Skip to main content
Top

2014 | OriginalPaper | Chapter

10. Fragility Functions of Highway and Railway Infrastructure

Authors : Sotiris Argyroudis, Amir M. Kaynia

Published in: SYNER-G: Typology Definition and Fragility Functions for Physical Elements at Seismic Risk

Publisher: Springer Netherlands

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The experience of past earthquakes has revealed that highway and railway elements are quite vulnerable to earthquake shaking and induced phenomena such as soil liquefaction or landslide; damages to these elements can seriously affect the transportation of products and people in both short-term (emergency actions) and long-term period. The objective of this chapter is to propose appropriate fragility functions for roadway and railway components other than bridges that are presented separately in Chap. 9. To this end, the main typological features are summarized and a short review of earthquake damages together with damage states definitions are provided for these elements. Fragility curves from literature are collected and reviewed. In some cases these functions are modified and adapted, while in other cases new fragility curves are developed. A general procedure for the derivation of analytical fragility curves that was followed in SYNER-G is described. This approach takes into account the effect of structure geometry, ground motion characteristics, soil conditions and associated uncertainties. New fragility curves are presented for tunnels in soil, embankments, cuttings and bridge abutments based on numerical analyses due to ground shaking. Finally, the proposed fragility functions are summarized and a general scheme to identify the functionality of roadway and railway elements due to different damage levels is outlined.

Dont have a licence yet? Then find out more about our products and how to get one now:

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!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literature
go back to reference American Lifelines Alliance (ALA) (2001) Seismic fragility formulations for water systems, Part 1– Guideline, ASCE-FEMA, Reston, VA2001, 104 p American Lifelines Alliance (ALA) (2001) Seismic fragility formulations for water systems, Part 1– Guideline, ASCE-FEMA, Reston, VA2001, 104 p
go back to reference Argyroudis S, Kaynia AM (2013) Analytical fragility functions for roadways and railways on embankments and in cuts due to seismic shaking, submitted to Bulletin of Earthquake Engineering Argyroudis S, Kaynia AM (2013) Analytical fragility functions for roadways and railways on embankments and in cuts due to seismic shaking, submitted to Bulletin of Earthquake Engineering
go back to reference Argyroudis S, Pitilakis K (2007) Development of vulnerability curves for circular shallow tunnels due to ground shaking and ground failure. In: Crosta GB, Frattini P (eds) Landslides: from mapping to loss and risk estimation. LESSLOSS report no. 2007/01. IUSS Press, Pavia, ISBN: 978-88-6198-005-1:175–184 Argyroudis S, Pitilakis K (2007) Development of vulnerability curves for circular shallow tunnels due to ground shaking and ground failure. In: Crosta GB, Frattini P (eds) Landslides: from mapping to loss and risk estimation. LESSLOSS report no. 2007/01. IUSS Press, Pavia, ISBN: 978-88-6198-005-1:175–184
go back to reference Argyroudis S, Pitilakis K (2012) Seismic fragility curves of shallow tunnels in alluvial deposits. Soil Dyn Earthq Eng 35:1–12CrossRef Argyroudis S, Pitilakis K (2012) Seismic fragility curves of shallow tunnels in alluvial deposits. Soil Dyn Earthq Eng 35:1–12CrossRef
go back to reference Argyroudis S, Mitoulis S, Pitilakis K (2013a) Seismic response of bridge abutments on surface foundation subjected to collision forces. In: Proceedings of 4th international conference on computational methods in structural dynamics and earthquake engineering (COMPDYN), Kos Island, Greece, 12–14 June 2013 Argyroudis S, Mitoulis S, Pitilakis K (2013a) Seismic response of bridge abutments on surface foundation subjected to collision forces. In: Proceedings of 4th international conference on computational methods in structural dynamics and earthquake engineering (COMPDYN), Kos Island, Greece, 12–14 June 2013
go back to reference Argyroudis S, Kaynia AM, Pitilakis K (2013b) Development of fragility functions for geotechnical constructions: application to cantilever retaining walls. Soil Dyn Earthq Eng 50:106–116CrossRef Argyroudis S, Kaynia AM, Pitilakis K (2013b) Development of fragility functions for geotechnical constructions: application to cantilever retaining walls. Soil Dyn Earthq Eng 50:106–116CrossRef
go back to reference ATC-13 (1985) Earthquake damage evaluation data for California. Applied Technology Council, Redwood City ATC-13 (1985) Earthquake damage evaluation data for California. Applied Technology Council, Redwood City
go back to reference Bardet JP, Ichii K, Lin CH (2000) EERA: a computer program for equivalent-linear earthquake site response analyses of layered soil deposits. University of Southern California, Department of Civil Engineering, Los Angeles, 40 p Bardet JP, Ichii K, Lin CH (2000) EERA: a computer program for equivalent-linear earthquake site response analyses of layered soil deposits. University of Southern California, Department of Civil Engineering, Los Angeles, 40 p
go back to reference Bray J, Travasarou T (2007) Simplified procedure for estimating earthquake-induced deviatoric slope displacements. J Geotech Geoenviron Eng 133(4):381–392CrossRef Bray J, Travasarou T (2007) Simplified procedure for estimating earthquake-induced deviatoric slope displacements. J Geotech Geoenviron Eng 133(4):381–392CrossRef
go back to reference Byers W (2004) Railroad lifeline damage in earthquakes. In: Proceedings of 13th world conference on earthquake engineering, Vancouver, BC, Canada, 1–6 Aug 2004, Paper No. 324 Byers W (2004) Railroad lifeline damage in earthquakes. In: Proceedings of 13th world conference on earthquake engineering, Vancouver, BC, Canada, 1–6 Aug 2004, Paper No. 324
go back to reference Corigliano M (2007) Seismic response of deep tunnels in near-fault conditions. Ph.D. dissertation, Politecnico di Torino, Italy, p 222 Corigliano M (2007) Seismic response of deep tunnels in near-fault conditions. Ph.D. dissertation, Politecnico di Torino, Italy, p 222
go back to reference Dowding CH, Rozen A (1978) Damage to rock tunnels from earthquake shaking. J Geotech Eng Div 104:175–191 Dowding CH, Rozen A (1978) Damage to rock tunnels from earthquake shaking. J Geotech Eng Div 104:175–191
go back to reference EC8. Eurocode 8 (2004) Design of structures for earthquake resistance. European Committee for Standardisation, Brussels. The European Standard EN 1998-1 EC8. Eurocode 8 (2004) Design of structures for earthquake resistance. European Committee for Standardisation, Brussels. The European Standard EN 1998-1
go back to reference Kaynia AM (ed) (2013) Guidelines for deriving seismic fragility functions of elements at risk: buildings, lifelines, transportation networks and critical facilities. SYNER-G reference report 4, Publications Office of the European Union, ISBN 978-92-79-28966-8, doi:10.2788/19605 Kaynia AM (ed) (2013) Guidelines for deriving seismic fragility functions of elements at risk: buildings, lifelines, transportation networks and critical facilities. SYNER-G reference report 4, Publications Office of the European Union, ISBN 978-92-79-28966-8, doi:10.​2788/​19605
go back to reference Kaynia AM, Johansson J, Argyroudis S, Pitilakis K (2011) D3.8-Fragility functions for roadway system elements, Deliverable of SYNER-G EC Project Kaynia AM, Johansson J, Argyroudis S, Pitilakis K (2011) D3.8-Fragility functions for roadway system elements, Deliverable of SYNER-G EC Project
go back to reference Lagaros N, Tsompanakis Y, Psarropoulos P, Georgopoulos E (2009) Computationally efficient seismic fragility analysis of geostructures. Comput Struct 87:1195–1203CrossRef Lagaros N, Tsompanakis Y, Psarropoulos P, Georgopoulos E (2009) Computationally efficient seismic fragility analysis of geostructures. Comput Struct 87:1195–1203CrossRef
go back to reference LessLoss (2007) Risk mitigation for earthquakes and landslides, Research Project, European Commission, GOCE-CT-2003-505448 LessLoss (2007) Risk mitigation for earthquakes and landslides, Research Project, European Commission, GOCE-CT-2003-505448
go back to reference Maruyama Y, Yamazaki F, Mizuno K, Tsuchiya Y, Yogai H (2010) Fragility curves for expressway embankments based on damage datasets after recent earthquakes in Japan. Soil Dyn Earthq Eng 30:1158–1167CrossRef Maruyama Y, Yamazaki F, Mizuno K, Tsuchiya Y, Yogai H (2010) Fragility curves for expressway embankments based on damage datasets after recent earthquakes in Japan. Soil Dyn Earthq Eng 30:1158–1167CrossRef
go back to reference National Institute of Building Sciences (NIBS) (2004) HAZUS-MH: users’s manual and technical manuals. Report prepared for the Federal Emergency Management Agency, Washington, DC National Institute of Building Sciences (NIBS) (2004) HAZUS-MH: users’s manual and technical manuals. Report prepared for the Federal Emergency Management Agency, Washington, DC
go back to reference Owen GN, Scholl RE (1981) Earthquake engineering of large underground structures, in report no. FHWA/RD-80/195, Federal Highway Administration and National Science Foundation, 279 p Owen GN, Scholl RE (1981) Earthquake engineering of large underground structures, in report no. FHWA/RD-80/195, Federal Highway Administration and National Science Foundation, 279 p
go back to reference Pitilakis K et al (2010) Physical vulnerability of elements at risk to landslides: methodology for evaluation, fragility curves and damage states for buildings and lifelines. Deliverable 2.5 in EU FP7 research project no. 226479. SafeLand: living with landslide risk in Europe: assessment, effects of global change, and risk management strategies Pitilakis K et al (2010) Physical vulnerability of elements at risk to landslides: methodology for evaluation, fragility curves and damage states for buildings and lifelines. Deliverable 2.5 in EU FP7 research project no. 226479. SafeLand: living with landslide risk in Europe: assessment, effects of global change, and risk management strategies
go back to reference Plaxis 2D (1998) Reference manual, version 7 Plaxis 2D (1998) Reference manual, version 7
go back to reference Plaxis 2D (2011) Reference manual, version 9 Plaxis 2D (2011) Reference manual, version 9
go back to reference Salmon M, Wang J, Jones D, Wu Ch (2003) Fragility formulations for the BART system. In: Proceedings of the 6th U.S. conference on lifeline earthquake engineering, TCLEE, Long Beach, 10–13 Aug 2003 Salmon M, Wang J, Jones D, Wu Ch (2003) Fragility formulations for the BART system. In: Proceedings of the 6th U.S. conference on lifeline earthquake engineering, TCLEE, Long Beach, 10–13 Aug 2003
go back to reference Werner SD, Taylor CE, Cho S, Lavoie J-P, Huyck C, Eitzel C, Chung H, Eguchi RT (2006) REDARS 2: methodology and software for seismic risk analysis of highway systems, MCEER-06-SP08 Werner SD, Taylor CE, Cho S, Lavoie J-P, Huyck C, Eitzel C, Chung H, Eguchi RT (2006) REDARS 2: methodology and software for seismic risk analysis of highway systems, MCEER-06-SP08
go back to reference Winter M, Smith JT, Fotopoulou S, Pitilakis K, Mavrouli O, Corominas J, Argyroudis S (2013) The physical vulnerability of roads to debris flow. In: Proceedings of the 18th international conference on soil mechanics and geotechnical engineering, Paris, 2–6 Sept 2013 Winter M, Smith JT, Fotopoulou S, Pitilakis K, Mavrouli O, Corominas J, Argyroudis S (2013) The physical vulnerability of roads to debris flow. In: Proceedings of the 18th international conference on soil mechanics and geotechnical engineering, Paris, 2–6 Sept 2013
Metadata
Title
Fragility Functions of Highway and Railway Infrastructure
Authors
Sotiris Argyroudis
Amir M. Kaynia
Copyright Year
2014
Publisher
Springer Netherlands
DOI
https://doi.org/10.1007/978-94-007-7872-6_10