The sub-glacial Eyjafjoll explosive volcanic eruptions of April and May 2010 are analyzed and quantitatively interpreted by using ground-based weather radar data and the Volcanic Ash Radar Retrieval (VARR) technique. The Eyjafjoll eruptions have been continuously monitored by the Keflavik C-band weather radar, located at a distance of about 155 km from the volcano vent. Considering that the Eyjafjoll volcano is approximately 20 km from the Atlantic Ocean and that the northerly winds stretched the plume toward the mainland Europe, weather radars are the only means to provide an estimate of the total ejected tephra. The VARR methodology is summarized and applied to available radar time series to estimate the plume maximum height, ash particle...
During an eruptive event, the near-real-time monitoring of volcanic explosion onset and its mass fl...
International audienceThe morning of November 23, 2013, a lava fountain formed from the New South-Ea...
International audienceThe morning of November 23, 2013, a lava fountain formed from the New South-Ea...
The sub-glacial Plinian explosive eruption of the Grímsvötn volcano, which occurred on May 2011, is ...
The eruption of the Eyjafjallajokull volcano in April-May 2010 was continuously monitored by the Kef...
The explosive eruption at the summit of sub-glacial Ejyafjallajökull volcano in April-May 2010 was ...
The eruption of the Eyjafjallajökull volcano in April-May 2010 was continuously monitored by the Ke...
The potential of ground-based microwave weather radar systems for volcanic ash cloud detection and q...
The potential of ground-based microwave weather radar systems for volcanic ash cloud detection and ...
The microphysical and dynamical features of volcanic clouds, due to Plinian and sub-Plinian eruption...
The main phase of the moderately sized November 2004 eruption of the Grimsvotn volcano, located in t...
During an eruptive event, the near-real-time monitoring of volcanic explosion onset and its mass flo...
Microphysical and dynamical features of volcanic ash clouds can be quantitatively monitored by using...
Microphysical and dynamical features of volcanic tephra due to Plinian and sub-Plinian eruptions can...
Microphysical and dynamical features of volcanic tephra due to Plinian and sub-Plinian eruptions can...
During an eruptive event, the near-real-time monitoring of volcanic explosion onset and its mass fl...
International audienceThe morning of November 23, 2013, a lava fountain formed from the New South-Ea...
International audienceThe morning of November 23, 2013, a lava fountain formed from the New South-Ea...
The sub-glacial Plinian explosive eruption of the Grímsvötn volcano, which occurred on May 2011, is ...
The eruption of the Eyjafjallajokull volcano in April-May 2010 was continuously monitored by the Kef...
The explosive eruption at the summit of sub-glacial Ejyafjallajökull volcano in April-May 2010 was ...
The eruption of the Eyjafjallajökull volcano in April-May 2010 was continuously monitored by the Ke...
The potential of ground-based microwave weather radar systems for volcanic ash cloud detection and q...
The potential of ground-based microwave weather radar systems for volcanic ash cloud detection and ...
The microphysical and dynamical features of volcanic clouds, due to Plinian and sub-Plinian eruption...
The main phase of the moderately sized November 2004 eruption of the Grimsvotn volcano, located in t...
During an eruptive event, the near-real-time monitoring of volcanic explosion onset and its mass flo...
Microphysical and dynamical features of volcanic ash clouds can be quantitatively monitored by using...
Microphysical and dynamical features of volcanic tephra due to Plinian and sub-Plinian eruptions can...
Microphysical and dynamical features of volcanic tephra due to Plinian and sub-Plinian eruptions can...
During an eruptive event, the near-real-time monitoring of volcanic explosion onset and its mass fl...
International audienceThe morning of November 23, 2013, a lava fountain formed from the New South-Ea...
International audienceThe morning of November 23, 2013, a lava fountain formed from the New South-Ea...