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Scientific Paper

Enhancing Fire Resilience of Cable-Supported Bridges: Current Knowledge and Research Gaps

ORCID Icon, , ORCID Icon, (Professor) , (Associate Technical Director) &

References

  • Gimsing NJ, Georgakis CT. Cable supported bridges: concept and design. Chichester, UK: John Wiley & Sons, 2012.
  • Wardhana K, Hadipriono FC. Analysis of recent bridge failures in the United States. J Perform Construct Facil. 2003;17:144–150.
  • Lee GC, Satish B. Mohan and Chao Huang, et al. A study of US bridge failures (1980-2012). In: Technical Report MCEER-13-0008. 2013, Earthquake Engineering to Extreme Events.
  • Woodworth M, Mohamed Nahid and William Wright, et al. Retracted: parameter study of highway bridge fires via combined fire dynamics and finite element modeling. In: Structures Congress 2013.
  • Harik IE, Shaaban AM, Gesund H, et al. United States bridge failures, 1951-1988. J Perform Construct Facil. 1990;4(4):272–277.
  • Cook W, Barr PJ, Halling MW. Bridge failure rate analysis. In: TRB 2013 Annual Meeting. 2013.
  • Scheer J. Failed bridges: case studies, causes and consequences. Berlin: Ernst & Sohn, 2010.
  • Kotsovinos P, Judge R, Walker G, et al. Fire performance of structural cables: current understanding, knowledge gaps, and proposed research agenda. J Struct Eng. 2020;146(8):03120002.
  • Gong X, Agrawal AK. Safety of cable-supported bridges during fire hazards. J Bridge Eng. 2016;21(4):04015082.
  • Ma R, Cui C, Ma M, et al. Performance-based design of bridge structures under vehicle-induced fire accidents: basic framework and a case study. Eng Struct. 2019;197:1–13.
  • Du Y, Peng J-z, Richard Liew JY, et al. Mechanical properties of high tensile steel cables at elevated temperatures. Constr Build Mater. 2018;182:52–65.
  • Guoqiang-Li, Guobiao Lou and Yushu Liu et al. Fire resistance evaluation of Minpu Bridge (in Chinese). Shanghai: Tongji University, 2007.
  • Liu Z, et al. Coupled CFD–FEM simulation methodology for fire-exposed bridges. J Bridge Eng. 2021;26(10):04021074.
  • Kotsovinos P, Flint Graeme and Walker Gary, et al. Qualitative assessment of the fire hazard beneath bridges. In: Proceedings of 14th international conference and exhibition on fire science and engineering INTERFLAM, Royal Holloway College, UK. 2016.
  • Percoco M. Infrastructure and economic efficiency in Italian regions. Netw Spat Econ. 2004;4(4):361–378.
  • Kragh E, Narasimhan H, Jensen JL. Fire protection of bridge cables. Struct Eng Int. 2020;30:1–4.
  • Zhang Y, Fang Z, Jiang R, et al. Static performance of a long-span concrete cable-stayed bridge subjected to multiple-cable loss during construction. J Bridge Eng. 2020;25(3):04020002.
  • Branco FA, Mendes PM, Guerreiro LsMC. Special studies for Vasco da Gama Bridge. J Bridge Eng. 2000;5(3):233–239.
  • Mendes PA, Valente JC, Branco FA. Simulation of ship fire under Vasco da Gama Bridge. ACI Struct J. 2000;97(2):285–290.
  • Report for Castle Peak Power Company: black point and South Soko LNG import marine - quantitative risk assessment. Houston (TX): DNV GL, 2006.
  • Hosseini S, Barker K, Ramirez-Marquez JE. A review of definitions and measures of system resilience. Reliab Eng Syst Saf. 2016;145:47–61.
  • Dinh LT, Pasman H, Gao X, et al. Resilience engineering of industrial processes: principles and contributing factors. J Loss Prev Process Ind. 2012;25(2):233–241.
  • McCarthy JA, Brashear JP. Critical infrastructure protection in the national capital region – risk-based foundations for resilience and sustainability. Final report. Arlington (VA): George Mason University, 2005.
  • National Infrastructure Advisory Council. Critical infrastructure resilience: final report and recommendations. National Infrastructure Advisory Council, 2009.
  • Chen C, Chen J, Zhao X, et al. Experimental investigation on combustion characteristics of steel cable for cable-stayed bridge. J Therm Anal Calorim. 2018;134:2317–2327.
  • Kotsovinos P, Atalioti A, McSwiney N, et al. Analysis of the thermomechanical response of structural cables subject to fire. Fire Technol. 2020;56(2):515–543.
  • Nicoletta B, Gales J, Kotsovinosc P, et al. Experimental thermal performance of unloaded spiral strand and locked coil cables subject to pool fires. Struct Eng Int. 2022;32:392–410.
  • Fontanari V, Benedetti M, Monelli BD. Elasto-plastic behavior of a Warrington-Seale rope: experimental analysis and finite element modeling. Eng Struct. 2015;82:113–120.
  • CEN. Eurocode 3: design of steel structures - part 1-2: general rules structural fire design. Brussels: European Committee for Standardisation, 2005.
  • Ridge I, Hobbs R. The behaviour of cast rope sockets at elevated temperatures. J Struct Fire Eng. 2012;3:155–164.
  • Post-Tensioning Institute. Recommendations for stay cable design, testing and installation. Farmington Hills, USA: PTI 2018.
  • Hurley MJ. SFPE handbook of fire protection engineering. 5th ed. London, UK: Springer. 2016.
  • CEN. Eurocode 2: design of concrete structures - part 1-2: general rules - structural fire design. Brussels, Belgium: CEN. 2004.
  • Cui C, Chen A, Ma R. Stability assessment of a suspension bridge considering the tanker fire nearby steel-pylon. J Constr Steel Res. 2020;172:1–9.
  • Francis R, Bekera B. A metric and frameworks for resilience analysis of engineered and infrastructure systems. Reliab Eng Syst Saf. 2014;121:90–103.
  • Kodur VKR, Naser MZ. Importance factor for design of bridges against fire hazard. Eng Struct. 2013;54:207–220.
  • Naser MZ, Kodur VKR. A probabilistic assessment for classification of bridges against fire hazard. Fire Saf J. 2015;76:65–73.
  • Official Journal of the European Union. Commission Implementing Regulation (EU) No. 402/2013 of 30 April 2013 on the common safety method for risk evaluation and assessment and repealing Regulation (EC) No. 352/2009. 2013.
  • Kotsovinos P, Gary Walker and Graeme Flint, et al. Assessing the fires on the deck of cable stayed bridges. In: Ninth International Conference on Structures in Fire; 2016. Princeton, USA.
  • N400 Bruprosjektering (Bridge design handbook). Oslo, Norway: Statens vegvesen, 2022.
  • Stoddard R. Inspection and repair of a fire damaged prestressed girder bridge. In: International Bridge Conference, 2004. Pittsburgh.
  • National Transport Science and Technology Agency. Final report on development of fire risk analysis technology and response system for bridges on national roads. Seoul, South Korea, 2017. [국토교통과학기술진흥원, 국도상 교량의 화재위험도 분석기술 및 대응체계 개발 최종보고서. 2017: 서울].
  • Inoue M, Yusuke Takai and Masahiro Yanagihara, et al. Active protection system for main cable of suspension bridge against HGV or Hazardous material fires. In: IABSE Symposium: towards a resilient built environment risk and asset management, 2019; Guimarães, Portugal. p. 131–137.
  • Godart BF, Berthellemy J, Lucas JP. Diagnosis, assessment and repair of the Mathilde bridge close to collapse during a fire. Struct Eng Int. 2015;25(3):331–338.
  • Choi K, Jungwhee Lee and Chul-Hun Chung, et al. Effect of firewall on a suspension bridge under vehicle fire. In: IABSE Congress Nanjing 2022: Bridges and Structures: Connection, Integration and Harmonisation; 2022, Nanjing.
  • Liu X, Zhang L, Guo S, et al. Experimental research on fireproof performance of coating for bridge steel tower. J Nanjing Tech Univ (Nat Sci Ed). 2017;39(6):143–148.
  • Zou Y, Qin L, Sun L, et al. Fire and blast protection for multi-strand stay cables of rod El Farag Axis Bridge. Struct Eng Int. 2022;1–4.

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