same time reduces the strength of peak floods in about 5%. In conclusion, the model output shows that the environmental-paradigm hypothesis is correct in terms of sediment volume reduction and stream flow peak floods attenuation, i.e., if the Francia Creek watershed is restored to approximate original (natural) land cover, sediment transport and floods are less severe than under current conditions.
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References
González, C., Castillo, M., García-Chevesich, P., Barrios, J.: Dempster-Shafer theory of evidence: a new approach to spatially model wildfire risk potential in central Chile. Sci. Total Environ. 613–614, 1024–1030 (2018)
Castillo, M.: Los incendios forestales en Chile: Un problema permanente y creciente. Ambiente Forestal. Revista de Extensión de la Facultad de Ciencias Forestales de la Universidad de Chile, vol. 7, no. 12, pp. 28–32 (2012)
Alvarez, L.: Cambios de Paradigma. In: Magíster Territorio y Paisaje (eds.) H30 Infiltración, pp. 12–15. UDP, Santiago (2016)
Lobo, G.P., Bonilla, C.A.: A modeling approach to determining the relationship between vegetative filter strip design and sediment composition. Agr. Ecosyst. Environ. 237, 45–54 (2017)
Alarcon, V.J., Hernandez, J.P., Alcayaga, H.: Simulation of hydrograph response to land use scenarios for a Southern Chile watershed. In: Gervasi, O., et al. (eds.) ICCSA 2017. LNCS, vol. 10407, pp. 613–625. Springer, Cham (2017). https://doi.org/10.1007/978-3-319-62401-3_44
Brignoli, M.L., Espa, P., Batalla, R.J.: Sediment transport below a small alpine reservoir desilted by controlled flushing: field assessment and one-dimensional numerical simulation. J. Soils Sediments 17(8), 2187–2201 (2017)
Alarcon, V.J., Sassenrath, G.F.: Nitrate, total ammonia, and total suspended sediments modeling for the mobile river watershed. Int. J. Agric. Environ. Inf. Syst. 8(2), 20–31 (2017)
Oyarzún, C.E., Frêne, C., Lacrampe, G., Huber, A., Hervé, P.: Soil hydrological properties and sediment transport in two headwater catchments with different vegetative cover at the coastal mountain range in Southern Chile. Bosque 32(1), 10–19 (2011)
Bathurst, J.C.: Predicting impacts of land use and climate change on erosion and sediment yield in river basins using SHETRAN. In: Handbook of Erosion Modelling, pp. 263–288 (2011)
EPA: Better Assessment Science Integrating Point and Nonpoint Sources (BASINS) (2018). https://www.epa.gov/exposure-assessment-models/basins. Accessed 3 Mar 2018
Donigian Jr., A.S.B., Haith, D.A., Walter, M.F.: HSPF Parameter Adjustments to Evaluate the Effects of Agricultural Best Management Practices. U.S. EPA Environmental Research Laboratory, Athens (1983)
Alarcon, V.J.: Hidrologia y Sedimentos en la Quebrada Francia. In: Magíster Territorio y Paisaje (eds.) H30 Infiltración, pp. 18–19. UDP, Santiago (2016)
SERNAGEOMIN: Efectos del incendio del 12 al 16 de abril de 201, comuna de Valparaiso, region de Valparaiso. Ministerio de Mineria, Santiago (2015)
Servicio Aerofotogrametrico, SAF: Topografia de Valparaiso. Fuerza Aerea de Chile. https://www.saf.cl/index.php/productos/16-productos/44-lidar. Accessed 3 Mar 2018
Herrera, M.I., Lepe C., Morales, J., Pinto, C.: Plan R, reconocer-restaurar-reducir. In: Magíster Territorio y Paisaje (eds.) H30 Infiltración, pp. 100–177. UDP, Santiago (2016)
Direccion General de Aguas, DGA: Información Oficial Hidrometeorológica y de Calidad de Aguas en Línea. http://snia.dga.cl/BNAConsultas/reportes. Accessed 3 Mar 2018
Hauenstein, E., Muñoz-Pedreros, A., Yánez, J., Sánchez, P., Möller, P., Guiñez, B., Gil, C.: Flora y vegetación RN Lago Peñuelas. Bosque 30(3), 159–179 (2009). Chile
Zepeda-Paulo, R.A.: Dinámica espacio-temporal del bosque nativo y matorral esclerófilo y la industria vitivinícola: Una aproximación para la conservación en el Valle de Leyda, Región de Valparaíso. Thesis, Universidad Austral de Chile, Valdivia, Chile (2013)
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Alarcon, V.J., Magrini, C. (2018). Scenarios of Sediment Transport Management in Francia Creek, Valparaiso, Chile. In: Gervasi, O., et al. Computational Science and Its Applications – ICCSA 2018. ICCSA 2018. Lecture Notes in Computer Science(), vol 10962. Springer, Cham. https://doi.org/10.1007/978-3-319-95168-3_14
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DOI: https://doi.org/10.1007/978-3-319-95168-3_14
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