Co-auteur étrangerInternational audienceWe use PyBox, a new numerical implementation of the box-model approach, to reproduce pyroclastic density current (PDC) deposits from the Somma–Vesuvius volcano (Italy). Our simplified model assumes inertial flow front dynamics and mass deposition equations and axisymmetricconditions inside circular sectors. Tephra volume and density and total grain size distribution of EU3pf and EU4b/c, two well-studied PDC units from different phases of the 79 CE Pompeii eruption, are used as input parameters. Such units correspond to the deposits from variably dilute, turbulentPDCs.We perform a quantitative comparison and uncertainty quantification of numerical model outputs with respect to the observed data of unit...
Turbulent, dilute pyroclastic density currents (surges) represent the most common and hazardous type...
Pyroclastic density currents (PDCs) are gravity-driven hot mixtures of gas and volcanic particles wh...
Pyroclastic density currents (PDCs) generated during the Plinian eruption of the Pomici di Avellino ...
Co-auteur étrangerInternational audienceWe use PyBox, a new numerical implementation of the box-mode...
In this study, we apply a two-dimensional, transient depth-averaged model to simulate the inertial f...
International audienceThe quantification of the maximum runout, invaded area, volume, and total grai...
Small-scale pyroclastic density currents (PDCs) associated with the AD 472 (Pollena) eruption of Som...
Multiphase flow models represent valuable tools for the study of the complex, non-equilibrium dynami...
International audienceWe have used a three-dimensional, non-equilibrium multiphase flow numerical mo...
This paper presents PYFLOW_2.0, a hazard tool for the calculation of the impact parameters of dilute...
During the past 22 ka of activity at Somma– Vesuvius, catastrophic pyroclastic density currents (PDC...
Pyroclastic flows represent the most hazardous events of explosive volcanism, one striking example b...
This paper deals with ground-hugging, gas-pyroclast currents from explosive volcanic eruptions and t...
High concentration pyroclastic density currents (PDCs) are hot avalanches of volcanic rock and gas a...
Turbulent, dilute pyroclastic density currents (surges) represent the most common and hazardous type...
Pyroclastic density currents (PDCs) are gravity-driven hot mixtures of gas and volcanic particles wh...
Pyroclastic density currents (PDCs) generated during the Plinian eruption of the Pomici di Avellino ...
Co-auteur étrangerInternational audienceWe use PyBox, a new numerical implementation of the box-mode...
In this study, we apply a two-dimensional, transient depth-averaged model to simulate the inertial f...
International audienceThe quantification of the maximum runout, invaded area, volume, and total grai...
Small-scale pyroclastic density currents (PDCs) associated with the AD 472 (Pollena) eruption of Som...
Multiphase flow models represent valuable tools for the study of the complex, non-equilibrium dynami...
International audienceWe have used a three-dimensional, non-equilibrium multiphase flow numerical mo...
This paper presents PYFLOW_2.0, a hazard tool for the calculation of the impact parameters of dilute...
During the past 22 ka of activity at Somma– Vesuvius, catastrophic pyroclastic density currents (PDC...
Pyroclastic flows represent the most hazardous events of explosive volcanism, one striking example b...
This paper deals with ground-hugging, gas-pyroclast currents from explosive volcanic eruptions and t...
High concentration pyroclastic density currents (PDCs) are hot avalanches of volcanic rock and gas a...
Turbulent, dilute pyroclastic density currents (surges) represent the most common and hazardous type...
Pyroclastic density currents (PDCs) are gravity-driven hot mixtures of gas and volcanic particles wh...
Pyroclastic density currents (PDCs) generated during the Plinian eruption of the Pomici di Avellino ...