REFERENCES

1. Lu D. Pavement flooding risk assessment and management in the changing climate. 2020. Available online: http://hdl.handle.net/10012/15474 [Last accessed on 16 June 2023].

2. Sen M, Dutta S. An integrated GIS-BBN approach to quantify resilience of roadways network infrastructure system against flood hazard. ASCE-ASME J Risk A Civ Eng 2020;6:04020045.

3. Zhang N, Alipour A. Multi-scale robustness model for highway networks under flood events. Transp Res D Transp Environ 2020;83:102281.

4. D'este GM, Taylor MAP. Network vulnerability: an approach to reliability analysis at the level of national strategic transport networks. In: The network reliability of transport. Bell MGH, Iida Y, editors. Bradford: Emerald Group Publishing Limited; 2003. pp. 23-44.

5. Muriel-Villegas JE, Alvarez-Uribe KC, Patiño-Rodríguez CE, Villegas, JG. Analysis of transportation networks subject to natural hazards-insights from a Colombian case. Reliab Eng Syst Saf 2016;152:151-165.

6. Ang AHS, Tang W. Probability concepts in engineering planning and design, Volumes I (1975) and II (1984). Nerw York: Wiley, 1975.

7. Iida Y, Wakabayashi H. An approximation method of terminal reliability of road network using partial minimal path and cut sets. In: Transport policy, management & technology towards 2001: selected proceedings of the fifth world conference on transport research. Evanston: Northwestern University; 1989. pp. 367-80.

8. Javanbarg MB, Scawthorn C, Kiyono J, Ono Y. Reliability analysis of infrastructure and lifeline networks using OBDD. In: Safety, reliability and risk of structures, infrastructures and engineering systems. London: Taylor & Francis; 2010. pp. 3463-70.

9. Xing L. An efficient binary-decision-diagram-based approach for network reliability and sensitivity analysis. IEEE Trans Syst Man Cybern A 2008;38:105-15.

10. Neumann T, Behrisch M. Terminal reliability of road networks with multiple destination options. Int J SAFE 2018;8:426-37.

11. Karduni A, Kermanshah A, Derrible S. A protocol to convert spatial polyline data to network formats and applications to world urban road networks. Sci Data 2016;3:160046.

12. Porter K. A beginner’s guide to fragility, vulnerability, and risk. In: Encyclopedia of earthquake engineering. Beer M, Kougioumtzoglou IA, Patelli E, Au IS, editors. Berlin: Springer Berlin Heidelberg; 2014. pp. 1-29.

13. Lu D, Tighe SL, Xie WC. Pavement fragility modeling framework and build-in resilience strategies for flood hazard (No. 17-01735). In: Transportation research board 96th annual meeting, 8-12 Jan 2023; Washington DC, USA.

14. Nazari YR, Bargi K. Practical approach to fragility analysis of bridges. Res J Appl Sci Eng Tech 2012;4:5177-82. Available online: https://www.airitilibrary.com/Publication/alDetailedMesh?docid=20407467-201212-201512080013-201512080013-5177-5182 [Last accessed on 16 June 2023]

15. Rogelis MC. Flood risk in road networks. 2015. Available online: http://hdl.handle.net/10986/22980 [Last accessed on 16 June 2023].

16. ASDMA. Technical report and atlas on remote sensing and gis based inputs for hazard risk vulnerability assessment of guwahati city, silchar, dibrugarh towns and dhemaji district, ASSAM, Volume II (Silchar Town), 2014. Available online: https://www.asdma.gov.in/download/HRVA_Atlas%20Dhemaji,%20Guwahati,%20Silchar%20&%20Dibrugarh.rar [Last accessed on 26 June 2023].

17. Pregnolato M, Ford A, Wilkinson SM, Dawson RJ. The impact of flooding on road transport: a depth-disruption function. Transp Res D Transp Environ 2017;55:67-81.

18. Habermann N, Hedel R. Damage functions for transport infrastructure. Int J Dis Resil Built Environ 2018;9:420-34.

19. Rosca E, Popa M, Rusca F. Transport networks reliability and vulnerability in large urban areas. 2008. pp. I26-31. Available online: https://www.researchgate.net/publication/281061451_Transport_network_reliability_and_vulnerability_in_large_urban_areas [Last accessed on 16 June 2023].

20. Zhao X, Wang D, Yan Y, Gu Z. Stochastic simulation on system reliability and component probabilistic importance of road network. Math Probl Eng 2015;2015:456485.

21. Iida Y. Basic concepts and future directions of road network reliability analysis. J Adv Transp 1999;33:125-34.

22. Fishman GS. A monte carlo sampling plan for estimating network reliability. Oper Res 1986;34:581-94.

23. Gertsbakh I, Shpungin Y. Direct network reliability calculation. In: Network reliability. Singapore: Springer; 2020. pp. 21-34.

24. Gertsbakh I, Shpungin Y. Elementary methods for reliability evaluation. In: Network reliability. Singapore: Springer; 2020. pp. 35-47.

25. Liu J, Lu H, Ma H, Liu W. Network vulnerability analysis of rail transit plans in Beijng-Tianjin-Hebei region considering connectivity reliability. Sustainability 2017;9:1479.

26. Shang W, Chen Y, Bi H, Zhang H, Ma C, Ochieng WY. Statistical characteristics and community analysis of urban road networks. Complexity 2020;2020:1-21.

27. Liu W, Li X, Liu T, Liu B. Approximating betweenness centrality to identify key nodes in a weighted urban complex transportation network. J Adv Transp 2019;2019:1-8.

28. HEC-RAS 5.0.7 US army corps of engineers; 2019.

29. ArcGIS 10.8.1 Esri; 2020.

30. Python 3.7.9 Python software foundation; 2020.

31. Stern R, Song J, Work D. Accelerated monte carlo system reliability analysis through machine-learning-based surrogate models of network connectivity. Reliab Eng Syst Saf 2017;164:1-9.

32. Chen D, Lü L, Shang M, Zhang Y, Zhou T. Identifying influential nodes in complex networks. Physica A 2012;391:1777-87.

33. Segarra S, Ribeiro A. Stability and continuity of centrality measures in weighted graphs. IEEE Trans Signal Process 2016;64:543-55.

34. Valente TW, Coronges K, Lakon C, Costenbader E. How correlated are network centrality measures? Connect 2008;28:16-26.

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