The recognition and localisation of magmatic fluids are pre-requisites for evaluating the volcano hazard of the highly urbanized area of Mt. Vesuvius. Here we show evidence and constraints for the volumetric estimation of magmatic fluids underneath this sleeping volcano. We use Receiver Functions for teleseismic data recorded at a temporary broad band station installed on the volcano to constrain the S-wave velocity structure in the crust. Receiver Functions are analyzed and inverted using the Neighbourhood Algorithm approach. The 1D S-velocity profile is jointly interpreted and discussed with a new Vp and Vp/Vs image obtained by applying double difference tomographic techniques to local earthquakes. Seismologic data define the geometry of ...
A multidisciplinary project for the investigation of Mt. Vesuvius Structure was started in 1993. The...
One- and two-dimensional V-p models were obtained by TomoVes experiment, all characterized by low V-...
We present a high resolution 3D model of S-wave attenuation (Q −1 S ) for the volcanic structure of ...
The recognition and localisation of magmatic fluids are pre-requisites for evaluating the volcano ha...
<p>A high-resolution image of the compressional wave velocity and density structure in the shallow e...
A research project to define the feeding system of the Vesuvius volcano and the upper crustal struct...
A high-resolution seismic tomography of Mt.Vesuvius was started in May 1994, with the aim of reconst...
Abstract We present new results on the velocity structure of the Somma^Vesuvius volcano,obtained by...
A high resolution P-wave image of Mt. Vesuvius edifice has been derived from simultaneous inversion ...
The seismic velocity and attenuation tomography images, calculated inverting respectively P-wave tr...
A multidisciplinary project for the investigation of Mt. Vesuvius Structure was started in 1993. The...
One- and two-dimensional VP models were obtained by TomoVes experiment, all characterized by low VP ...
A multidisciplinary project for the investigation of Mt. Vesuvius Structure was started in 1993. The...
One- and two-dimensional V-p models were obtained by TomoVes experiment, all characterized by low V-...
We present a high resolution 3D model of S-wave attenuation (Q −1 S ) for the volcanic structure of ...
The recognition and localisation of magmatic fluids are pre-requisites for evaluating the volcano ha...
<p>A high-resolution image of the compressional wave velocity and density structure in the shallow e...
A research project to define the feeding system of the Vesuvius volcano and the upper crustal struct...
A high-resolution seismic tomography of Mt.Vesuvius was started in May 1994, with the aim of reconst...
Abstract We present new results on the velocity structure of the Somma^Vesuvius volcano,obtained by...
A high resolution P-wave image of Mt. Vesuvius edifice has been derived from simultaneous inversion ...
The seismic velocity and attenuation tomography images, calculated inverting respectively P-wave tr...
A multidisciplinary project for the investigation of Mt. Vesuvius Structure was started in 1993. The...
One- and two-dimensional VP models were obtained by TomoVes experiment, all characterized by low VP ...
A multidisciplinary project for the investigation of Mt. Vesuvius Structure was started in 1993. The...
One- and two-dimensional V-p models were obtained by TomoVes experiment, all characterized by low V-...
We present a high resolution 3D model of S-wave attenuation (Q −1 S ) for the volcanic structure of ...