The interaction between pyroclastic density currents and buildings is investigated by means of numerical simulation and large-scale experiments. Numerical simulation is performed with the Euler-Lagrange approach using a two-way coupling between gas and particles of three sizes. The collapse of an eruptive column consisting of a mixture of gas and pyroclasts is produced experimentally, and the impact of the resulting shear current with mock-ups representing buildings is monitored. A combination of results from simulations and experiments shows that, upon impact with a building, the multiphase current develops strong turbulence intensity, which significantly affects particle dispersion. The flow recirculation around the building induces force...
In the context of a study on pyroclastic flow hazards in caldera settings, we have analyzed the role...
This chapter summarizes the principal experimental and theoretical approaches used to investigate th...
This paper describes a numerical modeling approach that can be used to provide estimates of air conc...
We investigate the behavior of vertical building collapses that, at impact on the ground, can genera...
We investigate the dynamics of turbulent pyroclastic density currents (PDCs) by adopting a 3D, Euler...
A granular multiphase model has been used to evaluate the action of differently sized particles on t...
A new method for the reconstruction of the physical characteristics of dilute pyroclastic density cu...
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 multiphase thermo fluid dynamic model has been improved to assess the effect of a range of particl...
Multiphase flow models represent valuable tools for the study of the complex, non-equilibrium dynami...
Pyroclastic density currents (PDCs) are mixtures of twocomponents, namely solid particles and fluid ...
A multi-particle thermo-fluid dynamic model was developed to assess the dynamics of the transient t...
Integrating field observations and rock-magnetic measurements, we report how a turbulent pyroclastic...
In the context of a study on pyroclastic flow hazards in caldera settings, we have analyzed the role...
This chapter summarizes the principal experimental and theoretical approaches used to investigate th...
This paper describes a numerical modeling approach that can be used to provide estimates of air conc...
We investigate the behavior of vertical building collapses that, at impact on the ground, can genera...
We investigate the dynamics of turbulent pyroclastic density currents (PDCs) by adopting a 3D, Euler...
A granular multiphase model has been used to evaluate the action of differently sized particles on t...
A new method for the reconstruction of the physical characteristics of dilute pyroclastic density cu...
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 multiphase thermo fluid dynamic model has been improved to assess the effect of a range of particl...
Multiphase flow models represent valuable tools for the study of the complex, non-equilibrium dynami...
Pyroclastic density currents (PDCs) are mixtures of twocomponents, namely solid particles and fluid ...
A multi-particle thermo-fluid dynamic model was developed to assess the dynamics of the transient t...
Integrating field observations and rock-magnetic measurements, we report how a turbulent pyroclastic...
In the context of a study on pyroclastic flow hazards in caldera settings, we have analyzed the role...
This chapter summarizes the principal experimental and theoretical approaches used to investigate th...
This paper describes a numerical modeling approach that can be used to provide estimates of air conc...