The 2001 and 2002–2003 flank eruptions on Mount Etna (Italy) were characterized by intense explosive activity which led to the formation of two large monogenetic scoria cones (one from each eruption) on the upper southern flank of the volcano. Continuous monitoring of Etna, especially during flank eruptions, has provided detailed information on the growth of these cones. They differ in genesis, shape, and size. A set of high resolution (1 m) digital elevation models (DEMs) derived from light detection and ranging (LIDAR) data collected during four different surveys (2004, 2005, 2006, and 2007) has been used to map morphology and to extract the morphometric parameters of the scoria cones. By comparing LIDAR-derived DEMs with a pre-eruption (...
An application of light detection and ranging (lidar) intensity for the identification and mapping o...
olcanic emissions represent a well-known hazard mainly for aviation safety that can be reduced with ...
An application of LiDAR (Light Detection and Ranging) intensity for the identification and mapping o...
The 2001 and 2002–2003 flank eruptions on Mount Etna (Italy) were characterized by intense explosive...
By using new high-resolution (2 m) digital elevation model derived from the 2005 LiDAR survey of Mt....
Abstract The topography of Mt. Etna, Italy, is subjected to continuous modifications depending on in...
We have undertaken detailed observations of the formation of the `Laghetto´ cinder cone, a new cone ...
We have undertaken detailed observations of the formation of the ‘Laghetto’ cinder cone, a new cone ...
The morphometry of a great number of scoria cones, belonging to volcanic fields of various geodynami...
Morphostructural data derived from Lidar (Light detection and ranging) surveys carried out on Mount ...
The quantification of eruptive activity represents one major challenge in volcanology. Digital comp...
The Island of Vulcano (Aeolian Islands, Southern Italy) consists of several volcanic edifices whose ...
In this paper, we use data obtained from LiDAR measurements during an ash emission event on 15 Novem...
The town of Zafferana Etnea, located on the southeastern slope of Mt. Etna volcano (Italy), has been...
High-resolution digital topography is essential for land management and planning in any type of terr...
An application of light detection and ranging (lidar) intensity for the identification and mapping o...
olcanic emissions represent a well-known hazard mainly for aviation safety that can be reduced with ...
An application of LiDAR (Light Detection and Ranging) intensity for the identification and mapping o...
The 2001 and 2002–2003 flank eruptions on Mount Etna (Italy) were characterized by intense explosive...
By using new high-resolution (2 m) digital elevation model derived from the 2005 LiDAR survey of Mt....
Abstract The topography of Mt. Etna, Italy, is subjected to continuous modifications depending on in...
We have undertaken detailed observations of the formation of the `Laghetto´ cinder cone, a new cone ...
We have undertaken detailed observations of the formation of the ‘Laghetto’ cinder cone, a new cone ...
The morphometry of a great number of scoria cones, belonging to volcanic fields of various geodynami...
Morphostructural data derived from Lidar (Light detection and ranging) surveys carried out on Mount ...
The quantification of eruptive activity represents one major challenge in volcanology. Digital comp...
The Island of Vulcano (Aeolian Islands, Southern Italy) consists of several volcanic edifices whose ...
In this paper, we use data obtained from LiDAR measurements during an ash emission event on 15 Novem...
The town of Zafferana Etnea, located on the southeastern slope of Mt. Etna volcano (Italy), has been...
High-resolution digital topography is essential for land management and planning in any type of terr...
An application of light detection and ranging (lidar) intensity for the identification and mapping o...
olcanic emissions represent a well-known hazard mainly for aviation safety that can be reduced with ...
An application of LiDAR (Light Detection and Ranging) intensity for the identification and mapping o...