Applying SLAM-Based LiDAR and UAS Technologies to Evaluate the Rock Slope Stability of the Grotta Paglicci Paleolithic Site (Italy)

Author:

Beltramone Luisa1ORCID,De Lucia Vivien1ORCID,Ermini Andrea12ORCID,Innocenti Matteo1,Silvestri Daniele1ORCID,Rindinella Andrea1ORCID,Ronchitelli Annamaria3,Ricci Stefano3,Boschin Francesco3ORCID,Salvini Riccardo1ORCID

Affiliation:

1. Department of Environment, Earth and Physical Sciences and Centre of Geotechnologies CGT, University of Siena, Via Vetri Vecchi 34, 52027 San Giovanni Valdarno, Italy

2. National PhD Program in Space Science and Technology, University of Trento, Via Calepina 14, 38122 Trento, Italy

3. Department of Environment, Earth and Physical Sciences and Research Unit of Prehistory and Anthropology, University of Siena, Via Laterina 8, 53100 Siena, Italy

Abstract

This study focuses on slope stability and geological hazard analyses at the Italian Paleolithic site of Grotta Paglicci. The site is characterized by a cave that contains rich archaeological and anthropological finds, spanning various Paleolithic periods, and includes faunal remains, lithic artifacts, human burials, ornaments, mobiliary art objects, and unique Paleolithic wall paintings. The study employs a multi-technique approach that includes topographic surveys carried out by the robotic total station and GNSS receivers, photogrammetric acquisitions with an unmanned aerial system, 3D SLAM-based LiDAR mapping, and an engineering geological survey. The collected data allowed for the creation of georeferenced 3D models that were utilized in rock slope stability analysis and modeling. The results of this comprehensive survey highlighted how the bedding and joint discontinuities influence rock stability in both the external and internal areas of the cave. The integrated use of SLAM-based LiDAR and photogrammetry has been proven to be an efficient and essential tool in the evaluation of the structural interactions between the external morphology and the cave, thus allowing the proposal of safety measures that will keep the site accessible for future activities.

Funder

University of Trento

uropean Union

Publisher

MDPI AG

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