State-of-the-Art Reviews
Sep 27, 2024

Resilience of Road Transportation Networks under Hydrological Hazards: A Review of Recent Studies

Publication: Journal of Infrastructure Systems
Volume 30, Issue 4

Abstract

Road transportation networks are highly vulnerable to natural hazards, especially hydrological hazards. Damages to transportation networks due to hydrological hazards have been recorded in many countries. Modeling and evaluating the resilience of transportation networks subjected to hydrological hazards have recently raised significant interest among researchers. However, a comprehensive literature review on the topic is still lacking. As such, this paper presents a review of recent resilience studies for road transportation networks under hydrological hazards. Various sources of hydrological hazards in resilience studies are concluded in this review with corresponding models that can generate inundation depth for the networks. Adverse impacts due to hazards are differentiated into two categories— structural damage and functionality loss. The resilience evaluation models are discussed to understand the assessment approaches and indicators that have been adopted in recent studies. Furthermore, the resilience studies focused on improvement strategies are described in detail, including the mitigation, relief, and restoration strategies in different phases of hazards. The paper concludes by summarizing the contributions and limitations of recent studies and providing a possible direction for resilience analysis in the future.

Get full access to this article

View all available purchase options and get full access to this article.

Data Availability Statement

All data, models, or code that support the findings of this study are available from the corresponding author upon reasonable request.

Acknowledgments

The financial supports for this work from the National Natural Science Foundation of China (Project Nos. 52378135, 52022021, 51978160) and the Key Research and Development Program of Jiangsu Province of China (Project No. BE2021089) are gratefully acknowledged. The opinions and statements do not necessarily represent those of the sponsors.

References

AASHTO. 2012. LRFD bridge design specifications. Washington, DC: AASHTO.
Achillopoulou, D. V., S. A. Mitoulis, S. A. Argyroudis, and Y. Wang. 2020. “Monitoring of transport infrastructure exposed to multiple hazards: A roadmap for building resilience.” Sci. Total Environ. 746 (Dec): 141001. https://doi.org/10.1016/j.scitotenv.2020.141001.
Ackers, J. C., and R. W. P. May. 2002. Manual on scour at bridges and other hydraulic structures. London: Construction Industry Research and Information Association.
Aghababaei, M. T. S., S. B. Costello, and P. Ranjitkar. 2021. “Measures to evaluate post-disaster trip resilience on road networks.” J. Transp. Geogr. 95 (Jul): 103154. https://doi.org/10.1016/j.jtrangeo.2021.103154.
Ahamed, T., J. G. Duan, and H. Jo. 2021. “Flood-fragility analysis of instream bridges—Consideration of flow hydraulics, geotechnical uncertainties, and variable scour depth.” Struct. Infrastruct. Eng. 17 (11): 1494–1507. https://doi.org/10.1080/15732479.2020.1815226.
Ahmad, T., A. C. Pandey, and A. Kumar. 2020. “Impact of 2014 Kashmir flood on land use/land cover transformation in Dal lake and its surroundings, Kashmir valley.” SN Appl. Sci. 2 (4): 1–13. https://doi.org/10.1007/s42452-020-2434-8.
Akiyama, M., D. M. Frangopol, M. Arai, and S. Koshimura. 2013. “Reliability of bridges under tsunami hazards: Emphasis on the 2011 Tohoku-oki earthquake.” Supplement, Earthquake Spectra 29 (S1): 295–314. https://doi.org/10.1193/1.4000112.
Akiyama, M., D. M. Frangopol, and H. Ishibashi. 2020. “Toward life-cycle reliability-, risk- and resilience-based design and assessment of bridges and bridge networks under independent and interacting hazards: Emphasis on earthquake, tsunami and corrosion.” Struct. Infrastruct. Eng. 16 (1): 26–50. https://doi.org/10.1080/15732479.2019.1604770.
Alabbad, Y., J. Mount, A. M. Campbell, and I. Demir. 2021. “Assessment of transportation system disruption and accessibility to critical amenities during flooding: Iowa case study.” Sci. Total Environ. 793 (Nov): 148476. https://doi.org/10.1016/j.scitotenv.2021.148476.
Anderson, M. J., D. A. F. Kiddle, and T. M. Logan. 2022. “The underestimated role of the transportation network: Improving disaster & community resilience.” Transp. Res. Part D: Transp. Environ. 106 (May): 103218. https://doi.org/10.1016/j.trd.2022.103218.
Anisha, A., A. Jacob, R. Davis, and S. Mangalathu. 2022. “Fragility functions for highway RC bridge under various flood scenarios.” Eng. Struct. 260 (Jun): 114244. https://doi.org/10.1016/j.engstruct.2022.114244.
Argyroudis, S. A., et al. 2022. “Digital technologies can enhance climate resilience of critical infrastructure.” Clim. Risk Manage. 35 (Jan): 100387. https://doi.org/10.1016/j.crm.2021.100387.
Argyroudis, S. A., S. Mitoulis, M. G. Winter, and A. M. Kaynia. 2019. “Fragility of transport assets exposed to multiple hazards: State-of-the-art review toward infrastructural resilience.” Reliab. Eng. Syst. Saf. 191 (Nov): 106567. https://doi.org/10.1016/j.ress.2019.106567.
Argyroudis, S. A., and S. A. Mitoulis. 2021. “Vulnerability of bridges to individual and multiple hazards-floods and earthquakes.” Reliab. Eng. Syst. Saf. 210 (Jun): 107564. https://doi.org/10.1016/j.ress.2021.107564.
ASCE. 2016. Minimum design loads and associated criteria for buildings and other structures. Reston, VA: ASCE.
Banerjee, S., S. Chandrasekaran, and A. Venkittaraman. 2014. Optimal bridge retrofit strategy to enhance disaster resilience of highway transportation systems. Washington, DC: US DOT.
Banerjee, S., B. S. Vishwanath, and D. K. Devendiran. 2019. “Multihazard resilience of highway bridges and bridge networks: A review.” Struct. Infrastruct. Eng. 15 (12): 1694–1714. https://doi.org/10.1080/15732479.2019.1648526.
Barcelo, J., J. Casas, D. Garcia, and J. Perarnau. 2005. “A methodological approach combining macro, meso and micro simulation models for transportation analysis.” In Proc., 11th World Conf. on Transport Research, 1–40. Berkeley, CA: European Conference of Transport Research Institutes.
Barker, K., J. E. Ramirez-Marquez, and C. M. Rocco. 2013. “Resilience-based network component importance measures.” Reliab. Eng. Syst. Saf. 117 (Sep): 89–97. https://doi.org/10.1016/j.ress.2013.03.012.
Baroud, H., K. Barker, J. E. Ramirez-Marquez, and C. M. Rocco. 2015. “Inherent costs and interdependent impacts of infrastructure network resilience.” Risk Anal. 35 (4): 642–662. https://doi.org/10.1111/risa.12223.
Bocchini, P., D. M. Frangopol, T. Ummenhofer, and T. Zinke. 2014. “Resilience and sustainability of civil infrastructure: Toward a unified approach.” J. Infrastruct. Syst. 20 (2): 1–16. https://doi.org/10.1061/(ASCE)IS.1943-555X.0000177.
Borowska-Stefańska, M., M. Kowalski, and S. Wiśniewski. 2019. “The measurement of mobility-based accessibility—The impact of floods on trips of various length and motivation.” ISPRS Int. J. Geo-Inf. 8 (12): 534. https://doi.org/10.3390/ijgi8120534.
Bretschneider, S., and A. Kimms. 2012. “Pattern-based evacuation planning for urban areas.” Eur. J. Oper. Res. 216 (1): 57–69. https://doi.org/10.1016/j.ejor.2011.07.015.
Bruneau, M., S. E. Chang, R. T. Eguchi, G. C. Lee, T. D. O’Rourke, A. M. Reinhorn, M. Shinozuka, K. Tierney, W. A. Wallace, and D. Von Winterfeldt. 2003. “A framework to quantitatively assess and enhance the seismic resilience of communities.” Earthquake Spectra 19 (4): 733–752. https://doi.org/10.1193/1.1623497.
Buldyrev, S. V., R. Parshani, G. Paul, H. E. Stanley, and S. Havlin. 2010. “Catastrophic cascade of failures in interdependent networks.” Nature 464 (7291): 1025–1028. https://doi.org/10.1038/nature08932.
Cantelmi, R., G. Di Gravio, and R. Patriarca. 2021. “Reviewing qualitative research approaches in the context of critical infrastructure resilience.” Environ. Syst. Dec. 41 (3): 341–376. https://doi.org/10.1007/s10669-020-09795-8.
Capacci, L., F. Biondini, and D. M. Frangopol. 2022. “Resilience of aging structures and infrastructure systems with emphasis on seismic resilience of bridges and road networks: Review.” Resilient Cities Struct. 1 (2): 23–41. https://doi.org/10.1016/j.rcns.2022.05.001.
Chang, H., M. Lafrenz, I. W. Jung, M. Figliozzi, D. Platman, and C. Pederson. 2010. “Potential impacts of climate change on flood-induced travel disruptions: A case study of Portland, Oregon, USA.” Ann. Assoc. Am. Geogr. 100 (4): 938–952. https://doi.org/10.1080/00045608.2010.497110.
Chen, N., S. Yao, C. Wang, and W. Du. 2019. “A method for urban flood risk assessment and zoning considering road environments and terrain.” Sustainability 11 (10): 1–17. https://doi.org/10.3390/su11102734.
Cook, W. 2014. Bridge failure rates, consequences, and predictive trends. Logan, UT: Utah State Univ.
Devendiran, D. K., S. Banerjee, and A. Mondal. 2021. “Impact of climate change on multihazard performance of river-crossing bridges: Risk, resilience, and adaptation.” J. Perform. Constr. Facil. 35 (1): 1–10. https://doi.org/10.1061/(ASCE)CF.1943-5509.0001538.
Dodo, A., N. Xu, R. A. Davidson, and L. K. Nozick. 2005. “Optimizing regional earthquake mitigation investment strategies.” Earthquake Spectra 21 (2): 305–327. https://doi.org/10.1193/1.1896959.
Dong, S., X. Gao, A. Mostafavi, and J. Gao. 2022. “Modest flooding can trigger catastrophic road network collapse due to compound failure.” Commun. Earth Environ. 3 (1): 1–10. https://doi.org/10.1038/s43247-022-00366-0.
Dong, S., T. Yu, H. Farahmand, and A. Mostafavi. 2020. “Probabilistic modeling of cascading failure risk in interdependent channel and road networks in urban flooding.” Sustainable Cities Soc. 62 (Nov): 102398. https://doi.org/10.1016/j.scs.2020.102398.
Eidsvig, U., M. Santamaría, N. Galvão, N. Tanasic, L. Piciullo, R. Hajdin, F. Nadim, H. S. Sousa, and J. Matos. 2021. “Risk assessment of terrestrial transportation infrastructures exposed to extreme events.” Infrastructures 6 (11): 163. https://doi.org/10.3390/infrastructures6110163.
Evans, B., A. S. Chen, S. Djordjević, J. Webber, A. G. Gómez, and J. Stevens. 2020. “Investigating the effects of pluvial flooding and climate change on traffic flows in Barcelona and Bristol.” Sustainability 12 (6): 2330. https://doi.org/10.3390/su12062330.
Forero-Ortiz, E., E. Martínez-Gomariz, M. C. Porcuna, L. Locatelli, and B. Russo. 2020. “Flood risk assessment in an underground railway system under the impact of climate change—A case study of the Barcelona Metro.” Sustainability 12 (13): 1–26. https://doi.org/10.3390/su12135291.
Francis, R., and B. Bekera. 2014. “A metric and frameworks for resilience analysis of engineered and infrastructure systems.” Reliab. Eng. Syst. Saf. 121 (Jan): 90–103. https://doi.org/10.1016/j.ress.2013.07.004.
Frangopol, D. M., and P. Bocchini. 2012. “Bridge network performance, maintenance and optimisation under uncertainty: Accomplishments and challenges.” Struct. Infrastruct. Eng. 8 (4): 341–356. https://doi.org/10.1080/15732479.2011.563089.
Gao, J., S. V. Buldyrev, H. E. Stanley, and S. Havlin. 2012. “Networks formed from interdependent networks.” Nat. Phys. 8 (1): 40–48. https://doi.org/10.1038/nphys2180.
Garcia, F. C. C., A. E. Retamar, and J. C. Javier. 2015. “A real time urban flood monitoring system for metro Manila.” In Proc., TENCON 2015-2015 IEEE Region 10 Conf., 1–5. New York: IEEE.
Gehl, P., and D. D’Ayala. 2016. “Development of Bayesian networks for the multi-hazard fragility assessment of bridge systems.” Struct. Saf. 60 (May): 37–46. https://doi.org/10.1016/j.strusafe.2016.01.006.
Gehl, P., and D. D’Ayala. 2018. “System loss assessment of bridge networks accounting for multi-hazard interactions.” Struct. Infrastruct. Eng. 14 (10): 1355–1371. https://doi.org/10.1080/15732479.2018.1434671.
Gidaris, I., J. E. Padgett, A. R. Barbosa, S. Chen, D. Cox, B. Webb, and A. Cerato. 2017. “Multiple-hazard fragility and restoration models of highway bridges for regional risk and resilience assessment in the United States: State-of-the-art review.” J. Struct. Eng. 143 (3): 04016188. https://doi.org/10.1061/(ASCE)ST.1943-541X.0001672.
Goerigk, M., K. Deghdak, and P. Heßler. 2014. “A comprehensive evacuation planning model and genetic solution algorithm.” Transp. Res. Part E: Logist. Transp. Rev. 71: 82–97. https://doi.org/10.1016/j.tre.2014.08.007.
Gonzalez Duenas, C., C. Bernier, and J. Padgett. 2019. “Probabilistic assessment of bridges subjected to waterborne debris.” In Proc., Coastal Structures 2019, 851–861. Karlsruhe, Germany: Bundesanstalt für Wasserbau.
Guo, X., and Z. Chen. 2016. “Lifecycle multihazard framework for assessing flood scour and earthquake effects on bridge failure.” ASCE-ASME J. Risk Uncertainty Eng. Syst. Part A: Civ. Eng. 2 (2): C4015004. https://doi.org/10.1061/AJRUA6.0000844.
Hackl, J., J. C. Lam, M. Heitzler, B. T. Adey, and L. Hurni. 2018. “Estimating network related risks: A methodology and an application in the transport sector.” Nat. Hazards Earth Syst. Sci. 18 (8): 2273–2293. https://doi.org/10.5194/nhess-18-2273-2018.
Hankin, B., I. Craigen, W. Rogers, J. Morphet, A. Bailey, and M. Whitehead. 2016. “Flood risk to the strategic road network in England.” E3S Web Conf. 7 (Oct): 10001. https://doi.org/10.1051/e3sconf/20160710001.
He, X., H. Zheng, and S. Peeta. 2015. “Model and a solution algorithm for the dynamic resource allocation problem for large-scale transportation network evacuation.” Transp. Res. Part C: Emerging Technol. 59 (Jan): 233–247. https://doi.org/10.1016/j.trc.2015.05.005.
Huang, B., L. Liao, Q. Ren, X. Cui, J. Zhang, and B. Zhu. 2022. “Fragility analysis of the box-girder coastal bridge with different connections subjected to extreme random waves.” Ocean Eng. 245 (Feb): 110580. https://doi.org/10.1016/j.oceaneng.2022.110580.
Huang, B., Z. Yang, B. Zhu, J. Zhang, A. Kang, and L. Pan. 2019. “Vulnerability assessment of coastal bridge superstructure with box girder under solitary wave forces through experimental study.” Ocean Eng. 189 (Oct): 106337. https://doi.org/10.1016/j.oceaneng.2019.106337.
Ishibashi, H., M. Akiyama, D. M. Frangopol, S. Koshimura, T. Kojima, and K. Nanami. 2020. “Framework for estimating the risk and resilience of road networks with bridges and embankments under both seismic and tsunami hazards.” Struct. Infrastruct. Eng. 17 (4): 494–514. https://doi.org/10.1080/15732479.2020.1843503.
Jasour, Z. Y., A. C. Reilly, G. L. Tonn, and C. M. Ferreira. 2022. “Roadway flooding as a bellwether for household retreat in rural, coastal regions vulnerable to sea-level rise.” Clim. Risk Manage. 36 (Jan): 100425. https://doi.org/10.1016/j.crm.2022.100425.
Kashyap, A., D. Ghose, P. P. Menon, P. B. Sujit, and K. Das. 2019. “UAV aided dynamic routing of resources in a flood scenario.” In Proc., 2019 Int. Conf. on Unmanned Aircraft Systems (ICUAS), 328–335. New York: IEEE.
Kasmalkar, I. G., K. A. Serafin, Y. Miao, I. A. Bick, L. Ortolano, D. Ouyang, and J. Suckale. 2020. “When floods hit the road: Resilience to flood-related traffic disruption in the San Francisco Bay Area and beyond.” Sci. Adv. 6 (32): 1–9. https://doi.org/10.1126/sciadv.aba2423.
Kasmalkar, I. G., K. A. Serafin, and J. Suckale. 2021. “Integrating urban traffic models with coastal flood maps to quantify the resilience of traffic systems to episodic coastal flooding.” MethodsX 8 (Jan): 101483. https://doi.org/10.1016/j.mex.2021.101483.
Kermanshah, A., and S. Derrible. 2017. “Robustness of road systems to extreme flooding: Using elements of GIS, travel demand, and network science.” Nat. Hazards 86 (1): 151–164. https://doi.org/10.1007/s11069-016-2678-1.
Kilanitis, I., and A. Sextos. 2019. “Impact of earthquake-induced bridge damage and time evolving traffic demand on the road network resilience.” J. Traffic Transp. Eng. 6 (1): 35–48. https://doi.org/10.1016/j.jtte.2018.07.002.
Kim, Y., D. A. Eisenberg, E. N. Bondank, M. V. Chester, G. Mascaro, and B. S. Underwood. 2017. “Fail-safe and safe-to-fail adaptation: Decision-making for urban flooding under climate change.” Clim. Change 145 (3–4): 397–412. https://doi.org/10.1007/s10584-017-2090-1.
Knight, K. L., G. Hou, A. S. Bhaskar, and S. Chen. 2021. “Assessing the use of dual-drainage modeling to determine the effects of green stormwater infrastructure on roadway flooding and traffic performance.” Water 13 (11): 1563. https://doi.org/10.3390/w13111563.
Kosa, K. 2014. “Damage analysis of bridges affected by the tsunami in the Great East Japan earthquake.” J. JSCE 2 (1): 77–93. https://doi.org/10.2208/journalofjsce.2.1_77.
Kulshrestha, A., D. Wu, Y. Lou, and Y. Yin. 2011. “Robust shelter locations for evacuation planning with demand uncertainty.” J. Transp. Saf. Secur. 3 (4): 272–288. https://doi.org/10.1080/19439962.2011.609323.
Kwasinski, A., F. M. Lavelle, J. Trainor, and P. B. Wolshon. 2016. A conceptual framework for assessing resilience at the community scale. Gaithersburg, MD: US Dept. of Commerce, NIST.
Lagasse, P. F., J. D. Schall, F. Johnson, E. V. Richardson, and F. Chang. 2012. Stream stability at highway structures. 4th ed. Washington, DC: Federal Highway Administration.
Lee, J. Y., H. J. Moon, T. I. Kim, H. W. Kim, and M. Y. Han. 2013. “Quantitative analysis on the urban flood mitigation effect by the extensive green roof system.” Environ. Pollut. 181 (Oct): 257–261. https://doi.org/10.1016/j.envpol.2013.06.039.
Lertworawanich, P. 2012. “Highway network restoration after the great flood in Thailand.” Nat. Hazards 64 (1): 873–886. https://doi.org/10.1007/s11069-012-0278-2.
Li, D., X. Zhu, G. Huang, H. Feng, S. Zhu, and X. Li. 2022. “A hybrid method for evaluating the resilience of urban road traffic network under flood disaster: An example of Nanjing, China.” Environ. Sci. Pollut. Res. 29 (30): 46306–46324. https://doi.org/10.1007/s11356-022-19142-w.
Li, J., and Y. Zhou. 2020. “Optimizing risk mitigation investment strategies for improving post-earthquake road network resilience.” Int. J. Transp. Sci. Technol. 9 (4): 277–286. https://doi.org/10.1016/j.ijtst.2020.01.005.
Li, Q., X. Yang, and H. Wei. 2006. “Integrating traffic simulation models with evacuation planning system in a GIS environment.” In Proc., 2006 IEEE Intelligent Transportation Systems Conf., 590–595. New York: IEEE.
Li, Y., J. Gong, L. Niu, and J. Sun. 2019. “A physically based spatiotemporal method of analyzing flood impacts on urban road networks.” Nat. Hazards 97 (1): 121–137. https://doi.org/10.1007/s11069-019-03630-3.
Lin, C., J. Han, C. Bennett, and R. L. Parsons. 2014. “Case history analysis of bridge failures due to scour.” In Proc., Climatic Effects on Pavement and Geotechnical Infrastructure, 204–216. Reston, VA: ASCE.
Liu, W., M. Shan, S. Zhang, X. Zhao, and Z. Zhai. 2022. “Resilience in infrastructure systems: A comprehensive review.” Buildings 12 (6): 759. https://doi.org/10.3390/buildings12060759.
Logan, T. M., M. J. Anderson, and A. C. Reilly. 2023. “Risk of isolation increases the expected burden from sea-level rise.” Nat. Clim. Change. 13 (4): 397–402. https://doi.org/10.1038/s41558-023-01642-3.
Logan, T. M., and S. D. Guikema. 2020. “Reframing resilience: Equitable access to essential services.” Risk Anal. 40 (8): 1538–1553. https://doi.org/10.1111/risa.13492.
Loli, M., G. Kefalas, S. Dafis, S. A. Mitoulis, and F. Schmidt. 2022. “Bridge-specific flood risk assessment of transport networks using GIS and remotely sensed data.” Sci. Total Environ. 850 (Dec): 157976. https://doi.org/10.1016/j.scitotenv.2022.157976.
Loreti, S., E. Ser-Giacomi, A. Zischg, M. Keiler, and M. Barthelemy. 2022. “Local impacts on road networks and access to critical locations during extreme floods.” Sci. Rep. 12 (1): 1552. https://doi.org/10.1038/s41598-022-04927-3.
Lunliang, D., L. Shilong, Z. Jianting, W. Yunhao, T. Yu, and Z. Xiaolong. 2024. “Numerical study on erosion of mono-pier in hyper concentrated flow environment.” Ocean Eng. 292 (Jan): 116519. https://doi.org/10.1016/j.oceaneng.2023.116519.
Misra, S., J. E. Padgett, A. R. Barbosa, and B. M. Webb. 2020. “An expert opinion survey on post-hazard restoration of roadways and bridges: Data and key insights.” Earthquake Spectra 36 (2): 983–1004. https://doi.org/10.1177/8755293019891722.
Mitoulis, S. A., S. A. Argyroudis, M. Loli, and B. Imam. 2021a. “Restoration models for quantifying flood resilience of bridges.” Eng. Struct. 238 (Jul): 112180. https://doi.org/10.1016/j.engstruct.2021.112180.
Mitoulis, S. A., M. Domaneschi, G. P. Cimellaro, and J. R. Casas. 2021b. “Bridge and transport network resilience—A perspective.” Proc. Inst. Civ. Eng. Bridge Eng. 175 (3): 138–149. https://doi.org/10.1680/jbren.21.00055.
Moore, E. J., W. Kichainukon, and U. Phalavonk. 2013. “Maximum flow in road networks with speed-dependent capacities—Application to Bangkok traffic.” Songklanakarin J. Sci. Technol. 35 (4): 489–499.
Moura Rezende, O., A. B. Ribeiro da Cruz de Franco, A. K. Beleño de Oliveira, A. C. Pitzer Jacob, and M. Gomes Miguez. 2019. “A framework to introduce urban flood resilience into the design of flood control alternatives.” J. Hydrol. 576 (Sep): 478–493. https://doi.org/10.1016/j.jhydrol.2019.06.063.
Padgett, J. E., A. Spiller, and C. Arnold. 2012. “Statistical analysis of coastal bridge vulnerability based on empirical evidence from Hurricane Katrina.” Struct. Infrastruct. Eng. 8 (6): 595–605. https://doi.org/10.1080/15732470902855343.
Papilloud, T., and M. Keiler. 2021. “Vulnerability patterns of road network to extreme floods based on accessibility measures.” Transp. Res. Part D: Transp. Environ. 100 (Nov): 103045. https://doi.org/10.1016/j.trd.2021.103045.
Pérez-Morales, A., F. Gomariz-Castillo, and P. Pardo-Zaragoza. 2019. “Vulnerability of transport networks to multi-scenario flooding and optimum location of emergency management centers.” Water 11 (6): 1–19. https://doi.org/10.3390/w11061197.
Portugal-Pereira, J., and L. Lee. 2016. “Economic and environmental benefits of waste-to-energy technologies for debris recovery in disaster-hit Northeast Japan.” J. Cleaner Prod. 112 (Jan): 4419–4429. https://doi.org/10.1016/j.jclepro.2015.05.083.
Pregnolato, M., A. Ford, V. Glenis, S. Wilkinson, and R. Dawson. 2017a. “Impact of climate change on disruption to urban transport networks from pluvial flooding.” J. Infrastruct. Syst. 23 (4): 1–13. https://doi.org/10.1061/(ASCE)IS.1943-555X.0000372.
Pregnolato, M., A. Ford, S. M. Wilkinson, and R. J. Dawson. 2017b. “The impact of flooding on road transport: A depth-disruption function.” Transp. Res. Part D: Transp. Environ. 55 (Aug): 67–81. https://doi.org/10.1016/j.trd.2017.06.020.
Pregnolato, M., A. O. Winter, D. Mascarenas, A. D. Sen, P. Bates, and M. R. Motley. 2022. “Assessing flooding impact to riverine bridges: An integrated analysis.” Nat. Hazards Earth Syst. Sci. 22 (5): 1559–1576. https://doi.org/10.5194/nhess-22-1559-2022.
Pyatkova, K., A. S. Chen, S. Djordjević, D. Butler, Z. Vojinović, Y. A. Abebe, and M. Hammond. 2019. “Flood impacts on road transportation using microscopic traffic modelling techniques.” In Proc., Simulating Urban Traffic Scenarios, 115–126. Cham, Switzerland: Springer.
Qeshta, I. M. I., M. J. Hashemi, R. Gravina, and S. Setunge. 2019. “Review of resilience assessment of coastal bridges to extreme wave-induced loads.” Eng. Struct. 185 (Apr): 332–352. https://doi.org/10.1016/j.engstruct.2019.01.101.
Rezende, O. M., F. M. Miranda, A. N. Haddad, and M. G. Miguez. 2019. “A framework to evaluate urban flood resilience of design alternatives for flood defence considering future adverse scenarios.” Water 11 (7): 1485. https://doi.org/10.3390/w11071485.
Rivera, F. I., and N. Kapucu. 2015. “Geography and resilience.” In Disaster vulnerability, hazards and resilience: Perspectives from Florida, 29–42. Cham, Switzerland: Springer.
Rose, A. 2007. “Economic resilience to natural and man-made disasters: Multidisciplinary origins and contextual dimensions.” Environ. Hazards 7 (4): 383–398. https://doi.org/10.1016/j.envhaz.2007.10.001.
Rus, K., V. Kilar, and D. Koren. 2018. “Resilience assessment of complex urban systems to natural disasters: A new literature review.” Int. J. Disaster Risk Reduct. 31 (Oct): 311–330. https://doi.org/10.1016/j.ijdrr.2018.05.015.
Sakuraba, C., A. Santos, C. Prins, L. Bouillot, A. Durand, and B. Allenbach. 2016. “Road network emergency accessibility planning after a major earthquake.” EURO J. Comput. Optim. 4 (3–4): 381–402. https://doi.org/10.1007/s13675-016-0070-2.
Sarmah, T., and S. Das. 2018. “Urban flood mitigation planning for Guwahati: A case of Bharalu basin.” J. Environ. Manage. 206 (Jan): 1155–1165. https://doi.org/10.1016/j.jenvman.2017.10.079.
Shabou, S., I. Ruin, C. Lutoff, S. Debionne, S. Anquetin, J.-D. Creutin, and X. Beaufils. 2017. “MobRISK: A model for assessing the exposure of road users to flash flood events.” Nat. Hazards Earth Syst. Sci. 17 (9): 1631–1651. https://doi.org/10.5194/nhess-17-1631-2017.
Shahdani, F. J., M. Santamaria-Ariza, H. S. Sousa, M. Coelho, and J. C. Matos. 2022. “Assessing flood indirect impacts on road transport networks applying mesoscopic traffic modelling: The case study of Santarém, Portugal.” Appl. Sci. 12 (6): 3076. https://doi.org/10.3390/app12063076.
Sharifi, A. 2016. “A critical review of selected tools for assessing community resilience.” Ecol. Indic. 69 (Oct): 629–647. https://doi.org/10.1016/j.ecolind.2016.05.023.
Sharifi, A., and Y. Yamagata. 2016. “On the suitability of assessment tools for guiding communities towards disaster resilience.” Int. J. Disaster Risk Reduct. 18 (Sep): 115–124. https://doi.org/10.1016/j.ijdrr.2016.06.006.
Shoji, G., and T. Moriyama. 2007. “Evaluation of the structural fragility of a bridge structure subjected to a tsunami wave load.” J. Nat. Disaster Sci. 29 (2): 73–81. https://doi.org/10.2328/jnds.29.73.
Singh, P., V. S. P. Sinha, A. Vijhani, and N. Pahuja. 2018. “Vulnerability assessment of urban road network from urban flood.” Int. J. Disaster Risk Reduct. 28 (Jun): 237–250. https://doi.org/10.1016/j.ijdrr.2018.03.017.
Sohn, J. 2006. “Evaluating the significance of highway network links under the flood damage: An accessibility approach.” Transp. Res. Part A: Policy Pract. 40 (6): 491–506. https://doi.org/10.1016/j.tra.2005.08.006.
Starita, S., M. P. Scaparra, and J. R. O’Hanley. 2017. “A dynamic model for road protection against flooding.” J. Oper. Res. Soc. 68 (1): 74–88. https://doi.org/10.1057/s41274-016-0019-0.
Suarez, P., W. Anderson, V. Mahal, and T. R. Lakshmanan. 2005. “Impacts of flooding and climate change on urban transportation: A systemwide performance assessment of the Boston Metro Area.” Transp. Res. Part D: Transp. Environ. 10 (3): 231–244. https://doi.org/10.1016/j.trd.2005.04.007.
Suh, J., A. T. Siwe, and S. M. Madanat. 2019. “Transportation infrastructure protection planning against sea level rise: Analysis using operational landscape units.” J. Infrastruct. Syst. 25 (3): 1–8. https://doi.org/10.1061/(ASCE)IS.1943-555X.0000506.
Sun, W., P. Bocchini, and B. D. Davison. 2020. “Resilience metrics and measurement methods for transportation infrastructure: The state of the art.” Sustainable Resilient Infrastruct. 5 (3): 168–199. https://doi.org/10.1080/23789689.2018.1448663.
Tanasić, N., V. Ilić, and R. Hajdin. 2013. “Vulnerability Assessment of bridges exposed to scour.” Transp. Res. Rec. 2360 (1): 36–44. https://doi.org/10.3141/2360-05.
Testa, A. C., M. N. Furtado, and A. Alipour. 2015. “Resilience of coastal transportation networks faced with extreme climatic events.” Transp. Res. Rec. 2532 (1): 29–36. https://doi.org/10.3141/2532-04.
Tilloy, A., B. D. Malamud, H. Winter, and A. Joly-Laugel. 2019. “A review of quantification methodologies for multi-hazard interrelationships.” Earth Sci. Rev. 196 (Sep): 102881. https://doi.org/10.1016/j.earscirev.2019.102881.
Tubaldi, E., et al. 2022. “Invited perspectives: Challenges and future directions in improving bridge flood resilience.” Nat. Hazards Earth Syst. Sci. 22 (3): 795–812. https://doi.org/10.5194/nhess-22-795-2022.
Van Ginkel, K. C. H., F. Dottori, L. Alfieri, L. Feyen, and E. E. Koks. 2021. “Flood risk assessment of the European road network.” Nat. Hazards Earth Syst. Sci. 21 (3): 1011–1027. https://doi.org/10.5194/nhess-21-1011-2021.
Varela, S., and M. S. Saiidi. 2016. “A bridge column with superelastic NiTi SMA and replaceable rubber hinge for earthquake damage mitigation.” Smart Mater. Struct. 25 (7): 075012. https://doi.org/10.1088/0964-1726/25/7/075012.
Wahlstrom, M., and D. Guha-Sapir. 2015. The human cost of weather-related disasters 1995–2015. Geneva: United Nations International Strategy for Disaster Reduction.
Wan, C., Z. Yang, D. Zhang, X. Yan, and S. Fan. 2018. “Resilience in transportation systems: A systematic review and future directions.” Transp. Rev. 38 (4): 479–498. https://doi.org/10.1080/01441647.2017.1383532.
Wang, W., S. Yang, J. Gao, F. Hu, W. Zhao, and H. E. Stanley. 2020. “An integrated approach for assessing the impact of large-scale future floods on a highway transport system.” Risk Anal. 40 (9): 1780–1794. https://doi.org/10.1111/risa.13507.
Wang, W., S. Yang, H. E. Stanley, and J. Gao. 2019. “Local floods induce large-scale abrupt failures of road networks.” Nat. Commun. 10 (1): 1–11. https://doi.org/10.1038/s41467-019-10063-w.
Widener, M. J., and M. W. Horner. 2011. “A hierarchical approach to modeling hurricane disaster relief goods distribution.” J. Transp. Geogr. 19 (4): 821–828. https://doi.org/10.1016/j.jtrangeo.2010.10.006.
Williams, J. H., R. Paulik, T. M. Wilson, L. Wotherspoon, A. Rusdin, and G. M. Pratama. 2020a. “Tsunami fragility functions for road and utility pole assets using field survey and remotely sensed data from the 2018 Sulawesi Tsunami, Palu, Indonesia.” Pure Appl. Geophys. 177 (8): 3545–3562. https://doi.org/10.1007/s00024-020-02545-6.
Williams, J. H., T. M. Wilson, N. Horspool, R. Paulik, L. Wotherspoon, E. M. Lane, and M. W. Hughes. 2020b. “Assessing transportation vulnerability to tsunamis: Utilising post-event field data from the 2011 Tōhoku tsunami, Japan, and the 2015 Illapel tsunami, Chile.” Nat. Hazards Earth Syst. Sci. 20 (2): 451–470. https://doi.org/10.5194/nhess-20-451-2020.
Xie, W., and L. Sun. 2021. “Assessment and mitigation on near-fault earthquake wave effects on seismic responses and pile-soil interactions of soil-pile-bridge model.” Soil Dyn. Earthquake Eng. 143 (Apr): 106596. https://doi.org/10.1016/j.soildyn.2021.106596.
Xing, Y., J. Lu, S. Chen, and S. Dissanayake. 2017. “Vulnerability analysis of urban rail transit based on complex network theory: A case study of Shanghai Metro.” Public Transp. 9 (3): 501–525. https://doi.org/10.1007/s12469-017-0170-2.
Xu, Y., G. Xu, S. Xue, J. Wang, and Y. Li. 2022. “Failure mechanism and vulnerability assessment of coastal box-girder bridge with laminated rubber bearings under extreme waves.” Ocean Eng. 266 (Dec): 112834. https://doi.org/10.1016/j.oceaneng.2022.112834.
Yadav, N., S. Chatterjee, and A. R. Ganguly. 2020. “Resilience of urban transport network-of-networks under intense flood hazards exacerbated by targeted attacks.” Sci. Rep. 10 (1): 1–14. https://doi.org/10.1038/s41598-020-66049-y.
Yang, Y., S. T. Ng, S. Zhou, F. J. Xu, and H. Li. 2020. “Physics-based resilience assessment of interdependent civil infrastructure systems with condition-varying components: A case with stormwater drainage system and road transport system.” Sustainable Cities Soc. 54 (Mar): 101886. https://doi.org/10.1016/j.scs.2019.101886.
Yilmaz, T., S. Banerjee, and P. A. Johnson. 2018. “Uncertainty in risk of highway bridges assessed for integrated seismic and flood hazards.” Struct. Infrastruct. Eng. 14 (9): 1182–1196. https://doi.org/10.1080/15732479.2017.1402065.
Yin, J., D. Yu, Z. Yin, M. Liu, and Q. He. 2016. “Evaluating the impact and risk of pluvial flash flood on intra-urban road network: A case study in the city center of Shanghai, China.” J. Hydrol. 537 (Jun): 138–145. https://doi.org/10.1016/j.jhydrol.2016.03.037.
Zhang, N., and A. Alipour. 2020. “Two-stage model for optimized mitigation and recovery of bridge network with final goal of resilience.” Transp. Res. Rec. 2674 (10): 114–123. https://doi.org/10.1177/0361198120935450.
Zhang, N., and A. Alipour. 2021. “A multi-step assessment framework for optimization of flood mitigation strategies in transportation networks.” Int. J. Disaster Risk Reduct. 63 (Sep): 102439. https://doi.org/10.1016/j.ijdrr.2021.102439.
Zhao, T., and Y. Zhang. 2020. “Transportation infrastructure restoration optimization considering mobility and accessibility in resilience measures.” Transp. Res. Part C: Emerging Technol. 117 (Aug): 102700. https://doi.org/10.1016/j.trc.2020.102700.
Zhou, Y., J. Wang, and H. Yang. 2019. “Resilience of transportation systems: Concepts and comprehensive review.” IEEE Trans. Intell. Transp. Syst. 20 (12): 4262–4276. https://doi.org/10.1109/TITS.2018.2883766.
Zhu, Y. J., Y. Hu, and J. M. Collins. 2020. “Estimating road network accessibility during a hurricane evacuation: A case study of hurricane Irma in Florida.” Transp. Res. Part D: Transp. Environ. 83 (Jun): 102334. https://doi.org/10.1016/j.trd.2020.102334.

Information & Authors

Information

Published In

Go to Journal of Infrastructure Systems
Journal of Infrastructure Systems
Volume 30Issue 4December 2024

History

Published online: Sep 27, 2024
Published in print: Dec 1, 2024
Discussion open until: Feb 27, 2025

Permissions

Request permissions for this article.

ASCE Technical Topics:

Authors

Affiliations

Professor, Dept. of Bridge Engineering, School of Transportation, Southeast Univ., Nanjing 211189, China (corresponding author). ORCID: https://orcid.org/0000-0002-1951-6985. Email: [email protected]
Xiaolong Ma, Ph.D.
Postdoctoral Fellow, Dept. of Bridge Engineering, School of Transportation, Southeast Univ., Nanjing 211189, China.
Daniu Zhang
Ph.D. Candidate, Dept. of Bridge Engineering, School of Transportation, Southeast Univ., Nanjing 211189, China.
C. S. Cai, Ph.D., P.E., F.ASCE
Professor, Dept. of Bridge Engineering, School of Transportation, Southeast Univ., Nanjing 211189, China; formerly, Professor, Dept. of Civil and Environmental Engineering, Louisiana State Univ., Baton Rouge, LA 70803.

Metrics & Citations

Metrics

Citations

Download citation

If you have the appropriate software installed, you can download article citation data to the citation manager of your choice. Simply select your manager software from the list below and click Download.

View Options

Get Access

Access content

Please select your options to get access

Log in/Register Log in via your institution (Shibboleth)
ASCE Members: Please log in to see member pricing

Purchase

Save for later Information on ASCE Library Cards
ASCE Library Cards let you download journal articles, proceedings papers, and available book chapters across the entire ASCE Library platform. ASCE Library Cards remain active for 24 months or until all downloads are used. Note: This content will be debited as one download at time of checkout.

Terms of Use: ASCE Library Cards are for individual, personal use only. Reselling, republishing, or forwarding the materials to libraries or reading rooms is prohibited.
ASCE Library Card (5 downloads)
$105.00
Add to cart
ASCE Library Card (20 downloads)
$280.00
Add to cart
Buy Single Article
$35.00
Add to cart

Get Access

Access content

Please select your options to get access

Log in/Register Log in via your institution (Shibboleth)
ASCE Members: Please log in to see member pricing

Purchase

Save for later Information on ASCE Library Cards
ASCE Library Cards let you download journal articles, proceedings papers, and available book chapters across the entire ASCE Library platform. ASCE Library Cards remain active for 24 months or until all downloads are used. Note: This content will be debited as one download at time of checkout.

Terms of Use: ASCE Library Cards are for individual, personal use only. Reselling, republishing, or forwarding the materials to libraries or reading rooms is prohibited.
ASCE Library Card (5 downloads)
$105.00
Add to cart
ASCE Library Card (20 downloads)
$280.00
Add to cart
Buy Single Article
$35.00
Add to cart

Media

Figures

Other

Tables

Share

Share

Copy the content Link

Share with email

Email a colleague

Share