An immersed boundary technique suitable for the solution of multiphase compressible equations of gas-particle flows of volcanic origin over complex 2D and 3D topographies has been developed and applied. This procedure combines and extends different existing methods designed for incompressible flows. Furthermore, the extension to compressible multiphase flows is achieved through a flux correction term in the mass continuity equations of the immersed cells that accounts for density variations in the partial volumes. The technique is computationally accurate and inexpensive, if compared to the use and implementation of the finite-volume technique on unstructured meshes. The first applications that we consider are the simulations of pyroclastic...
A granular multiphase model has been used to evaluate the action of differently sized particles on t...
International audienceA new depth-averaged model has been developed for the simulation of both conce...
Numerical simulations of column collapse and pyroclastic density current (PDC) scenarios at Vesuvius...
An immersed boundary technique suitable for the solution of multiphase compressible equations of gas...
The numerical modeling of compressible multiphase flows is of high interest for several engineering ...
Pyroclastic density currents are ground hugging, hot, gas-particle flows representing the most hazar...
A new parallel code for the simulation of the transient, 3D dispersal of volcanic particles in the a...
Explosive volcanic eruption events, in which large quantities of hot gas and ash are expelled high i...
The dynamics of the May 18, 1980 lateral blast at Mount St. Helens, Washington (USA), were studied b...
Pyroclastic density currents (PDCs) are gas-particle flows generated during explosive eruptions, wh...
This chapter summarizes the principal experimental and theoretical approaches used to investigate th...
An improved version of the PDAC (Pyroclastic Dispersal Analysis Code) numerical model for the simula...
Multiphase flow models represent valuable tools for the study of the complex, non-equilibrium dynami...
A granular multiphase model has been used to evaluate the action of differently sized particles on t...
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...
International audienceA new depth-averaged model has been developed for the simulation of both conce...
Numerical simulations of column collapse and pyroclastic density current (PDC) scenarios at Vesuvius...
An immersed boundary technique suitable for the solution of multiphase compressible equations of gas...
The numerical modeling of compressible multiphase flows is of high interest for several engineering ...
Pyroclastic density currents are ground hugging, hot, gas-particle flows representing the most hazar...
A new parallel code for the simulation of the transient, 3D dispersal of volcanic particles in the a...
Explosive volcanic eruption events, in which large quantities of hot gas and ash are expelled high i...
The dynamics of the May 18, 1980 lateral blast at Mount St. Helens, Washington (USA), were studied b...
Pyroclastic density currents (PDCs) are gas-particle flows generated during explosive eruptions, wh...
This chapter summarizes the principal experimental and theoretical approaches used to investigate th...
An improved version of the PDAC (Pyroclastic Dispersal Analysis Code) numerical model for the simula...
Multiphase flow models represent valuable tools for the study of the complex, non-equilibrium dynami...
A granular multiphase model has been used to evaluate the action of differently sized particles on t...
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...
International audienceA new depth-averaged model has been developed for the simulation of both conce...
Numerical simulations of column collapse and pyroclastic density current (PDC) scenarios at Vesuvius...