Revisiting the 1877 Cataclysmic Lahars of Cotopaxi Volcano by a Cellular Automata Model and Implications for Future Events
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[1] Luis Sodiro. Relación sobre la erupción del Cotopaxi acaecida el día 26 de junio de 1877 , 1877 .
[2] JJtelncal iajette,et al. 1877 , 1878, The Indian medical gazette.
[3] P. Julien,et al. Two‐Dimensional Water Flood and Mudflow Simulation , 1993 .
[4] J. Beget,et al. Volcanic-Hazard Zonation for Glacier Peak Volcano, Washington , 1995 .
[5] R. Iverson,et al. U. S. Geological Survey , 1967, Radiocarbon.
[6] J. Costa. Hydraulic Modeling for Lahar Hazards at Cascades Volcanoes , 1997 .
[7] S. Schilling. Copies of this report can be purchased from: , 1996 .
[8] Bastien Chopard,et al. Cellular Automata Modeling of Physical Systems: Index , 1998 .
[9] Roberto Serra,et al. An empirical method for modelling and simulating some complex macroscopic phenomena by cellular automata , 1999, Future Gener. Comput. Syst..
[10] S. D. Gregorio,et al. A Cellular Automata model for soil erosion by water , 2001 .
[11] A. Patra,et al. Computing granular avalanches and landslides , 2003 .
[12] Rocco Rongo,et al. PYR: a Cellular Automata model for pyroclastic flows and application to the 1991 Mt. Pinatubo eruption , 2005, Future Gener. Comput. Syst..
[13] B. Caceres,et al. Determinacion del volumen del casquete de hielo del volcan Cotopaxi , 2005 .
[14] Joel L. Schiff,et al. Cellular Automata: A Discrete View of the World (Wiley Series in Discrete Mathematics & Optimization) , 2007 .
[15] G. M. Crisci,et al. Lava-flow hazard on the SE flank of Mt. Etna (Southern Italy) , 2008 .
[16] M. Castillo-Rodríguez,et al. Lahar flow simulations using LAHARZ program: Application for the Popocatépetl volcano, Mexico , 2009 .
[17] Rocco Rongo,et al. A New Algorithm for Simulating Wildfire Spread through Cellular Automata , 2011, TOMC.
[18] Maria Vittoria Avolio,et al. A Theorem about the Algorithm of Minimization of Differences for Multicomponent Cellular Automata , 2012, ACRI.
[19] S. Fagents,et al. Modeling lahar behavior and hazards , 2013 .
[20] R. Cioni,et al. Lahar hazard assessment in the southern drainage system of Cotopaxi volcano, Ecuador: Results from multiscale lahar simulations , 2014 .
[21] Maria Vittoria Avolio,et al. A Preliminary Cellular Model for Secondary Lahars and Simulation of 2005 Case of Vascún Valley, Ecuador , 2014, ACRI.
[22] Valeria Lupiano,et al. LLUNPIY Preliminary Extension for Simulating Primary Lahars - Application to the 1877 Cataclysmic Event of Cotopaxi Volcano , 2015, SIMULTECH.
[23] P. Mothes,et al. Lahars at Cotopaxi and Tungurahua Volcanoes, Ecuador: Highlights from Stratigraphy and Observational Records and Related Downstream Hazards , 2015 .
[24] Maria Vittoria Avolio,et al. A cellular model for secondary lahars and simulation of cases in the Vascún Valley, Ecuador , 2015, J. Comput. Sci..
[25] G. M. Crisci,et al. Modelling Fast-moving Flow-like Landslides by Cellular Automata : Simulations of Debris Flows and Lahars , 2015 .
[26] G. M. Crisci,et al. A modelling approach with Macroscopic Cellular Automata for hazard zonation of debris flows and lahars by computer simulations , 2015 .
[27] Valeria Lupiano,et al. Simulations of flow-like landslides invading urban areas: a cellular automata approach with SCIDDICA , 2017, Natural Computing.
[28] Maria Vittoria Avolio,et al. VALANCA: A Cellular Automata Model for Simulating Snow Avalanches , 2017, J. Cell. Autom..
[29] Claudia Roberta Calidonna,et al. From examination of natural events a proposal for risk mitigation of lahars by a cellular automata methodology: a case study for Vascún valley, Ecuador , 2019 .
[30] Claudia Roberta Calidonna,et al. From examination of natural events to a proposal for risk mitigation of lahars by a cellular-automata methodology: a case study for Vascún valley, Ecuador , 2020 .