Analogue experiments in part I led to the conclusion that pyroclastic flows depositing very highgrade ignimbrite move as dilute suspension currents. In the thermo–fluid–dynamical model developed, the degree of cooling of expanded turbulent pyroclastic flows dynamically evolves in response to entrainment of air and mass loss to sedimentation. Initial conditions of the currents are derived from column-collapse modeling for magmas with an initial H2O content of 1–3 wt.% erupting through circular vents and caldera ring-fissures. The flows spread either longitudinally or radially from source up to a runout distance that increases with higher mass flux but decreases with higher gas content, temperature, bottom slope and coarser initial grain size...
Pyroclastic Density Currents (PDCs) are rapidly moving, high-temperature currents of heterogeneous...
This chapter summarizes the principal experimental and theoretical approaches used to investigate th...
[1] A two layer model for the formation of dense pyroclastic basal flows from dilute, collapsing vol...
Analogue experiments in part I led to the conclusion that pyroclastic flows depositing very high-gra...
International audienceDeposits of pyroclastic density currents (PDCs) often contain accidental lithi...
Eruption columns consist of two components. The lower gas thrust component results from decompressio...
The thermal evolution of pyroclastic density currents (PDCs) is the result of entrainment of ambient...
The 2.08-Ma Cerro Galán Ignimbrite (CGI) represents a >630-km3 dense rock equivalent (VEI 8) eruptio...
Pyroclastic currents are the deadliest hazard associated with explosive volcanic eruptions. These gr...
Pyroclastic flows are the most devastating phenomena of explosive volcanic eruptions. These hazardou...
During short lived volcanic eruptions, dilute, turbulent pyroclastic density currents are often obse...
Large-scale experiments generating ground-hugging multiphase flows were carried out with the aim of ...
This paper deals with ground-hugging, gas-pyroclast currents from explosive volcanic eruptions and t...
Small-scale pyroclastic density currents (PDCs) associated with the AD 472 (Pollena) eruption of Som...
The mechanisms controlling the transport of pyroclasts in a plinian-type eruption column are discuss...
Pyroclastic Density Currents (PDCs) are rapidly moving, high-temperature currents of heterogeneous...
This chapter summarizes the principal experimental and theoretical approaches used to investigate th...
[1] A two layer model for the formation of dense pyroclastic basal flows from dilute, collapsing vol...
Analogue experiments in part I led to the conclusion that pyroclastic flows depositing very high-gra...
International audienceDeposits of pyroclastic density currents (PDCs) often contain accidental lithi...
Eruption columns consist of two components. The lower gas thrust component results from decompressio...
The thermal evolution of pyroclastic density currents (PDCs) is the result of entrainment of ambient...
The 2.08-Ma Cerro Galán Ignimbrite (CGI) represents a >630-km3 dense rock equivalent (VEI 8) eruptio...
Pyroclastic currents are the deadliest hazard associated with explosive volcanic eruptions. These gr...
Pyroclastic flows are the most devastating phenomena of explosive volcanic eruptions. These hazardou...
During short lived volcanic eruptions, dilute, turbulent pyroclastic density currents are often obse...
Large-scale experiments generating ground-hugging multiphase flows were carried out with the aim of ...
This paper deals with ground-hugging, gas-pyroclast currents from explosive volcanic eruptions and t...
Small-scale pyroclastic density currents (PDCs) associated with the AD 472 (Pollena) eruption of Som...
The mechanisms controlling the transport of pyroclasts in a plinian-type eruption column are discuss...
Pyroclastic Density Currents (PDCs) are rapidly moving, high-temperature currents of heterogeneous...
This chapter summarizes the principal experimental and theoretical approaches used to investigate th...
[1] A two layer model for the formation of dense pyroclastic basal flows from dilute, collapsing vol...