Title of article :
Geotechnical characterisation of pyroclastic soils involved in huge flowslides
Author/Authors :
Eduardo Bilotta، نويسنده , , Leonardo Cascini، نويسنده , , Vito Foresta، نويسنده , , Giuseppe Sorbinow ، نويسنده ,
Abstract :
Landslides of the flow type involving granular geo-materials frequently result in
casualties and damage to property because of the long travel distance and the high velocities
that these may attain. This was true for the events that took place in Campania Region
(Southern Italy) in May 1998, involving pyroclastic soils originating from explosive activities
of the Somma-Vesuvius volcano. Although these phenomena have frequently affected various
areas of the Campania region over the last few centuries, there were no useful geological and
geotechnical references available in the aftermath of the May 1998 events. For this reason
Salerno University, which was involved in the scientific management of the emergency, addressed
the issue of acquiring data on the geological, geomorphological and hydrogeological
features of the slopes where the landslides had taken place. The information acquired made it
possible to set up a slope evolution model that is able to interpret, from a geological point of
view, past and more recent landslides that had occurred in the same area. As preliminary
geotechnical analyses had already validated the above model, more detailed investigations
were performed both on the pore pressure regimen of the covers still in place as well as on the
physical and mechanical properties of pyroclastic soils, in saturated and unsaturated conditions.
The present paper begins by discussing the data acquired during the first phase of the
studies and then goes on to illustrate the laboratory results so far obtained with the aid of
approximate procedures. These help advance our knowledge of pyroclastic soils within a
reasonable time frame, thus improving landslide triggering analysis.
Keywords :
pyroclastic soils , Shear strength , unsaturated soils. , flowslides , Soil water characteristic curve
Journal title :
Astroparticle Physics