Abstract
AbstractThe reconnaissance, mapping and analysis of kinematic features of slow-moving landslides evolving along medium-deep sliding surfaces in urban areas can be a difficult task due to the presence and interactions of/with anthropic structures/infrastructures and human activities that can conceal morphological signs of landslide activity. The paper presents an integrated approach to investigate the boundaries, type of movement, kinematics and interactions (in terms of damage severity distribution) with the built environment of a roto-translational slow-moving landslide affecting the historic centre of Lungro town (Calabria region, southern Italy). For this purpose, ancillary multi-source data (e.g. geological-geomorphological features and geotechnical properties of geomaterials), both conventional inclinometer monitoring and innovative non-invasive remote sensing (i.e. A-DInSAR) displacement data were jointly analyzed and interpreted to derive the A-DInSAR-geotechnical velocity (DGV) map of the landslide. This result was then cross-compared with detailed information available on the visible effects (i.e. crack pattern and width) on the exposed buildings along with possible conditioning factors to displacement evolution (i.e. remedial works, sub-services, etc.). The full integration of multi-source data available at the slope scale, by maximizing each contribution, provided a comprehensive outline of kinematic-geometric landslide features that were used to investigate the damage distribution and to detect, if any, anomalous locations of damage severity and relative possible causes. This knowledge can be used to manage landslide risk in the short term and, in particular, is propaedeutic to set up an advanced coupled geotechnical-structural model to simulate both the landslide displacements and the behavior of interacting buildings and, therefore, to implement appropriate risk mitigation strategies over medium/long period.
Funder
Università degli Studi di Salerno
Publisher
Springer Science and Business Media LLC
Subject
Geotechnical Engineering and Engineering Geology
Reference81 articles.
1. Abolmasov B, Milenkovic S, Jelisavac B, Radic Z (2015) The analysis of landslide dynamics based on automated GNSS monitoring—a case study. Engi Geol Soc Territory Landslide Processes 2:143–146
2. Antronico L, Petrucci O, Sorriso-Valvo M (1996) I fenomeni franosi nella tavoletta “Montalto Uffugo” (CS) risultati inattesi dall’analisi delle relazioni tra morfometria e tipologia delle frane e litologia dei versanti. Geol Appl Idrogeol 31(4):187–201
3. Antronico L, Borrelli L, Coscarelli R, Gullà G (2015) Time evolution of landslide damages to buildings: the case study of Lungro (Calabria, southern Italy). Bull Eng Geol Environ 74(1):47–59
4. Antronico L, Borrelli L, Peduto D, Fornaro G, Gullà G, Paglia L, Zeni G (2013) Conventional and innovative techniques for the monitoring of displacements in landslide affected area. Landslide science and practice. Springer, Berlin, pp 125–131
5. Auflič JM, Mikoš M, Verbovšek T, Arbanas Ž, Mihalić Arbanas S (2018) 3rd Regional Symposium on Landslides in the Adriatic-Balkan Region (3rd ReSyLAB)—a final report (Conference Paper). Landslides 15(2):381–384
Cited by
31 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献