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FALL3D-7.1: A computational model for transport and deposition of tephra
17 Feb 2016 | Contributor(s):: Arnau Folch, Antonio Costa, Giovanni Macedonio
FALL3D (version 7.1) a 3-D time-dependent Eulerian model for the transport and deposition of tephra developed in the framework of a collaboration the Barcelona Supercomputing Center (BSC) and the Istituto Nazionale di Geofisica e Vulcanologia (INGV). The model solves a set of...
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Fall3d-7.1
15 Feb 2016 | Contributor(s):: Arnau Folch, Antonio Costa, Giovanni Macedonio
FALL3D (version 7.1) is a 3-D time-dependent Eulerian model for the transport and deposition of tephra developed in the framework of a collaboration between INGV and Barcelona Supercomputing Center (BSC). The model solves a set of advection-diffusion-sedimentation (ADS) equations on a structured...
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Los depósitos de caída de tefra: Una breve revisión sobre su cuantificación y análisis para la clasificación de erupciones volcánicas explosivas, con ejemplos Latinoamericanos
15 Nov 2015 | Contributor(s):: Jorge E. Romero
La cuantificación de los depósitos volcánicos es una de las herramientas más utilizadas en la actualidad para clasificar la magnitud de la actividad volcánica y determinar los peligros volcánicos asociados. En el caso especial de las erupciones...
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ASHEE
14 Aug 2015 | Contributor(s):: Matteo Cerminara, Tomaso Esposti Ongaro
A fluid-dynamic model is developed to numerically simulate the non-equilibrium dynamics of polydisperse gas-particle mixtures forming volcanic plumes. Starting from the three-dimensional N-phase Eulerian transport equations for a mixture of gases and solid particles, we adopt an asymptotic...
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TError: towards a better quantification of the uncertainty propagated during the characterization of tephra deposits
28 Nov 2014 | Contributor(s):: Sebastien Biass, Gholamohssein Bagheri, William Aeberhard, Costanza Bonadonna
NOTE The code is now maintained on GitHub: https://github.com/e5k/TErrorFollow updates on: https://e5k.github.io/ Eruption Source Parameters (ESP; e.g. plume height, erupted volume/mass, mass eruption rate, eruption duration) inferred from tephra deposits are associated with large degrees...