We investigate the dynamics of turbulent pyroclastic density currents (PDCs) by adopting a 3D, Eulerian-Eulerian multiphase flow model, in which solid particles are treated as a continuum and the grain-size distribution is simplified by assuming two particulate phases. The turbulent sub-grid stress of the gas phase is modelled within the framework of Large-Eddy Simulation (LES) by means of a eddy-viscosity model together with a wall closure. Despite the significant numerical diffusion associated to the upwind method adopted for the Finite-Volume discretization, numerical simulations demonstrate the need of adopting a Sub-Grid Scale (SGS) model, while revealing the complex interplay between the grid and the SGS filter sizes. We also analyse...
In the context of a study on pyroclastic flow hazards in caldera settings, we have analyzed the role...
Pyroclastic density currents (PDCs) are gas-particle flows generated during explosive eruptions, wh...
International audienceDeposits of pyroclastic density currents (PDCs) often contain accidental lithi...
We investigate the dynamics of turbulent pyroclastic density currents (PDCs) by adopting a 3D, Euler...
Multiphase flow models represent valuable tools for the study of the complex, non-equilibrium dynami...
We have simulated the dynamics of pyroclastic density currents to quantify the influence of the vert...
The interaction between pyroclastic density currents and buildings is investigated by means of numer...
A granular multiphase model has been used to evaluate the action of differently sized particles on t...
Pyroclastic density currents are ground hugging, hot, gas-particle flows representing the most hazar...
A granular multiphase model has been used to evaluate the action of differently sized particles on t...
Pyroclastic density currents (PDCs) are mixtures of twocomponents, namely solid particles and fluid ...
Two end-member types of pyroclastic density current are commonly recognized: pyroclastic surges are ...
This chapter summarizes the principal experimental and theoretical approaches used to investigate th...
A new method for the reconstruction of the physical characteristics of dilute pyroclastic density cu...
In the context of a study on pyroclastic flow hazards in caldera settings, we have analyzed the role...
Pyroclastic density currents (PDCs) are gas-particle flows generated during explosive eruptions, wh...
International audienceDeposits of pyroclastic density currents (PDCs) often contain accidental lithi...
We investigate the dynamics of turbulent pyroclastic density currents (PDCs) by adopting a 3D, Euler...
Multiphase flow models represent valuable tools for the study of the complex, non-equilibrium dynami...
We have simulated the dynamics of pyroclastic density currents to quantify the influence of the vert...
The interaction between pyroclastic density currents and buildings is investigated by means of numer...
A granular multiphase model has been used to evaluate the action of differently sized particles on t...
Pyroclastic density currents are ground hugging, hot, gas-particle flows representing the most hazar...
A granular multiphase model has been used to evaluate the action of differently sized particles on t...
Pyroclastic density currents (PDCs) are mixtures of twocomponents, namely solid particles and fluid ...
Two end-member types of pyroclastic density current are commonly recognized: pyroclastic surges are ...
This chapter summarizes the principal experimental and theoretical approaches used to investigate th...
A new method for the reconstruction of the physical characteristics of dilute pyroclastic density cu...
In the context of a study on pyroclastic flow hazards in caldera settings, we have analyzed the role...
Pyroclastic density currents (PDCs) are gas-particle flows generated during explosive eruptions, wh...
International audienceDeposits of pyroclastic density currents (PDCs) often contain accidental lithi...