Skip to main content
Erschienen in: Environmental Earth Sciences 11/2014

01.06.2014 | Original Article

Diagnosis of landslide risk for individual buildings: insights from Prahova Subcarpathians, Romania

verfasst von: Iuliana Armaş

Erschienen in: Environmental Earth Sciences | Ausgabe 11/2014

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

The aim of this study is to quantify the landslide risk for individual buildings using spatial data in a GIS environment. A landslide-prone area from Prahova Rivers’ Subcarpathian Valley was chosen because of its associated landslide hazards and its impact upon human settlements and activities. The bivariate landslide susceptibility index (LSI) was applied to calculate the spatial probability of landslides occurrence. The Landslide Susceptibility Index map was produced by numerically adding the weighted thematic maps for slope gradient and aspect, water table, soil texture, lithology, built environment and land use. Validation curves were obtained using the random-split strategy for two combinations of variables: (a) all seven variables and (b) three variables which showed highest individual success rates with respect to landslides occurrences (slope gradient, water table and land use). The principal pre-disposing factors were found to be slope steepness and groundwater table. Vulnerability was established as the degree of loss to individual buildings resulting from a potential damaging landslide with a given return period in an area. Risk was calculated by multiplying the spatial probability of landslides by the vulnerability for each building and summing up the losses for the selected return period.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Aleotti P, Chowdhury R (1999) Landslide hazard assessment: summary review and new perspective. Bull Eng Geol Environ 58:21–44CrossRef Aleotti P, Chowdhury R (1999) Landslide hazard assessment: summary review and new perspective. Bull Eng Geol Environ 58:21–44CrossRef
Zurück zum Zitat Alexander DE (1991) Applied geomorphology and the impact of natural hazards on the built environment. Nat Hazards 4(1):57–80CrossRef Alexander DE (1991) Applied geomorphology and the impact of natural hazards on the built environment. Nat Hazards 4(1):57–80CrossRef
Zurück zum Zitat Alexander DE (2000) Confronting catastrophe—new perspectives on natural disasters. Oxford University Press, Oxford Alexander DE (2000) Confronting catastrophe—new perspectives on natural disasters. Oxford University Press, Oxford
Zurück zum Zitat Alexander DE (2005) Vulnerability to landslides. In: Glade T, Anderson MG, Crozier MJ (eds) Landslide risk assessment. Wiley, New York, pp 175–198 Alexander DE (2005) Vulnerability to landslides. In: Glade T, Anderson MG, Crozier MJ (eds) Landslide risk assessment. Wiley, New York, pp 175–198
Zurück zum Zitat Armaş I (2011) An analytic multicriteria hierarchical approach to assess landslide vulnerability. Case study: Cornu village, Subcarpathian Prahova Valley/Romania. Zeitschrift für. Geomorphologie 55(2):209–229CrossRef Armaş I (2011) An analytic multicriteria hierarchical approach to assess landslide vulnerability. Case study: Cornu village, Subcarpathian Prahova Valley/Romania. Zeitschrift für. Geomorphologie 55(2):209–229CrossRef
Zurück zum Zitat Armaş I, Manea G (2002) Artificializarea peisajului şi vulnerabilitatea terenurilor la alunecări în sectorul subcarpatic al văii Prahova. Comunicări de Geografie, VI Armaş I, Manea G (2002) Artificializarea peisajului şi vulnerabilitatea terenurilor la alunecări în sectorul subcarpatic al văii Prahova. Comunicări de Geografie, VI
Zurück zum Zitat Armaş I, Damian R, Şandric I, Osaci-Costache G (2003) Vulnerabilitatea versanţilor subcarpatici la alunecări de teren (Valea Prahovei), Ed. Fundaţiei România de Mâine, Bucureşti Armaş I, Damian R, Şandric I, Osaci-Costache G (2003) Vulnerabilitatea versanţilor subcarpatici la alunecări de teren (Valea Prahovei), Ed. Fundaţiei România de Mâine, Bucureşti
Zurück zum Zitat Atkinson PM, Massari (1998) Generalised linear modelling of susceptibility to landsliding in the central Apennines, Italy. Comput Geosci 24:373–385CrossRef Atkinson PM, Massari (1998) Generalised linear modelling of susceptibility to landsliding in the central Apennines, Italy. Comput Geosci 24:373–385CrossRef
Zurück zum Zitat Bai SB, Wang J, Lu GN, Zhou PG, Hou SS, Xu SN (2009) GIS-based and data-driven bivariate landslide-susceptibility mapping in the Three Gorges area, China. Pedosphere 19(1):14–20CrossRef Bai SB, Wang J, Lu GN, Zhou PG, Hou SS, Xu SN (2009) GIS-based and data-driven bivariate landslide-susceptibility mapping in the Three Gorges area, China. Pedosphere 19(1):14–20CrossRef
Zurück zum Zitat Carrara A, Cardinali M, Detti R, Guzzetti F, Pasqui V, Reichenbach P (1991) GIS techniques and statistical models in evaluating landslide hazard. Earth Surf Processes Landf 16:427–445CrossRef Carrara A, Cardinali M, Detti R, Guzzetti F, Pasqui V, Reichenbach P (1991) GIS techniques and statistical models in evaluating landslide hazard. Earth Surf Processes Landf 16:427–445CrossRef
Zurück zum Zitat Carrara A, Cardinali M, Guzzetti F, Reichenbach P (1995) GIS technology in mapping landslide hazard. In: Carrara A, Guzetti F (eds) Geographical information systems in assessing natural hazards. Kluwer, Dordrecht, pp 135–176CrossRef Carrara A, Cardinali M, Guzzetti F, Reichenbach P (1995) GIS technology in mapping landslide hazard. In: Carrara A, Guzetti F (eds) Geographical information systems in assessing natural hazards. Kluwer, Dordrecht, pp 135–176CrossRef
Zurück zum Zitat Carrara A, Guzzetti F, Cardinali M, Reichenbach P (1999) Use of GIS technology in the prediction and monitoring of landslide hazard. Nat Hazards 20:117–135CrossRef Carrara A, Guzzetti F, Cardinali M, Reichenbach P (1999) Use of GIS technology in the prediction and monitoring of landslide hazard. Nat Hazards 20:117–135CrossRef
Zurück zum Zitat Cevik E, Topal T (2003) GIS-based landslide susceptibility mapping for a problematic segment of the natural gas pipeline, Hendek (Turkey). Environ Geol 44:949–962CrossRef Cevik E, Topal T (2003) GIS-based landslide susceptibility mapping for a problematic segment of the natural gas pipeline, Hendek (Turkey). Environ Geol 44:949–962CrossRef
Zurück zum Zitat Chung CF, Fabbri AG, van Westen CJ (1995) Multivariate regression analysis for landslide hazard zonation. In: Carrara A, Guzetti F (eds) Geographical information systems in assessing natural hazards. Kluwer, Dordrecht, pp 107–133CrossRef Chung CF, Fabbri AG, van Westen CJ (1995) Multivariate regression analysis for landslide hazard zonation. In: Carrara A, Guzetti F (eds) Geographical information systems in assessing natural hazards. Kluwer, Dordrecht, pp 107–133CrossRef
Zurück zum Zitat Clerici A, Perego S, Tellini C, Vescovi P (2002) A procedure for landslide susceptibility zonation by the conditional analysis method. Geomorphology 48:349–364CrossRef Clerici A, Perego S, Tellini C, Vescovi P (2002) A procedure for landslide susceptibility zonation by the conditional analysis method. Geomorphology 48:349–364CrossRef
Zurück zum Zitat Cruden DM, Varnes DJ (1996) Landslide types and processes. In: Turner AT, Schuster RL (eds) Landslides—investigation and mitigation. Transportation research board special report no. 247. National Academy Press, Washington, pp 36–75 Cruden DM, Varnes DJ (1996) Landslide types and processes. In: Turner AT, Schuster RL (eds) Landslides—investigation and mitigation. Transportation research board special report no. 247. National Academy Press, Washington, pp 36–75
Zurück zum Zitat Dai FC, Lee CF, Ngai YY (2002) Landslide risk assessment and management overview. Eng Geol 64:65–87CrossRef Dai FC, Lee CF, Ngai YY (2002) Landslide risk assessment and management overview. Eng Geol 64:65–87CrossRef
Zurück zum Zitat EM-DAT (2010) The international disaster database, centre for research on epidemiology of disasters—CRED. www.emdat.be (accessed 10 September 2010) EM-DAT (2010) The international disaster database, centre for research on epidemiology of disasters—CRED. www.​emdat.​be (accessed 10 September 2010)
Zurück zum Zitat Galli M, Guzzetti F (2007) Landslide vulnerability criteria: a case study from Umbria, Central Italy. Environ Manag 40:649–664 Galli M, Guzzetti F (2007) Landslide vulnerability criteria: a case study from Umbria, Central Italy. Environ Manag 40:649–664
Zurück zum Zitat Glade T, Crozier MJ (2005) The nature of landslide hazard impact. In: Glade T, Anderson MG, Crozier MJ (eds) Landslide hazard and risk. Wiley, New York, pp 43–74CrossRef Glade T, Crozier MJ (2005) The nature of landslide hazard impact. In: Glade T, Anderson MG, Crozier MJ (eds) Landslide hazard and risk. Wiley, New York, pp 43–74CrossRef
Zurück zum Zitat Guzetti F, Carrarra A, Cardinali M, Reichenbach P (1999) Landslide hazard evaluation: a review of current techniques and their application in a multiscale study, Central Italy. Geomorphology 31:181–216CrossRef Guzetti F, Carrarra A, Cardinali M, Reichenbach P (1999) Landslide hazard evaluation: a review of current techniques and their application in a multiscale study, Central Italy. Geomorphology 31:181–216CrossRef
Zurück zum Zitat Guzzetti F (2002) Landslide hazard assessment and risk evaluation: limits and prospectives. In: Proceedings of the fourth EGS Plinius Conference held at Mallorca, Spain, October 2002 Guzzetti F (2002) Landslide hazard assessment and risk evaluation: limits and prospectives. In: Proceedings of the fourth EGS Plinius Conference held at Mallorca, Spain, October 2002
Zurück zum Zitat ITC (2001) ILWIS 3.0 Academic—user’s guide. ITC, Enschede, Netherlands ITC (2001) ILWIS 3.0 Academic—user’s guide. ITC, Enschede, Netherlands
Zurück zum Zitat IUGS Working Group on Landslides, committee on risk assessment (1997) Quantitative risk assessment for slopes and landslides – The state of the art, In: Proceedings of International Workshop on Landslide Risk Assessment, Honolulu IUGS Working Group on Landslides, committee on risk assessment (1997) Quantitative risk assessment for slopes and landslides – The state of the art, In: Proceedings of International Workshop on Landslide Risk Assessment, Honolulu
Zurück zum Zitat Kelarestaghi A, Ahmadi H (2009) Landslide susceptibility analysis with a bivariate approach and GIS in northern Iran. Arb J Geosci 2:95–101CrossRef Kelarestaghi A, Ahmadi H (2009) Landslide susceptibility analysis with a bivariate approach and GIS in northern Iran. Arb J Geosci 2:95–101CrossRef
Zurück zum Zitat Lee EM, Jones DKC (2004) Landslide risk assessment. Thomas Telford, London, 256 pCrossRef Lee EM, Jones DKC (2004) Landslide risk assessment. Thomas Telford, London, 256 pCrossRef
Zurück zum Zitat Mehmet SL, Doyuran V (2004) A comparison of the GIS based landslide susceptibility assessment methods: multivariate versus bivariate Environ Geol 45:665–679 Mehmet SL, Doyuran V (2004) A comparison of the GIS based landslide susceptibility assessment methods: multivariate versus bivariate Environ Geol 45:665–679
Zurück zum Zitat Mutihac V (1990) Structura geologică a teritoriului României, Ed. Tehnică, Bucureşti Mutihac V (1990) Structura geologică a teritoriului României, Ed. Tehnică, Bucureşti
Zurück zum Zitat Nandi A, Shakoor A (2009) A GIS-based landslide susceptibility evaluation using bivariate and multivariate statistical analyses. Eng Geol 110:11–20CrossRef Nandi A, Shakoor A (2009) A GIS-based landslide susceptibility evaluation using bivariate and multivariate statistical analyses. Eng Geol 110:11–20CrossRef
Zurück zum Zitat Parichi M, Armaş I, Stanila L, Popa R (2006–2007) Studiul pedogeografic al teritoriului Cornu, TERRA XXXVI-XXXVII: 59–73 Parichi M, Armaş I, Stanila L, Popa R (2006–2007) Studiul pedogeografic al teritoriului Cornu, TERRA XXXVI-XXXVII: 59–73
Zurück zum Zitat Parichi M, Armaş I, Fl Vartolomei (2006) Evaluari pedologice şi morfodinamice pe valea Prahovei subcarpatice. An Spiru Haret 9:103–111 Parichi M, Armaş I, Fl Vartolomei (2006) Evaluari pedologice şi morfodinamice pe valea Prahovei subcarpatice. An Spiru Haret 9:103–111
Zurück zum Zitat Parichi M, Armaş I, Vartolomei Fl (2008) Informaţia pedologică în evaluarea susceptibilităţii versanţilor la alunecări de teren. Studiu de caz: oraşul Breaza. Lucrări şi rapoarte de cercetare, D.T.D.G. 2:15–27 Parichi M, Armaş I, Vartolomei Fl (2008) Informaţia pedologică în evaluarea susceptibilităţii versanţilor la alunecări de teren. Studiu de caz: oraşul Breaza. Lucrări şi rapoarte de cercetare, D.T.D.G. 2:15–27
Zurück zum Zitat Remondo J, Gonzalez A, de Teran RJ, Cendrero A, Fabri A, Chung ChF (2003) Validation of landslide susceptibility maps; examples and applications from a case study in northern Spain. Nat Hazards 30:437–449CrossRef Remondo J, Gonzalez A, de Teran RJ, Cendrero A, Fabri A, Chung ChF (2003) Validation of landslide susceptibility maps; examples and applications from a case study in northern Spain. Nat Hazards 30:437–449CrossRef
Zurück zum Zitat Roberds W (2005) Estimating temporal and spatial variability and vulnerability. In: Glade T, Anderson MG, Crozier MJ (eds) Landslide hazard and risk. Wiley, New York, pp 129–157 Roberds W (2005) Estimating temporal and spatial variability and vulnerability. In: Glade T, Anderson MG, Crozier MJ (eds) Landslide hazard and risk. Wiley, New York, pp 129–157
Zurück zum Zitat Schuster RL (1995) Socioeconomic significance of landslides. In: Turner AK, Schuster RL (eds) Landslides, investigation and mitigation, transportation research board special report 247. National Academy Press, WA Schuster RL (1995) Socioeconomic significance of landslides. In: Turner AK, Schuster RL (eds) Landslides, investigation and mitigation, transportation research board special report 247. National Academy Press, WA
Zurück zum Zitat Schuster RL, Fleming RW (1986) Economic losses and fatalities due to landslides, Bulletin American Association Engineering Geologists 23(1) Schuster RL, Fleming RW (1986) Economic losses and fatalities due to landslides, Bulletin American Association Engineering Geologists 23(1)
Zurück zum Zitat Soeters R, van Westen CJ (1996) Slope instability recognition, analysis, and zonation. In: Turner KA, Schuster RL (eds) Landslides: investigation and mitigation. Transport Research Board Special Report 247, pp 129–177 Soeters R, van Westen CJ (1996) Slope instability recognition, analysis, and zonation. In: Turner KA, Schuster RL (eds) Landslides: investigation and mitigation. Transport Research Board Special Report 247, pp 129–177
Zurück zum Zitat Spătaru M, Trăsnea C (1993) Cercetări geologice în regiunea Breaza-Bezdead. Raport geologic final, Arh. S.C. “Prospecţiuni” S.A., Bucureşti Spătaru M, Trăsnea C (1993) Cercetări geologice în regiunea Breaza-Bezdead. Raport geologic final, Arh. S.C. “Prospecţiuni” S.A., Bucureşti
Zurück zum Zitat Süzen ML, Doyuran V (2004) Data driven bivariate landslide susceptibility assessment using geographical information systems: a method and application to Asarsuyu catchment, Turkey. Eng Geol 71:303–321CrossRef Süzen ML, Doyuran V (2004) Data driven bivariate landslide susceptibility assessment using geographical information systems: a method and application to Asarsuyu catchment, Turkey. Eng Geol 71:303–321CrossRef
Zurück zum Zitat Thaiyuenwong S, Maireang W (2010) Triggered-rainfall landslide hazard prediction. Res Dev J 21(2):43–50 Thaiyuenwong S, Maireang W (2010) Triggered-rainfall landslide hazard prediction. Res Dev J 21(2):43–50
Zurück zum Zitat U.S. Geological Survey (1997) U.S. geological survey landslide hazards Program five-year plan 1998–2002. U.S. Government Printing Office, Washington U.S. Geological Survey (1997) U.S. geological survey landslide hazards Program five-year plan 1998–2002. U.S. Government Printing Office, Washington
Zurück zum Zitat van Westen CJ (1997) Statistical landslide hazard analysis, ILWIS 2.1 for windows application guide. ITC Publication, Enschede, pp 73–84 van Westen CJ (1997) Statistical landslide hazard analysis, ILWIS 2.1 for windows application guide. ITC Publication, Enschede, pp 73–84
Zurück zum Zitat van Westen CJ (2004) Geo-Information tools for landslide risk assessment: an overview of recent developments. In: Lacerda WA, Ehrlich M, Fountoura SAB, Sayão ASF (eds) Landslides evaluation and stabilization. Balkema, Rotterdam, pp 39–56 van Westen CJ (2004) Geo-Information tools for landslide risk assessment: an overview of recent developments. In: Lacerda WA, Ehrlich M, Fountoura SAB, Sayão ASF (eds) Landslides evaluation and stabilization. Balkema, Rotterdam, pp 39–56
Zurück zum Zitat van Westen CJ, Rengers N, Terlien MTJ (1997) Prediction of the occurrence of slope instability phenomena through GIS-based hazard zonation. Geol Rundsch 86:4004–4414CrossRef van Westen CJ, Rengers N, Terlien MTJ (1997) Prediction of the occurrence of slope instability phenomena through GIS-based hazard zonation. Geol Rundsch 86:4004–4414CrossRef
Zurück zum Zitat van Westen CJ, Seijmonsbergen AC, Mantovani F (1999) Comparing landslide hazard maps. Nat Hazards 20:2–3 van Westen CJ, Seijmonsbergen AC, Mantovani F (1999) Comparing landslide hazard maps. Nat Hazards 20:2–3
Zurück zum Zitat van Westen CJ, Van Asch TWJ, Soeters R (2006) Landslide hazard and risk zonation: why is it still so difficult. Bull Eng Geol Environ 65(2):167–184CrossRef van Westen CJ, Van Asch TWJ, Soeters R (2006) Landslide hazard and risk zonation: why is it still so difficult. Bull Eng Geol Environ 65(2):167–184CrossRef
Zurück zum Zitat Vandine DF, Moore G, Wise M, Vanbuskirk C, Gerath R (2004) Technical terms and methods. In: Wise M, Moore G, Vandine D (eds) Landslide risk case studies in forest development planning and operations. B. C., Ministry of Forests, Forest Science Program, abstract of land management handbook 56:13–26 Vandine DF, Moore G, Wise M, Vanbuskirk C, Gerath R (2004) Technical terms and methods. In: Wise M, Moore G, Vandine D (eds) Landslide risk case studies in forest development planning and operations. B. C., Ministry of Forests, Forest Science Program, abstract of land management handbook 56:13–26
Zurück zum Zitat Varnes DJ (1984) Landslide hazard zonation: a review of principles and practice of the United Nations Educational, Scientific and Cultural Organization. Natural Hazards, vol 3. UNESCO Press, Paris Varnes DJ (1984) Landslide hazard zonation: a review of principles and practice of the United Nations Educational, Scientific and Cultural Organization. Natural Hazards, vol 3. UNESCO Press, Paris
Zurück zum Zitat Yaclin A (2008) GIS-based landslide susceptibility mapping using analytical hierarchy process and bivariate statistics in Ardesen (Turkey): comparisons of results and confirmations. Catena 72:1–12CrossRef Yaclin A (2008) GIS-based landslide susceptibility mapping using analytical hierarchy process and bivariate statistics in Ardesen (Turkey): comparisons of results and confirmations. Catena 72:1–12CrossRef
Zurück zum Zitat Yin KL, Yan TZ (1988) Statistical prediction model for slope instability of metamorphosed rocks. In: Proceedings of fifth International Symposium on Landslides, Lausanne, Switzerland 2:1269–1272 Yin KL, Yan TZ (1988) Statistical prediction model for slope instability of metamorphosed rocks. In: Proceedings of fifth International Symposium on Landslides, Lausanne, Switzerland 2:1269–1272
Metadaten
Titel
Diagnosis of landslide risk for individual buildings: insights from Prahova Subcarpathians, Romania
verfasst von
Iuliana Armaş
Publikationsdatum
01.06.2014
Verlag
Springer Berlin Heidelberg
Erschienen in
Environmental Earth Sciences / Ausgabe 11/2014
Print ISSN: 1866-6280
Elektronische ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-013-2854-5

Weitere Artikel der Ausgabe 11/2014

Environmental Earth Sciences 11/2014 Zur Ausgabe