A multi-scale methodological approach for slow-moving landslide risk mitigation in urban areas, southern Italy

Settimio Ferlisi1, Giovanni Gullà2, Gianfranco Nicodemo1, Dario Peduto1
1Department of Civil Engineering, University of Salerno, Via Giovanni Paolo II, 132, Fisciano, 84084, Salerno, Italy
2Research Institute for Geo-Hydrological Protection, National Research Council of Italy (IRPI-CNR), Rende, Via Cavour 4/6, Cosenza, Italy

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Amodio Morelli L, Bonardi G, Colonna V, Dietrich D, Giunta G, Ippolito F, Liguori V, Lorenzoni S, Paglionico A, Perrone V, Piccarreta G, Russo M, Scandone P, Zanetti-Lorenzoni E, Zuppetta A (1976) L’Arco Calabro-Peloritano nell’orogene appenninico-maghrebide. Memorie della Società Geologica Italiana 17:1–60 (in Italian)

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 Applic Idrogeol 31(4):187–201 (in Italian)

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

Bianchini S, Herrera G, Mateos RM, Notti D, Garcia I, Mora O, Moretti S (2013) Landslide activity maps generation by means of persistent scatterer interferometry. Remote Sens 5(12):6198–6222

Borrelli L, Nicodemo G, Ferlisi S, Peduto D, Di Nocera S, Gullà G (2018) Geology, slow-moving landslides, and damages to buildings in the Verbicaro area (north-western Calabria region, southern Italy). J Maps 14(2):32–44

Burland JB (1995) Assessment of risk of damage to buildings due to tunnelling and excavation. Invited special lecture, In: Proc of the 1st Int Conf on Earth Geot Eng, IS-Tokyo’95, pp 1189–1201

Burland JB, Broms BB, de Mello VFB (1977) Behaviour of foundations and structures. Proc 9th Int Conf SMFE Tokyo 2:495–546

Calò F, Calcaterra D, Iodice A, Parise M, Ramondini M (2012) Assessing the activity of a large landslide in southern Italy by ground-monitoring and SAR interferometric techniques. Int J Remote Sens 33(11):3512–3530

Calò F, Ardizzone F, Castaldo R, Lollino P, Tizzani P, Guzzetti F, Lanari R, Angeli MC, Pontoni F, Manunta M (2014) Enhanced landslide investigations through advanced A-DInSAR techniques: the Ivancich case study, Assisi, Italy. Remote Sens Environ 142:69–82. https://doi.org/10.1016/j.rse.2013.11.003

Calvello M, Peduto D, Arena L (2017) Combined use of statistical and DInSAR data analyses to define the state of activity of slow-moving landslides. Landslides 14(2):473–489

Cascini L (2015) Geotechnics for urban planning and land use management. Italian Geotech J 49(4):7–62

Cascini L, Fornaro G, Peduto D (2009) Analysis at medium scale of low-resolution DInSAR data in slow-moving landslide-affected areas. ISPRS J Photogramm Remote Sens 64(6):598–611

Cascini L, Fornaro G, Peduto D (2010) Advanced low- and full-resolution DInSAR map generation for slow-moving landslide analysis at different scales. Eng Geol 112:29–42. https://doi.org/10.1016/j.enggeo.2010.01.003

Cascini L, Peduto D, Pisciotta G, Arena L, Ferlisi S, Fornaro G (2013a) The combination of DInSAR and facility damage data for the updating of slow-moving landslide inventory maps at medium scale. Nat Hazards Earth Syst Sci 13:1527–1549. https://doi.org/10.5194/nhess-13-1527-2013

Cascini L, Peduto D, Reale D, Arena L, Ferlisi S, Fornaro G (2013b) Detection and monitoring of facilities exposed to subsidence phenomena via past and current generation SAR sensors. J Geophys Eng 10:064001. https://doi.org/10.1088/1742-2132/10/6/064001

Casu F, Manzo M, Lanari R (2006) A quantitative assessment of the SBAS algorithm performance for surface deformation retrieval from DInSAR data. Remote Sens Environ 102(3–4):195–210

Corominas J, van Westen C, Frattini P, Cascini L, Malet J-P, Fotopoulou S, Catani F, Van Den Eeckhaut M, Mavrouli O, Agliardi F, Pitilakis K, Winter MG, Pastor M, Ferlisi S, Tofani V, Hervàs J, Smith JT (2014) Recommendations for the quantitative analysis of landslide risk. Bull Eng Geol Environ 73(2):209–263

Cotecchia F, Santaloia F, Lollino P, Vitone C, Pedone G, Bottiglieri O (2016) From a phenomenological to a geomechanical approach to landslide hazard analysis. Euro J Environ Civil Eng 20(9):1004–1031

Cruden DM, Varnes DJ (1996) Landslide types and processes. In: Turner AK, Schuster RL (eds), Landslides investigation and mitigation. Transportation research board, US National Research Council, Washington DC, Special Report 247, Chapter 3, pp 36–75

Fell R, Ho KKS, Lacasse S, Leroi E (2005) A framework for landslide risk assessment and management. In: Hungr O, Fell R, Couture R, Eberhardt E (eds) Landslide risk management. Taylor and Francis, London, pp 3–26

Fell R, Corominas J, Bonnard Ch, Cascini L, Leroi E, Savage W (2008) Guidelines for landslide susceptibility, hazard and risk zoning for land use planning. Eng Geol 102(3–4):85–98

Ferlisi S, De Chiara G (2016) Risk analysis for rainfall-induced slope instabilities in coarse-grained soils: practice and perspectives in Italy. In: Aversa S, Cascini L, Picarelli L, Scavia C (eds) Landslides and engineered slopes. Experience, theory and practice. Proceedings of the 12th international symposium on landslides—Naples, Italy, vol 1. CRC Press/Balkema, Taylor & Francis Group, Leiden, pp 137–154

Ferlisi S, Peduto D, Gullà G, Nicodemo G, Borrelli L, Fornaro G (2015) The use of DInSAR data for the analysis of building damage induced by slow-moving landslides. In: Lollino G, Giordan D, Crosta GB, Corominas J, Azzam R, Wasowski J, Sciarra N (eds) Engineering geology for society and territory, vol 2. Springer International Publishing, Cham, pp 1835–1839.  https://doi.org/10.1007/978-3-319-09057-3_325

Ferlisi S, Nicodemo G, Peduto D (2018) Empirical fragility curves for masonry buildings in slow-moving landslide-affected areas of southern Italy. In: Kallel A, Ksibi M, Ben Dhia H, Khélifi N (eds) Recent advances in environmental science from the Euro-Mediterranean and surrounding regions, EMCEI 2017. Advances in science, technology and innovation (IEREK interdisciplinary series for sustainable Development). Springer, Cham, pp 1825–1828. https://doi.org/10.1007/978-3-319-53498-5_102

Ferretti A, Prati C, Rocca F (2001) Permanent scatterers in SAR interferometry. IEEE Trans Geosci Remote Sens 39(1):8–20

Fornaro G, Reale D, Serafino F (2009) Four-dimensional SAR imaging for height estimation and monitoring of single and double scatterers. IEEE Trans Geosci Remote Sens 47(1):224–237

Galli A, di Prisco C (2013) Displacement-based design procedure for slope-stabilizing piles. Can Geotech J 50(1):41–53

Greco R, Sorriso-Valvo M, Catalano E (2007) Logistic regression analysis in mass movement susceptibility: the aspromonte case study, Calabria, Italy. Eng Geol 89(1–12):47–66

Greco R, Gullà G, Sorriso-Valvo M (2010) Metodologia base, approfondita a partire dal PAI, per la valutazione indicizzata di pericolosità, vulnerabilità e rischio. POR Calabria 2000–2006—Misura 1.4 Sistemi Insediativi, CNR-IRPI, pp 60 (in Italian)

Gullà G, Ferlisi S, Nicodemo G, Peduto D (2017a) Un approccio metodologico per la gestione del rischio in aree urbane affette da frane a cinematica lenta. In: Moraci N, Soccodato C (eds) La geotecnica nella conservazione e tutela del patrimonio costruito, proceeding of the 26th Italian geotechnical congress, Rome 20–22 June 2017, vol 2. © 2017 Associazione Geotecnica Italiana, Rome, pp 595–603

Gullà G, Peduto D, Borrelli L, Antronico L, Fornaro G (2017b) Geometric and kinematic characterization of landslides affecting urban areas: the Lungro case study (Calabria, southern Italy). Landslides 14(1):171–188

Gullà G, Aceto L, Antronico L, Borrelli L, Coscarelli R, Perri F (2018) A smart geotechnical model in emergency conditions: a case study of a medium deep landslide in southern Italy. Eng Geol 234:138–152. https://doi.org/10.1016/j.enggeo.2018.01.008

Herrera G, Gutiérrez F, García-Davalillo JC, Guerrero J, Notti D, Galve JP, Fernández-Merodo JA, Cooksley G (2013) Multi-sensor advanced DInSAR monitoring of very slow landslides: the Tena Valley case study (Central Spanish Pyrenees). Remote Sens Environ 128:31–43. https://doi.org/10.1016/j.rse.2012.09.020

Ho KKS (2004) Recent advances in geotechnology for slope stabilization and landslide mitigation—perspective from Hong Kong. In: Lacerda W, Ehrlich M, Fontoura SAB, Sayão ASF (eds) Landslides: evaluation and stabilization. Proceedings of the ninth international symposium on landslides, Rio de Janeiro (Brazil), June 28–July 2, 2004, vol 2. © 2014 Taylor and Francis Group, London, pp 1507–1560

HSP-LR (2001) Hydro-geological setting plan—landslide risk excerpt, Calabria region, http://old.regione.calabria.it/abr/allegati/PAI/2001/PAI_originario/Home/html/scelta.htm (last access: 8 June 2019)

Hungr O, Evans SG, Bovis MJ, Hutchinson JN (2001) A review of the classification of landslides of the flow-type. Environ Eng Geosci 7(3):221–238

Hungr O, Corominas J, Eberhardt E (2005) Estimating landslide motion mechanism, travel distance and velocity. In: Hungr O, Fell R, Couture R, Eberhardt E (eds) Landslide risk management. Taylor and Francis, London, pp 99–128

Lanari R, Casu F, Manzo M, Zeni G, Berardino P, Manunta M, Pepe A (2007) An overview of the small baseline subset algorithm: a DInSAR technique for surface deformation analysis. Pure Appl Geophys 164:637–661. https://doi.org/10.1007/s00024-007-0192-9

Leroi E, Bonnard Ch, Fell R, McInnes R (2005) Risk assessment and management. In: Hungr O, Fell R, Couture R, Eberhardt E (eds) Landslide risk management. Taylor and Francis, London, pp 159–198

Mansour MF, Morgenstern NI, Martin CD (2011) Expected damage from displacement of slow-moving slides. Landslides 8(1):117–131

Manzo M, Ricciardi GP, Casu F, Ventura G, Zeni G, Borgstrom S, Berardino P, Del Gaudio C, Lanari R (2006) Surface deformation analysis in the Ischia Island (Italy) based on spaceborne radar interferometry. J Volcanol Geotherm Res 151(4):399–416

MATTM (2010) Piano Straordinario di Telerilevamento Ambientale (PSTA), Linee guida per l’analisi dei dati intereferometrici satellitari in aree soggette a dissesti idrogeologici, Italian ministry of the environment and protection of land and sea (MATTM), pp 108, (in Italian)

Mavrouli O, Fotopoulou S, Pitilakis K, Zuccaro G, Corominas J, Santo A, Cacace F, De Gregorio D, Di Crescenzo G, Foerster E, Ulrich T (2014) Vulnerability assessment for reinforced concrete buildings exposed to landslides. Bull Eng Geol Environ 73(2):265–289

Negulescu C, Ulrich A, Baills A, Seyedi DM (2014) Fragility curves for masonry structures submitted to permanent ground displacements and earthquakes. Nat Hazards 74(3):1461–1474

Ng KC, Parry S, King JP, Franks CAM, Shaw R 2002 Guidelines for natural terrain hazard studies. Special Project Report No. SPR 1/2002, Geotechnical engineering office, pp 136

Nicodemo G, Peduto D, Ferlisi S, Gullà G, Borrelli L, Fornaro G, Reale D (2017) Analysis of building vulnerability to slow-moving landslides via A-DInSAR and damage survey data. In: Mikos M, Tiwari B, Yin Y, Sassa K (eds) Advancing culture of living with landslides, proceedings of the 4th world landslide forum—WLF 2017, Ljubljana, Slovenia, May 29–June 02, 2017, vol 2. © 2017 Springer International Publishing AG 2017, Cham, pp 889–907.  https://doi.org/10.1007/978-3-319-53498-5_102

Nicodemo G, Peduto D, Ferlisi S, Gullà G, Reale D, Fornaro G (2018) DInsSAR data integration in vulnerability analyses of buildings exposed to slow-moving landslides. In: Proceedings of the 38th annual IEEE international geoscience and remote sensing symposium (IGARSS 2018), Valencia, Spain; 22–27 July 2018, pp 6107–6110

Nicodemo G, Ferlisi S, Peduto D, Aceto L, Gullà G (2020) Damage to masonry buildings interacting with slow-moving landslides: a numerical analysis. In: Calvetti F, Cotecchia F, Galli A, Jommi C (eds) Geotechnical Research for Land Protection and Development. CNRIG 2019. Lecture Notes in Civil Engineering, vol 40. Springer, Cham,  pp 52–61.  https://doi.org/10.1007/978-3-030-21359-6_6

Palmisano F, Vitone C, Cotecchia F (2018) Assessment of landslide damage to buildings at the Urban scale. J Performa Constr Facil ASCE 32(4):04018055. https://doi.org/10.1061/(ASCE)CF.1943-5509.0001201

Peduto D, Cascini L, Arena L, Ferlisi S, Fornaro G, Reale D (2015) A general framework and related procedures for multiscale analyses of DInSAR data in subsiding urban areas. ISPRS J Photogramm Remote Sens 105:186–210. https://doi.org/10.1016/j.isprsjprs.2015.04.001

Peduto D, Borrelli L, Antronico L, Gullà G, Fornaro G (2016a) An integrated approach for landslide characterization in a historic centre. In: Aversa S, Cascini L, Picarelli L, Scavia C (eds) Landslides and engineered slopes. experience, theory and practice, proceedings of the 12th international symposium on landslides, Naples, 12–19 June 2016, CRC Press/Balkema, P.O. Box 11320, 2301 EH Leiden, The Netherlands, © 2016 Associazione Geotecnica Italiana, Rome, Italy, Vol 3, pp 1575–1581

Peduto D, Pisciotta G, Nicodemo G, Arena L, Ferlisi S, Gullà G, Borrelli L, Fornaro G, Reale D (2016b) A procedure for the analysis of building vulnerability to slow-moving landslides. In: Daponte P, Simonelli AL (eds) Proc of the 1st IMEKO TC4 International Workshop on Metrology for Geotechnics, Benevento, Italy, 17–18 March 2016, Curran Associates, Inc., Red Hook, NY 12571, USA © 2016 International Measurement Confederation (IMEKO), Budapest, Hungary, pp 248–254

Peduto D, Ferlisi S, Nicodemo G, Reale D, Pisciotta G, Gullà G (2017) Empirical fragility and vulnerability curves for buildings exposed to slow-moving landslides at medium and large scales. Landslides 14(6):1993–2007

Peduto D, Nicodemo G, Caraffa M, Gullà G (2018) Quantitative analysis of consequences to masonry buildings interacting with slow-moving landslide mechanisms: a case study. Landslides 15(10):2017–2030

Roberds W (2005) Estimating temporal and spatial variability and vulnerability. In: Hungr O, Fell R, Couture R, Eberhardt E (eds) Landslide risk management. Taylor and Francis, London, pp 129–157

Shinozuka M, Feng MQ, Lee J, Naganuma T (2000) Statistical analysis of fragility curves. J Eng Mech 126(12):1224–1231

Son M, Cording EJ (2005) Estimation of building damage due to excavation-induced ground movements. J Geotech Geoenviron Eng 131(2):162–177

Sorriso-Valvo M (1993) The geomorphology of Calabria, a sketch. Geogr Fisica Dinamica Quat 16(1):75–80 (in Italian)

Tofani V, Raspini F, Catani F, Casagli N (2014) Persistent scatterer interferometry (PSI) technique for landslide characterization and monitoring. In: Sassa K, Canuti P, Yueping Y (eds) Landslide science for safer geoenvironment methods of landslide studies 2. Springer International Publishing, Cham, pp 351–357

van Westen CJ, Castellanos Abella EA, Sekhar LK (2008) Spatial data for landslide susceptibility, hazards and vulnerability assessment: an overview. Eng Geol 102(3–4):112–131

Wasowski J, Bovenga F (2014) Investigating landslides and unstable slopes with satellite multi temporal interferometry: current issues and future perspectives. Eng Geol 174:103–138. https://doi.org/10.1016/j.enggeo.2014.03.003

Zhang LM, Ng AMY (2005) Probabilistic limiting tolerable displacements for serviceability limit state design of foundations. Géotechnique 55(2):151–161