An integrated methodology based on traditional field and remote surveys such as terrestrial laser scanning and terrestrial infrared thermography is proposed, with the aim of defining susceptibility scenarios connected to rock slopes affected by instability processes. The proposed methodology was applied to a rock slope threatening a coastal panoramic roadway located in western Elba Island (Livorno district, central Italy). The final aim of the methodology was to obtain an accurate three-dimensional rock mass characterization in order to detect the potentially more hazardous rock mass portions, calculate their volume, and collect all the required geomechanical and geometrical parameters to perform a detailed stability analysis. The proposed ...
The methods for understanding rock instability mechanisms and for evaluating potential destructive s...
With the increasing awareness to the geological risks, the study of rock slope stability plays a key...
Workplace safety in quarries can be evaluated and improved through an accurate mapping of localized ...
An integrated methodology based on traditional field and remote surveys such as terrestrial laser sc...
The primary objective of this paper is to present a semiautomatic procedure that, integrated with tr...
This paper is aimed at presenting a semiautomatic procedure that, coupled with conventional methods,...
Natural rock slopes require accurate engineering–geological characterization to determine their stab...
The rock mass structure determines the possible unstable blocks that can induce rock fall phenomena....
Rock cliff monitoring to evaluate related rockfall hazard requires a deep knowledge of the geometry ...
Engineering rock mass classification is usually the first stage in the analysis and characterization...
The rock mass structure determines the possible unstable blocks that can induce rock fall phenomena....
In this work, we describe a comprehensive approach aimed at assessing the slope stability conditions...
An integrated approach to the geomechanical characterization of coastal sea cliffs was applied at Mt...
The methods for understanding rock instability mechanisms and for evaluating potential destructive s...
With the increasing awareness to the geological risks, the study of rock slope stability plays a key...
Workplace safety in quarries can be evaluated and improved through an accurate mapping of localized ...
An integrated methodology based on traditional field and remote surveys such as terrestrial laser sc...
The primary objective of this paper is to present a semiautomatic procedure that, integrated with tr...
This paper is aimed at presenting a semiautomatic procedure that, coupled with conventional methods,...
Natural rock slopes require accurate engineering–geological characterization to determine their stab...
The rock mass structure determines the possible unstable blocks that can induce rock fall phenomena....
Rock cliff monitoring to evaluate related rockfall hazard requires a deep knowledge of the geometry ...
Engineering rock mass classification is usually the first stage in the analysis and characterization...
The rock mass structure determines the possible unstable blocks that can induce rock fall phenomena....
In this work, we describe a comprehensive approach aimed at assessing the slope stability conditions...
An integrated approach to the geomechanical characterization of coastal sea cliffs was applied at Mt...
The methods for understanding rock instability mechanisms and for evaluating potential destructive s...
With the increasing awareness to the geological risks, the study of rock slope stability plays a key...
Workplace safety in quarries can be evaluated and improved through an accurate mapping of localized ...