Publicaciones

 

 

Documentos de difusión científica:

 

  • Blog de Modelación Ambiental, 2019 a la fecha. blog.modelacion.cl

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  • de la Fuente, A. y Meruane, C., 2016. Investigación en el Salar del Huasco: Entendiendo los procesos fundamentales que mantienen a los Salares y que explican la vida en torno a estos ecosistemas acuáticos. Fondecyt 1140821. www.investigacion-salares.cl

 

 

Artículos en revistas científicas:

 

  • de la Fuente, A., Meruane C. and Meruane, V. 2023. Expected reliability over a planning horizon of a hydraulic infrastructure and its uncertainty under hydroclimatic future projections. Journal of Hydrology. doi:10.1016/j.jhydrol.2023.129700

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  • Lobos-Roco, F., Hartogensis, O., Suárez, F., Huerta-Viso, A., Benedict, I., de la Fuente, A., and Vilà-Guerau de Arellano, J. 2022. Multi-scale temporal analysis of evaporation on a saline lake in the Atacama Desert. Hydrology and Earth System Sciences. doi:10.5194/hess-26-3709-2022

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  • Meruane, C., Tamburrino, T., de la Fuente, A., Niño, Y. 2021. Modelación del transporte incipiente de sedimentos mediante ecuaciones continuas de dos fases. Revista SOCHID. Vol. 36.

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  • Lobos-Roco, F., Hartogensis, O., Vilà-Guerau de Arellano, J., Aguirre, F., de la Fuente, A., and Suárez, F. 2022. Optical Microwave Scintillometer Evaporation Measurements over a Saline Lake in a Heterogeneous Setting in the Atacama Desert. Journal of Hydrometeorology. doi:10.1175/JHM-D-21-0100.1

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  • Poblete, C., Suárez, F., Vicuña, S., Meruane, C., de La Fuente, A., Reyes, J. 2020. Avances en el pronóstico operacional de corto plazo y la evolución futura de largo plazo del fenómeno de la turbiedad en el río Maipo. Aqua-LAC 12 (2), 37-46, 2020 doi:10.29104/phi-aqualac/2020-v12-2-03

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  • de la Fuente, A., Meruane, C. Suárez, F. 2021. Long-term spatiotemporal variability in high Andean wetlands in northern Chile. Science of The Total Environment. doi:0.1016/j.scitotenv.2020.143830

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  • Lobos-Roco, F., Hartogensis, O., Vilà-Guerau de Arellano, J., de la Fuente, A., Muñoz, R., Rutllant, J., and Suárez, F. 2021. Local evaporation controlled by regional atmospheric circulation in the Altiplano of the Atacama Desert. Atmos. Chem. Phys. doi:10.5194/acp-21-9125-2021

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  • de Amesti, P., de la Fuente, A., Suárez, F 2020. Evaporation from unsaturated soils as a function of the air and soil sides of the land surface. Water Resources Research doi:10.1029/2020WR028643

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  • Suárez, F., Lobos, F., de la Fuente, A., Arellano, J., Prieto, A., Meruane, C. and Hartogensis, O. 2020. E-DATA: A Comprehensive Field Campaign to Investigate Evaporation Enhanced by Advection in the Hyper-Arid Altiplano. doi: 10.3390/w12030745

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  • Haas, J., Khalighia, J., de la Fuente, A., Gerbersdorfd, S.U., Nowaka, W. and Po-Jung Chen. 2020. Floating photovoltaic plants: Ecological impacts versus hydropower operation flexibility. Energy Conversion and Management. doi: 10.1016/j.enconman.2019.112414

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  • de la Fuente, A., Meruane V. and Meruane, C. 2019. Hydrological early warning system based on a deep learning runoff model coupled with a meteorological forecast. Water. doi: 10.3390/w11091808

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  • de la Fuente, A. and Meruane, C. 2017. Spectral model for long-term computation of thermodynamics and potential evaporation in shallow wetlands. Water Resources Research. doi: 10.1002/2017WR020515

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  • de la Fuente, A. and Meruane, C. 2017. Dimensionless numbers for classifying the thermodynamics regimes that determine water temperature in shallow lakes and wetlands. Environmental Fluid Mechanics. doi: 10.1007/s10652-017-9536-x

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  • de la Fuente, A., Rojas, M. and Mac Lean, C. 2017. A human-scale perspective on global warming: Zero emission year and personal quotas. PLOS ONE. doi: 10.1371/journal.pone.0179705

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  • Carpentier, D., Haas, J., Olivares, M. and de la Fuente, A. 2017. Modeling the multi-seasonal link between the hydrodynamics of a reservoir and its hydropower plant operation. Water, 9, 367.

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  • Meruane, C. y de la Fuente, A. 2016. Modelación del efecto del Niño y el aumento de nutrientes sobre el crecimiento de microalgas tóxicas en los canales y fiordos del sur de Chile. Revista de la Sociedad Chilena de Ingeniería Hidráulica ISSN 0716-3746, 28, 36-40.

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  • de la Fuente, A., Ordoñez, C. and Perez, R. 2016. Diffusional mass transfer coefficient at the water–sediment interface for wind-induced flow in very shallow lagoons. Env. Fluid Mech. doi: 10.1007/s10652-015-9437-9.

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  • Rossel, V. and de la Fuente, A. 2015. Assessing the link between environmental flow, hydropeaking operation and water quality of reservoirs. Ecological Engineering, 85, 26–38. doi:10.1016/j.ecoleng.2015.09.074

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  • Ordoñez, C., de la Fuente, A., and Díaz, P. 2015. Modeling the influence of benthic primary production on oxygen transport through the water–sediment interface. Ecological Modelling, 311, 1-10. doi:10.1016/j.ecolmodel.2015.05.007

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  • Ulloa, HN, Winters, KB, de la Fuente, A, and Niño, Y. 2015. Degeneration of internal Kelvin waves in a continuous two-layer stratification. J. Fluid Mech.,777,68-96. doi: 10.1017/jfm.2015.311.

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  • Ibarra, G., de la Fuente, A. and Contreras, M. 2015. Effects of hydropeaking on the hydrodynamics of a stratified reservoir: the Rapel Reservoir case study. Journal of Hydraulic Research. doi:10.1080/00221686.2015.1060271.

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  • de la Fuente, A. 2014. Heat and dissolved oxygen exchanges between the sediment and water column in a shallow salty lagoon. J. Geophys. Res. Biogeosci.,119: 596-613, doi:10.1002/2013JG002413.

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  • de la Fuente, A. 2014. Methodology for Analyzing Dissolved Oxygen Consumption in Benthic Chambers. J. Environ. Eng., 10.1061/(ASCE)EE.1943-7870.0000926, 04014098.

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  • Ulloa, H., de la Fuente, A., and Niño, Y. 2014. An experimental study of the free evolution of rotating, nonlinear internal gravity waves in a two-layer stratified fluid. J. Fluid Mech.,742: 308-339.

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  • Rozas, C., de la Fuente, A., Ulloa, H., Davies, P., and Niño, Y. 2014. Quantifying the effect of wind on internal wave resonance in Lake Villarrica, Chile. Environ. Fluid Mech. 14: 849-871, doi:10.1007/s10652-013-9329-9.

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  • de la Fuente, A., & Herrera, P. 2013. Solución numérica de la ecuación de difusión-reacción y ejemplos de aplicación. Revista de la Sociedad Chilena de Ingeniería Hidráulica, 28: 25-50.

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  • Meruane, C., Tamburrino, A. & Roche, O. 2012. Dynamics of dense granular flows of small-and-large grain mixtures in an ambient fluid. Physical Review E, 86, 026311. doi: 10.1103/PhysRevE.86.026311.

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  • Winters, K. B. and de la Fuente, A. 2012. Modelling rotating stratified flows at laboratory-scale using spectrally-based DNS. Ocean Modelling 49-50, 47-59.

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  • Meruane, C., Tamburrino, A. & Roche, O. 2010. On the role of the ambient fluid on gravitational granular flow dynamics. Journal of Fluid Mechanics, 648: 381-404. doi:10.1017/S0022112009993181.

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  • de la Fuente, A. Meruane, C., Contreras, M., Ulloa, H. & Niño, Y. 2010. Strong vertical mixing of deep water of a stratified reservoir during the Maule earthquake, central Chile (Mw 8.8). Geophysical Research Letters, 37, L24608, doi:10.1029/2010GL045798.

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  • de la Fuente, A., Shimizu, K., Imberger, J. and Niño, Y. 2010. Nonlinear and weakly nonhydrostatic inviscid evolution of internal gravitational basin-scale waves in a large, deep lake: Lake Constance. J. Geophys. Res. Oceans. 115, C12045, doi:10.1029/2009JC005839.

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  • Shintani, T., de la Fuente, A., Imberger, J., and Niño, Y. 2010. Generalizations of the Wedderburn number: Parameterizing upwelling in stratified lakes. Limnol. Oceanogr. 55: 1377-1389.

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  • de la Fuente, A. and Niño, Y. 2010. Temporal and spatial features in the thermo-hydrodynamics of a shallow salty lagoon in Northern Chile. Limnol. Oceanogr. 55: 279-288.

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  • de la Fuente, A., Shimizu, K., Imberger, J. and Niño, Y. 2008. The evolution of internal waves in a rotating, stratified, circular basin and the influence of weakly nonlinear and nonhydrostatic accelerations. Limnol. Oceanogr. 53: 2738-2748

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  • de la Fuente, A. and Niño, Y. 2008. Pseudo 2D ecosystem model for a dendritic reservoir. Ecological Modelling. 213: 389-401.

 

 

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