Magma migration through the brittle crust from depth occurs by the propagation of hydraulic fractures or dikes. Volcanic eruptions occur at the last stage if and when a propagating dike reaches the surface. Dike propagation involves complex physics because of several processes that are simultaneously occurring such as viscous flow of magma, rock fracture, elastic deformation of the host rock, and potentially large changes of the physical properties of the magma (crystallization, degassing, solidification, etc.). Currently the most practical way in the field or in terms of field measurements to follow the migration of magma before it reaches the surface is the analysis of the seismicity generated; nevertheless, a physical model that quantita...
The ascent of magma to the Earth's surface is commonly modeled by assuming a fixed dike or flow geom...
Magma flow in a dike rising in a crack whose strike runs from a highland or a ridge to an adjacent l...
We have modeled magma flow in a dike rising in a crack whose strike runs from a highland or ridge to...
International audienceMagma migration through the brittle crust from depth occurs by the propagation...
Magma transport in brittle rock occurs by diking. Understanding the dynamics of diking and its obser...
International audienceMost observations of seismicity rate during dike propagation on basaltic volca...
International audienceMost observations of seismicity rate during dike propagation on basaltic volca...
International audienceWe developed a hybrid numerical model of dike propagation in two dimensions so...
Magma is transported in the crust mainly by dike intrusions. In volcanic areas, dikes can ascend tow...
We developed a hybrid numerical model of dike propagation in two dimensions solving both for the mag...
This thesis addresses dike propagation from various vantage points, in order to construct a holisti...
An effusive volcanic eruption results from a sequence of different processes, such as the pressuriza...
We investigate the conditions under which magma prefers to migrate through the crust via a dike or a...
An effusive volcanic eruption results from a sequence of different processes, such as the pressuriza...
The ascent of magma to the Earth's surface is commonly modeled by assuming a fixed dike or flow geom...
Magma flow in a dike rising in a crack whose strike runs from a highland or a ridge to an adjacent l...
We have modeled magma flow in a dike rising in a crack whose strike runs from a highland or ridge to...
International audienceMagma migration through the brittle crust from depth occurs by the propagation...
Magma transport in brittle rock occurs by diking. Understanding the dynamics of diking and its obser...
International audienceMost observations of seismicity rate during dike propagation on basaltic volca...
International audienceMost observations of seismicity rate during dike propagation on basaltic volca...
International audienceWe developed a hybrid numerical model of dike propagation in two dimensions so...
Magma is transported in the crust mainly by dike intrusions. In volcanic areas, dikes can ascend tow...
We developed a hybrid numerical model of dike propagation in two dimensions solving both for the mag...
This thesis addresses dike propagation from various vantage points, in order to construct a holisti...
An effusive volcanic eruption results from a sequence of different processes, such as the pressuriza...
We investigate the conditions under which magma prefers to migrate through the crust via a dike or a...
An effusive volcanic eruption results from a sequence of different processes, such as the pressuriza...
The ascent of magma to the Earth's surface is commonly modeled by assuming a fixed dike or flow geom...
Magma flow in a dike rising in a crack whose strike runs from a highland or a ridge to an adjacent l...
We have modeled magma flow in a dike rising in a crack whose strike runs from a highland or ridge to...