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Structure and Infrastructure Engineering
Maintenance, Management, Life-Cycle Design and Performance
Volume 16, 2020 - Issue 11
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Articles

Functionality indicator for an occupant-centred performance model of high-rise residential buildings subjected to earthquakes

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Pages 1493-1511 | Received 27 Nov 2018, Accepted 27 Sep 2019, Published online: 25 Jan 2020

References

  • Barlow, R. E., & Heidtmann, K. D. (1984). Computing k-out-of-n system reliability. IEEE Transactions on Reliability, 33(4), 322–323. doi:10.1109/TR.1984.5221843
  • Baumann, D. D., Boland, J., & Hanemann, W. M. (1998). Urban water demand management and planning. New York: McGraw-Hill.
  • Bocchini, P., Frangopol, D. M., Ummenhofer, T., & Zinke, T. (2014). Resilience and sustainability of civil infrastructure: Toward a unified approach. Journal of Infrastructure Systems, 20(2), 04014004. doi:10.1061/(ASCE)IS.1943-555X.0000177
  • Building Seismic Safety Council (BSSC). (2009). NEHRP recommended seismic provisions for new buildings and other structures (Report No. FEMA-750). Washington, D.C.
  • Burton, H. V., Deierlein, G., Lallemant, D., & Lin, T. (2015). Framework for incorporating probabilistic building performance in the assessment of community seismic resilience. Journal of Structural Engineering, 142(8), C4015007. doi:10.1061/(ASCE)ST.1943-541X.0001321
  • Cao, J. L., & Gao, Q. S. (2018). The influence of infill wall stiffness on the calculation of structural displacement. Construction & Design for Engineering, 8, 8–10. (in Chinese).
  • Chang, S. E., McDaniels, T., Fox, J., Dhariwal, R., & Longstaff, H. (2014). Toward disaster-resilient cities: Characterizing resilience of infrastructure systems with expert judgments. Risk Analysis, 34(3), 416–434. doi:10.1111/risa.12133
  • Cimellaro, G. P., Reinhorn, A. M., & Bruneau, M. (2010a). Seismic resilience of a hospital system. Structure and Infrastructure Engineering, 6(1-2), 127–144. doi:10.1080/15732470802663847
  • Cimellaro, G. P., Reinhorn, A. M., & Bruneau, M. (2010b). Framework for analytical quantification of disaster resilience. Engineering Structures, 32(11), 3639–3649. doi:10.1016/j.engstruct.2010.08.008
  • Deuerlein, J. W. (2008). Decomposition model of a general water supply network graph. Journal of Hydraulic Engineering, 134(6), 822–832. doi:10.1061/(ASCE)0733-9429(2008)134:6(822)
  • Dueñas-Osorio, L., Craig, J. I., & Goodno, B. J. (2007). Seismic response of critical interdependent networks. Earthquake Engineering & Structural Dynamics, 36(2), 285–306. doi:10.1002/eqe.626
  • Dvorkin, E. N., & Bathe, K. J. (1984). A continuum mechanics based four node shell element for general nonlinear analysis. Engineering Computations, 1(1), 77–88. doi:10.1108/eb023562
  • Ellingwood, B. R., Celik, O. C., & Kinali, K. (2007). Fragility assessment of building structural systems in Mid-741. Earthquake Engineering & Structural Dynamics, 36(13), 1935–1952. doi:10.1002/eqe.693
  • Ellingwood, B. R., Cutler, H., Gardoni, P., Peacock, W. G., van de Lindt, J. W., & Wang, N. (2016). The Centerville virtual community: A fully integrated decision model of interacting physical and social infrastructure systems. Sustainable and Resilient Infrastructure, 1(3-4), 95–107. doi:10.1080/23789689.2016.1255000
  • Esposito, S., Iervolino, I., d'Onofrio, A., Santo, A., Cavalieri, F., & Franchin, P. (2015). Simulation‐based seismic risk assessment of gas distribution networks. Computer-Aided Civil and Infrastructure Engineering, 30(7), 508–523. doi:10.1111/mice.12105
  • Federal Emergency Management Agency (FEMA). (2000). Prestandard and commentary for the seismic rehabilitation of buildings (Report No. FEMA-356). Washington, DC.
  • Federal Emergency Management Agency (FEMA). (2006). Next generation performance based seismic design guidelines. Program plan for new and existing buildings (Report No. FEMA-445). Washington, DC.
  • Federal Emergency Management Agency (FEMA). (2010). Hazus-MH MR5 Technical Manual. Multi-Hazard Loss Estimation Methodology Earthquake Model. Washington, DC.
  • Federal Emergency Management Agency (FEMA). (2012). Seismic performance assessment of buildings (Report No. FEMA P-58). Washington, DC.
  • Feng, K., Wang, N., Li, Q., & Lin, P. (2017). Measuring and enhancing resilience of building portfolios considering the functional interdependence among community sectors. Structural Safety, 66, 118–126. doi:10.1016/j.strusafe.2017.02.006
  • Filippou, F. C., Popov, E. P., & Bertero, V. V. (1983). Effects of bond deterioration on hysteretic behavior of reinforced concrete joints (Report EERC 83-19). Earthquake Engineering Research Center, University of California, Berkeley.
  • Francis, R., & Bekera, B. (2014). A metric and frameworks for resilience analysis of engineered and infrastructure systems. Reliability Engineering & System Safety, 121, 90–103. doi:10.1016/j.ress.2013.07.004
  • GB50011. (2010). Code for seismic design of buildings. Beijing, China: China Architecture & Building Press (in Chinese).
  • Hamideh, S., & Rongerude, J. (2018). Social vulnerability and participation in disaster recovery decisions: Public housing in Galveston after Hurricane Ike. Natural Hazards, 93(3), 1629–1648. doi:10.1007/s11069-018-3371-3
  • Hassan, E. M., & Mahmoud, H. (2018). A framework for estimating immediate interdependent functionality reduction of a steel hospital following a seismic event. Engineering Structures, 168, 669–683. doi:10.1016/j.engstruct.2018.05.009
  • Hosseini, S., Barker, K., & Ramirez-Marquez, J. E. (2016). A review of definitions and measures of system resilience. Reliability Engineering & System Safety, 145, 47–61. doi:10.1016/j.ress.2015.08.006
  • JGJ3-2010. (2011). Technical specification for concrete structures of tall building. Beijing, China, China Architecture & Building Press (in Chinese).
  • Koliou, M., van de Lindt, J. W., McAllister, T. P., Ellingwood, B. R., Dillard, M., & Cutler, H. (2018). A critical appraisal of community resilience studies: Progress and challenges. Sustainable and Resilient Infrastructure, 1–21. doi:10.1080/23789689.2017.1418547
  • Lin, P., & Wang, N. (2017). Stochastic post-disaster functionality recovery of community building portfolios I: Modeling. Structural Safety, 69, 96–105. doi:10.1016/j.strusafe.2017.05.002
  • Mahmoud, H., & Chulahwat, A. (2018). Spatial and temporal quantification of community resilience: Gotham city under attack. Computer-Aided Civil and Infrastructure Engineering, 33(5), 353–372. doi:10.1111/mice.12318
  • Mallick, D. V., & Severn, R. T. (1967). The behaviour of infilled frames under static loading. Proceedings of the Institution of Civil Engineers, 38(4), 639–656. doi:10.1680/iicep.1967.8192
  • Maslow, A. H. (1943). A theory of human motivation. Psychological Review, 50(4), 370–396. doi:10.1037/h0054346
  • Maslow, A. H., Frager, R., Fadiman, J., McReynolds, C., & Cox, R. (1970). Motivation and personality, Harper & Row, New York.
  • Mazzoni, S., McKenna, F., Scott, M. H., & Fenves, G. L. (2011). Open system for earthquake engineering simulation (OpenSees) command language manual. Berkeley, CA: University of California. Retrieved from http://OpenSees.berkeley.edu/wiki/index.php/Command_Manual.
  • Mieler, M., Stojadinovic, B., Budnitz, R., Comerio, M., & Mahin, S. (2015). A framework for linking community-resilience goals to specific performance targets for the built environment. Earthquake Spectra, 31(3), 1267–1283. doi:10.1193/082213EQS237M
  • Mileti, D. S., & O'Brien, P. W. (1992). Warnings during disaster: Normalizing communicated risk. Social Problems, 39(1), 40–57. doi:10.2307/3096912
  • National Bureau of Statistics (NBS). (2012). Tabulation on the 2010 Census of the People’s Republic of China. Retrieved from http://www.stats.gov.cn/tjsj/pcsj/rkpc/6rp/indexch.htm. (in Chinese).
  • Pacific Earthquake Engineering Research Center (PEER). (2013). PEER strong motion database. Retrieved from https://ngawest2.berkeley.edu.
  • Pitilakis, K., Crowley, H., & Kaynia, A. (2014). SYNER-G: Typology definition and fragility functions for physical elements at seismic risk. Dordrecht, Netherlands: Springer.
  • Poljanšek, K., Bono, F., & Gutiérrez, E. (2012). Seismic risk assessment of interdependent critical infrastructure systems: The case of European gas and electricity networks. Earthquake Engineering & Structural Dynamics, 41(1), 61–79. doi:10.1002/eqe.1118
  • Polyakov, S. V. (1960). On the interaction between masonry filler walls and enclosing frame when loaded in the plane of the wall. Translations in Earthquake Engineering (pp. 36–42). Earthquake engineering Research Institute (EERI), Oakland, California.
  • Reed, D. A., Kapur, K. C., & Christie, R. D. (2009). Methodology for assessing the resilience of networked infrastructure. IEEE Systems Journal, 3(2), 174–180. doi:10.1109/JSYST.2009.2017396
  • Reed, D., Wang, S., Kapur, K., & Zheng, C. (2015). Systems-based approach to interdependent electric power delivery and telecommunications infrastructure resilience subject to weather-related hazards. Journal of Structural Engineering, 142(8), C4015011. doi:10.1061/(ASCE)ST.1943-541X.0001395
  • Sharma, N., Tabandeh, A., & Gardoni, P. (2017). Resilience analysis: a mathematical formulation to model resilience of engineering systems. Sustainable and Resilient Infrastructure, 3(2), 49-67. doi:10.1080/23789689.2017.1345257
  • Shelter-in-Place Task Force (SPUR). (2012). Safe enough to stay. San Francisco, CA: San Francisco Bay Area Planning and Urban Research Association.
  • Spacone, E., Filippou, F. C., & Taucer, F. F. (1996). Fiber beam-column model for non-linear analysis of R/C frames: Part I. Earthquake Engineering & Structural Dynamics, 25(7), 711–725. doi:10.1002/(SICI)1096-9845(199607)25:7<711::AID-EQE576>3.0.CO;2-9
  • Sutley, E. J., & Hamideh, S. (2018). An interdisciplinary system dynamics model for post-disaster housing recovery. Sustainable and Resilient Infrastructure, 3(3), 109–127. doi:10.1080/23789689.2017.136456
  • TY01-09. (2016). Construction and installation time quota. Beijing, China: China Architecture & Building Press (in Chinese).
  • Unnikrishnan, V. U., & van de Lindt, J. W. (2016). Probabilistic framework for performance assessment of electrical power networks to tornadoes. Sustainable and Resilient Infrastructure, 1(3-4), 137–152. Vol Issue doi:10.1080/23789689.2016.1254998
  • Utsu, T., Ogata, Y., & Matsuura, R.S. (1995). The centenary of the Omori formula for a decay law of aftershock activity. Journal of Physics of the Earth, 43(1), 1–33. doi:10.4294/jpe1952.43.1
  • Vamvatsikos, D., & Cornell, C. A. (2002). Incremental dynamic analysis. Earthquake Engineering & Structural Dynamics, 31(3), 491–514. doi:10.1002/eqe.141
  • Yassin, M. H. M. (1994). Nonlinear analysis of prestressed concrete structures under monotonic and cycling loads (doctoral dissertation). University of California, Berkeley, CA.
  • Zhang, W., & Nicholson, C. (2016). A multi-objective optimization model for retrofit strategies to mitigate direct economic loss and population dislocation. Sustainable and Resilient Infrastructure, 1(3-4), 123–136. doi:10.1080/23789689.2016.1254995
  • Zhang, W., Wang, N., & Nicholson, C. (2017). Resilience-based post-disaster recovery strategies for road-bridge networks. Structure and Infrastructure Engineering, 13(11), 1404–1410. doi:10.1080/15732479.2016.1271813

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