References

. http://geoportale.regione.calabria.it/opendata.
. https://www.geonicolo.it.
. https://www.topographic-map.com.
. https://www.cfd.calabria.it/index.php/dati-stazioni/cartografia.
. http://37.186.240.107:8081/pmapper/map.phtml.
. http://www.cfd.calabria.it/index.php/dati-stazioni/dati-storici.
. https://www.isprambiente.gov.it/Media/carg/calabria.html.
. http://sgi.isprambiente.it/geologia100k/mostra_foglio.aspx?numero_foglio=254.
. http://groupware.sinanet.isprambiente.it/uso-copertura-e-consumo-disuolo/library/consumo- di-suolo.
. http://groupware.sinanet.isprambiente.it/uso-copertura-e-consumo-disuolo/library/copertura-del-suolo/corine-land-cover.
. http://freegisdata.org/place/111051.
A, Høydal O, Paniagua Lopez AP, and Lacasse S. 2018. Retrogressive Thaw Slumps: From Slope Process to the Landscape Sensitivity of Northwestern Canada.
A., Carrara, D’elia B., and Semenza E. 1985. Classificazione e Nomenclatura Dei Fenomeni Franosi. Geol. Appl. E Idrog. Vol. 20, Bari.
A., Carrara, Cardinali M., and Guzzetti F. 1992. Uncertainty in Assessing Landslide Hazard and Risk. ITC Journal, the Netherlands, Vol. 2, 172-183.
A., Carrara, Cardinali M., Guzzetti F., and Reichenbach P. 1995. GIS Techniques in MappingLandslide Hazard. In: Geographical Information Systems in Assessing NaturalHazards. Kluwer Academic Publishers, Netherlands, 135 - 175.
A., CARRARA, CARDINALI M., DETTI R., GUZZETTI F., PASQUI V., and REICHENBACH P. 1990. Geographical Information Systems and Multivariate Model in Landslide Hazard Evaluation. In: Alps 90. A.cancelli (Ed.) 6th Int. Conf. And Field. Workshop on Landslides. Milano, 17 - 28.
A., Hansen. 1984. Landslide Hazard Analysis. In: Brunsden d. E Prior d. B., (Eds.), Slope Instability, Wiley and Sons, New York, 523 - 602.
B, Pradhan, Seeni MI, and Kalantar B. 2017. Performance Evaluation and Sensitivity Analysis of Expert-Based, Statistical, Machine Learning, and Hybrid Models for Producing Landslide Susceptibility Maps. In: Laser Scanning Applications in Landslide Assessment, Springer, Cham, Pp 193–232.
Bonardi, G., P. De Capoa, A. Di Staso, A. Estévez, M. M. Martín, I. M. Rojas, V. Perrone, and J. E. Tent-Manclús. 2003. Oligocene-to-Early Miocene Depositional and Structural Evolution of the Calabria–Peloritani Arc Southern Terrane (Italy) and Geodynamic Correlations with the Spain Betics and Morocco Rif Geodinamica Acta-Elsevier.
C, Cloutier, Locat J, Geertsema M, Jakob M, and Schnorbus M. 2017. Potential Impacts of Climate Change on Landslides Occurrence in Canada.
C, Jaedicke, Solheim A, Blikra LH, Stalsberg K, Sorteberg A, Aaheim A, Kronholm K, et al. 2008. Spatial and Temporal Variations of Norwegian Geohazards in a Changing Climate, the Geoextreme Project.
C, Mu, Shang J, Zhang T, Fan C, Wang S, Peng X, Zhong W, Zhang F, Mu M, and Jia L. 2020. Acceleration of Thaw Slump During 1997–2017 in the Qilian Mountains of the Northern Qinghai-Thibetan Plateau.
C., Doglioni, Mongelli F., and Pialli G. 1998. Boudinage of the Alpine Belt in the Apenninic Back-Arc, Mem. Soc. Geol. Ital. 52 457-468.
C., Iadanza, and Trigila A. 2012. The National Landslide Inventory, Landslide Events, Impacts and Mitigation Measures in Italy. In: E. Eberhardt, Froese c., Turner a.k., Leroueil s. (Eds) Landslides and Engineered Slopes. Protecting Society Through Improved Understanding. Vol. 1, Pp. 273-278.
C., Spalletta, and Vai G. B. 1989. Stratigraphic Correlation Forms of the Calabrian-Peloritan Arc (Southern Italy), Rendiconti Della Soc. Geol. Ital. 12 411-416.
Cirrincione, R., E. Fazio, P. Fiannacca, G. Ortolano, A. Pezzino, R. Punturo, V. Romano, and V. Sacco. 2012. The Alpine Evolution of the Aspromonte Massif: Contraints for Geodynamic Reconstruction of the Calabria-Peloritani Orogen 86° Congresso Nazionale Della Società Geologica Italiana-Arcavata Di Rende (CS).
Crisci, G., G. Donati, A. Messina, S. Russo, and V. Perrone. 1982. L’unità Superiore Dell’aspromonte. Studio Geologico e Petrografico Società Italiana Di Mineralogia e Petrologia.
E., BRABB E. 1984. Innovative Approaches to Landslide Hazard Mapping. 4th International Symposium on Landslides, Toronto, v. 1, 307 - 324.
F., Chung C., and Fabbri A. G. 2003. Validation of Spatial Prediction Models for Landslide Hazard Mapping. Natural Hazards, 30 (3), 451-472.
G., Bonardi, Giunta G., Messina A., Perrone V., and Russo S. 1996. The Calabria-Peloritani Arc and Its Correlation with Northern Africa and Southern Europe, IGCP Project 276 Newsletter 6 Special Issue Messina 27-86.
G., Bonardi, Perrone V., and Zuppetta A. 1974. I Rapporti Tra “Filladi,” “Metabasiti” e “Scisti Micacei” Nell’area Tra Paola e Rose (Calabria), Boll. Soc. Geol. Ital., 93 245-276.
G., GASPERI. 1995. Geologia Regionale - Geologia Dell’italia e Delle Regioni Circummediterranee. Pitagora Editrice Bologna. P. 316 - 358.
GNDCI, CNR -. 1998. Catalogo Delle Informazioni Sulle Località Italiane Colpite Da Frane e Da Inondazioni. Vol. I e II. CNR - GNDCI Pubbl. N. 1799, Grifo, Perugia, 404.
H, Garcia-Delgado, Machuca S, and Medina E. 2019. Dynamic and Geomorphic Characterizations of the Mocoa Debris Flow (March 31, 2017, Putamayo Department, Southern Colombia).
H, Hong, Liu J, Bui DT, Pradhan B, Acharya TD, Pham BT, Zhu AX, Chen W, and Ahmad BB. 2018. Landslide Susceptibility Mapping Using J48 Decision Tree with AdaBoost, Bagging and Rotation Forest Ensembles in the Guangchang Area (China).
H, Yagi. 2016. Landslide Susceptibility Mapping Adopting AHP Method. In: Special Issue of 2nd Central America and Caribbean Landslide Congress, Pp 177–182.
H, Yagi, Higaki D, and Japan Landslide Society. 2009. Methodological Study on Landslide Hazard Assessment by Interpretation of Aerial Photographs Combined with AHP in the Middle Course Area Agano River, Central Japan.
H, Yagi, Hayashi K, Higaki D, Tsou C, and Sato G. 2018. Dormant Landslides Distributed in Upper Course of Sun Kosi Watershed and Landslides Induced by Nepal Gorkha Earthquake 2015. J Nepal Geol Soc 55(special Issue):61–67.
He, J., H.Qiu, F.Qu, and S.Hu et ali. 2021. Predizione Della Stabilità Spazio-Temporale Relativa Ai Limiti Di Pioggia Di Frane Superficiali Utilizzando TRIGRS e Scoops3D.
Hoang, V. H., H. D. Pham, and G. Sato. 2020. Utilizzo Di Scoops3D e GIS Per La Verifica Tridimensionale Della Stabilità Di Un Pendio: Caso Di Studio in Sapa, Vietnam.
INSPIRE (Infrastructure for Spatial Information in the European Community) Directive 2007/2/EC Del Parlamento Europeo Della Giunta Del 14 Marzo 2007. Giornale Ufficiale Dell’unione Europea, 25 Aprile 2007. n.d.
J, Roy, and Saha S. 2019. Landslide Susceptibility Mapping Using Knowledge Driven Statistical Models in Darjeeling District, West Bengal, India, Geoenvironmental Disasters, Vol 6, No 1.
K, Hamasaki, and Miyagi T. 2018. Risk Evaluation Using the Analytic Hierachy Process (AHP)—Introduction to the Process Concept. In: Sassa k, Tiwali b, Liu k, McSaveney m, Strom a, Setiawan h (Eds) Landslide Dynamics, ISDR-ICL Landslide Interactive Teaching Tools, Pp 461–474.
K, Khosravi, Panahi M, and Tien Bui D. 2018. Spatial Prediction of Groundwater Spring Potential Mapping Based on an Adaptive Neuro-Fuzzy Inference System and Metaheuristic Optimization.
K, Pawluszek, Borkowski A, and Tarolli P. 2018. Sensitivity Analysis of Automatic Landslide Mapping: Numerical Experiments Towards the Best Solution. Landslides 15(9):1851–65.
KKS, Ho, Sun HW, Lam EJ, and Lo FLC. 2020. Engineering Preparedness Against Impact of Climate Change on Slope Safety in Hong Kong. Submitted to 5th World Landslide Forum, Kyoto.
L, Picarelli, Comegna L, Gariano SL, Guzzetti F, Mercogliano P, Rianna G, Santini M, and Tommasi P. 2017. Potential Climate Changes in Italy and Consequences for Land Stability. In: Ho KKS, Lacasse s, Picarelli l (Eds) Preparedness for Climate Change Impact on Slope 140 l. Picarelli Et Al.
L., AMODIO MORELLI, BONARDI G., COLONNA V., DIETRICH D., GIUNTA G., IPPOLITO F., LIGUORI V., et al. 1977. L’arco Calabro-Peloritano Nell’orogene Appenninico-Maghrebide. Mem. Soc. Geol. It.,XVII, 1-70.
L., OGNIBEN. 1969. Schema Introduttivo Alla Geologia Del Confine Calabro-Lucano. Mem. Soc. Geol. It., 8 (4), 453-463.
———. 1973. Schema Geologico Della Calabria in Base Ai Dati Odierni. Geol. Rom. 12, 243-585.
M, Märker, Hochschild V, Maca V, and Vilímek V. 2016. Stochastic Assessment of Landslides and Debris Flows in the Jemma Basin, Blue Nile, Central Ethiopia. Geografia Fisica e Dinamica Quaternaria 39 (1):51–58.
M., Cruden D., and Varnes D. J. 1996. Landslide Types and Processes. Landslides: Investigation and Mitigation - Chapter 3, 247, 36-75.
M., Galli, Ardizzone F., Cardinali M., Guzzetti M., and Reichenbach P. 2008. Comparison of Landslide Inventory Maps. Geomorphology.
M., PARISE, and WASOWSKI J. 1999. Landslide Activity Maps for Landslide Hazard Evaluation: Three Case Studies from Southern Italy. Natural Hazard, 20 (2/3), 159183.
Maggio, Dott. Leonardo Di. 2015. Studio Idrologico e Idraulico Dei Bacini Idrografici Dell’abitato Di San Giovanni Rotondo.
N, Saleem, Enamul Huq M, Twumasi NYD, Javed A, and Sajjad A. 2019. Parameters Derived from and/or Used with Digital Elevation Models (DEMs) for Landslide Susceptibility Mapping and Landslide Risk Assessment: A Review. ISPRS Int j GeoInf 8:12.
P., Atzori, Caffo S., Lo Giudice A., and Pezzino A. 1998. Considerazioni Sul Significato Paleogeodinamico Delle Anfiboliti Dei m. Peloritani, Min. Petr. Acta 31 2732.
P., Canuti, and Casagli N. 1994. Considerazioni Sulla Valutazione Del Rischio Di Frana. Atti Del Convegno. “Fenomeni Franosi e Centri Abitati.” Bologna.
P., De Capoa, Di Staso A., Guerrera F., Perrone V., and Tramontana M. 2003. The Extension of the Maghrebian Flysch Basin in the Apenninic Chain: Palaeogeographic and Palaeotectonic Implications, Atti Congr. “Etat Des Connaissances Géologiques Des Régions Nord Du Maroc: La Chaîne Rifaine Dans Son Cadre Méditerranéen Occidental, Rabat (Maroc), Trav. Inst. Sci. Rabat, Série Géol. Et Géogr. Phys. 21 77-92.
P., De Capoa, Guerrera F., Perrone V., and Serrano F. 1997. New Biostratigraphic Data on the Frazzanò Formation (Longi-Taormina Unit): Consequences on Defining the Deformation Age of the CalabriaPeloritani Arc Southern Sector, Riv. Ital. Paleontologia e Stratigrafia 343-356.
P., Versace, Canuti P., Civita M., Landrini C., and Natale L. 1995. Programmi Nazionali, Provinciali e Regionali Di Previsione e Prevenzione Per Il Rischio Idrogeologico Linee Guida. CNR - GNDCI, Roma.
Palazzolo, N., and J.Peres et ali. 2021. Miglioramento Della Predizione Spaziale Delle Frane Con Analisi Di Pendio 3d.
PT, Nguyen, Tuyen TT, Shirzadi A, Pham BT, Shahabi H, Omidvar E, and Vu TB. 2019. Development of a Novel Hybrid Intelligence Approach for Landslide Spatial Prediction.
SK, Gupta, and Shukla DP. 2018. Application of Drone for Landslide Mapping, Dimension Estimation and Its 3d Reconstruction. J Indian Soc Remote Sens 46:903–914.
SK, Gupta, Shukla DP, and Thakur M. 2018. Selection of Weightages for Causative Factors Used in Preparation of Landslide Susceptibility Zonation (LSZ). Geomatics, Nat Hazards Risk 9:471–487.
Somma, R., A. Messina, and V. Perrone. 2012. The Cambrian to Aquitanian Geological Record of the Longi-Taormina Unit (Calabria-Peloritani Arc, Southern Italy): Geodynamic Implications Geodinamica Acta-Elsevier.
Territorio e del Mare, Ministero dell’Ambiente e della tutela del. 2018. IDRA2DHydraulic-Debris Flow Case Study.
TR, Martha, and Vinod Kumar K. 2013. September 2012 Landslide Events in Okhimath, India—an Assessment of Landslide Consequences Using Very High-Resolution Satellite Data. Landslides 10:469–479.
W., Romeo R., Floris M., and Veneri F. 2006. Area-Scale Landslide Hazard and Risk Assessment. Environmental Geology, 51, DOI 10.1007/S00254- 006-0294-1.
Zhang, S., and F.Wang. 2019. Verica Tridimensionale Della Stabilità Sismica Del Pendio Con Applicazioni Di Scoops3D e GIS; Caso Di Studio in Atsuma, Hokkaido.