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Articles

Risk-informed multi-criteria decision framework for resilience, sustainability and energy analysis of reinforced concrete buildings

ORCID Icon, , , &
Pages 804-823 | Received 04 Sep 2019, Accepted 10 Sep 2020, Published online: 04 Oct 2020

References

  • Abate, D., M. Towers, R. Dotz, and L. Romani. 2009. “The Whitestone Facility Maintenance and Repair Cost Reference 2009-2010.” Whitestone Research, California.
  • ACI 318-14. 2014. Building Code Requirements for Structural Concrete (ACI 318-14) and Commentary. Edited by Reported by ACI Committee 318. Vol. 11. MI: American Concrete Institute.
  • AlHamaydeh, Mohammad, Nader Aly, and Khaled Galal. 2017. “Impact of Seismicity on Performance and Cost of RC Shear Wall Buildings in Dubai, United Arab Emirates.” Journal of Performance of Constructed Facilities 31 (5): 04017083. doi:10.1061/(ASCE)CF.1943-5509.0001079.
  • Asadi, Esmaeel. 2020. “Risk-Informed Multi-Criteria Decision Framework for Resilience and Sustainability Assessment of Building Structures.” Case Western Reserve University. https://etd.ohiolink.edu/pg_10?0::NO:10:P10_ACCESSION_NUM:case1575381834399844.
  • Asadi, Esmaeel, and Hojjat Adeli. 2018. “Nonlinear Behavior and Design of Mid-to-Highrise Diagrid Structures in Seismic Regions.” Engineering Journal, American Institute of Steel Construction 55 (3): 161–180.
  • Asadi, Esmaeel, Yue Li, and H. YeongAe. 2018. “Seismic Performance Assessment and Loss Estimation of Steel Diagrid Structures.” ASCE Journal of Structural Engineering 144: 10. doi:10.1061/(ASCE)ST.1943-541X.0002164.
  • Asadi, Esmaeel, Abdullahi M. Salman, and Yue Li. 2019. “Multi-Criteria Decision-Making for Seismic Resilience and Sustainability Assessment of Diagrid Buildings.” Engineering Structures 191 (July): 229–246. doi:10.1016/j.engstruct.2019.04.049.
  • ASCE. 2017. Minimum Design Loads and Associated Criteria for Buildings and Other Structures. ASCE/SEI Standard No. 7-16, American Society of Civil Engineers, Reston, Virginia. doi:10.1061/9780784414248.
  • ASHRAE. 2016a. “Energy Standard for Buildings Except Low-Rise Residential Buildings.” ANSI/ASHRAE/IES Standard 90.1-2016: 90.
  • ASHRAE. 2016b. “Weather Data for Building Design Standards.” ANSI/ASHRAE Standard 169: 169.
  • ATC. 2009. “Quantification of Building Seismic Performance Factors.” Fema, P695., no. June: 421.
  • Azarbakht, Alireza, and Matjaž Dolšek. 2010. “Progressive Incremental Dynamic Analysis for First-Mode Dominated Structures.” Journal of Structural Engineering 137 (3): 445–455. doi: 10.1061/(ASCE)ST.1943-541X.0000282
  • Baglivo, Cristina, Paolo Maria Congedo, and Andrea Fazio. 2014. “Multi-Criteria Optimization Analysis of External Walls According to ITACA Protocol for Zero Energy Buildings in the Mediterranean Climate.” Building and Environment 82 (December): 467–480. doi:10.1016/j.buildenv.2014.09.019.
  • Basbagill, J., F. Flager, M. Lepech, and M. Fischer. 2013. “Application of Life-Cycle Assessment to Early Stage Building Design for Reduced Embodied Environmental Impacts.” Building and Environment 60 (February): 81–92. doi:10.1016/j.buildenv.2012.11.009.
  • Belleri, Andrea, and Alessandra Marini. 2016. “Does Seismic Risk Affect the Environmental Impact of Existing Buildings?” Energy and Buildings 110 (January): 149–158. doi:10.1016/j.enbuild.2015.10.048.
  • Bocchini, Paolo, M. Asce, Dan M Frangopol, Dist M Asce, Thomas Ummenhofer, and Tim Zinke. 2014. “Resilience and Sustainability of Civil Infrastructure : Toward a Unified Approach.” Journal of Infrastructure Systems, doi:10.1061/(ASCE)IS.1943-555X.0000177.
  • Bruneau, Michel, Stephanie E. Chang, Ronald T. Eguchi, George C. Lee, Thomas D. O’Rourke, Andrei M. Reinhorn, Masanobu Shinozuka, Kathleen Tierney, William A. Wallace, and Detlof Von Winterfeldt. 2003. “A Framework to Quantitatively Assess and Enhance the Seismic Resilience of Communities.” Earthquake Spectra 19 (4): 733–752. doi: 10.1193/1.1623497
  • Carmody, John, and Kerry Haglund. 2012. Measure Guideline: Energy-Efficient Window Performance and Selection. Golden, CO: National Renewable Energy Lab.(NREL).
  • Chau, C. K., T. M. Leung, and W. Y. Ng. 2015. “A Review on Life Cycle Assessment, Life Cycle Energy Assessment and Life Cycle Carbon Emissions Assessment on Buildings.” Applied Energy 143 (April): 395–413. doi:10.1016/j.apenergy.2015.01.023.
  • Christensen, C., R. Anderson, S. Horowitz, A. Courtney, and J. Spencer. 2006. BEopt(TM) Software for Building Energy Optimization: Features and Capabilities. NREL/TP-550-39929. Golden, CO: National Renewable Energy Lab. (NREL). doi:10.2172/891598.
  • Cimellaro, Gian Paolo, Andrei M. Reinhorn, and Michel Bruneau. 2010. “Framework for Analytical Quantification of Disaster Resilience.” Engineering Structures 32 (11): 3639–3649. doi: 10.1016/j.engstruct.2010.08.008
  • CMU GDI. 2018. Economic Input-Output Life Cycle Assessment (EIO-LCA), US 2002 Economic Benchmark Model Last Update 2010. http://www.eiolca.net.
  • Crawley, Drury B., Linda K. Lawrie, Frederick C. Winkelmann, Walter F. Buhl, Y. Joe Huang, Curtis O. Pedersen, Richard K. Strand, Richard J. Liesen, Daniel E. Fisher, and Michael J. Witte. 2001. “EnergyPlus: Creating a New-Generation Building Energy Simulation Program.” Energy and Buildings 33 (4): 319–331. doi: 10.1016/S0378-7788(00)00114-6
  • DesignBuilder. 2016. DesignBuilder Documentation, DesignBuilder User Manual Version 5. UK: DesignBuilder Software Ltd.
  • Ekici, Berk, Cemre Cubukcuoglu, Michela Turrin, and I. Sevil Sariyildiz. 2019. “Performative Computational Architecture Using Swarm and Evolutionary Optimisation: A Review.” Building and Environment 147 (January): 356–371. doi:10.1016/j.buildenv.2018.10.023.
  • Ellingwood, Bruce R. 2005. “Risk-Informed Condition Assessment of Civil Infrastructure: State of Practice and Research Issues.” Structure and Infrastructure Engineering 1 (1): 7–18. doi: 10.1080/15732470412331289341
  • Ellingwood, Bruce R., and Ji Yun Lee. 2016. “Life Cycle Performance Goals for Civil Infrastructure: Intergenerational Risk-Informed Decisions.” Structure and Infrastructure Engineering 12 (7): 822–829. doi: 10.1080/15732479.2015.1064966
  • Ellingwood, Bruce R., and Paulos Beraki Tekie. 1999. “Wind Load Statistics for Probability-Based Structural Design.” Journal of Structural Engineering 125 (4): 453–463. doi: 10.1061/(ASCE)0733-9445(1999)125:4(453)
  • FEMA. 2012. FEMA P-58: Seismic Performance Assessment of Buildings. FEMA P-58. Washington, DC: Building Seismic Safety Council for The Federal Emergency Management Agency.
  • FEMA, Pacific Disaster Center, and USGS. 2017. Hazus® Estimated Annualized Earthquake Losses for the United States. FEMA P-366. Hazus Estimated Annualized Earthquake Losses for the United States, The Federal Emergency Management Agency. Washington, DC.
  • Ferreira, Rodrigo JP, Adiel Teixeira de Almeida, and Cristiano AV Cavalcante. 2009. “A Multi-Criteria Decision Model to Determine Inspection Intervals of Condition Monitoring Based on Delay Time Analysis.” Reliability Engineering & System Safety 94 (5): 905–912. doi: 10.1016/j.ress.2008.10.001
  • FHWA. 1994. Technical Advisory: Motor Vehicle Accident Costs. T7570.2. Washington, DC: Federal Highway Administration), U.S. Dept. of Transportation.
  • Han, Ruilong, Yue Li, and John van de Lindt. 2016. “Seismic Loss Estimation with Consideration of Aftershock Hazard and Post-Quake Decisions.” ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part A: Civil Engineering 2 (4): 04016005. doi: 10.1061/AJRUA6.0000875
  • Hopfe, Christina J., Godfried L. M. Augenbroe, and Jan L. M. Hensen. 2013. “Multi-Criteria Decision Making Under Uncertainty in Building Performance Assessment.” Building and Environment 69 (November): 81–90. doi:10.1016/j.buildenv.2013.07.019.
  • Ibn-Mohammed, Taofeeq, Rick Greenough, S. Taylor, Leticia Ozawa-Meida, and Adolf Acquaye. 2013. “Operational vs. Embodied Emissions in Buildings—A Review of Current Trends.” Energy and Buildings 66: 232–245. doi: 10.1016/j.enbuild.2013.07.026
  • Invidiata, Andrea, Monica Lavagna, and Enedir Ghisi. 2018. “Selecting Design Strategies Using Multi-Criteria Decision Making to Improve the Sustainability of Buildings.” Building and Environment 139 (July): 58–68. doi:10.1016/j.buildenv.2018.04.041.
  • Jafari, Amirhosein, and Vanessa Valentin. 2018. “Selection of Optimization Objectives for Decision-Making in Building Energy Retrofits.” Building and Environment 130 (February): 94–103. doi:10.1016/j.buildenv.2017.12.027.
  • Junnila, Seppo, Arpad Horvath, and Angela Acree Guggemos. 2006. “Life-Cycle Assessment of Office Buildings in Europe and the United States.” Journal of Infrastructure Systems 12 (1): 10–17. doi: 10.1061/(ASCE)1076-0342(2006)12:1(10)
  • Kamali, Mohammad, Kasun Hewage, and Abbas S. Milani. 2018. “Life Cycle Sustainability Performance Assessment Framework for Residential Modular Buildings: Aggregated Sustainability Indices.” Building and Environment 138 (June): 21–41. doi:10.1016/j.buildenv.2018.04.019.
  • Kneifel, Joshua. 2010. “Life-Cycle Carbon and Cost Analysis of Energy Efficiency Measures in New Commercial Buildings.” Energy and Buildings 42 (3): 333–340. doi: 10.1016/j.enbuild.2009.09.011
  • Kokaraki, Nikoleta, Christina J. Hopfe, Elaine Robinson, and Elli Nikolaidou. 2019. “Testing the Reliability of Deterministic Multi-Criteria Decision-Making Methods Using Building Performance Simulation.” Renewable and Sustainable Energy Reviews 112: 991–1007. doi: 10.1016/j.rser.2019.06.018
  • Kolozvari, Kristijan, Kutay Orakcal, and John W. Wallace. 2014. “Modeling of Cyclic Shear-Flexure Interaction in Reinforced Concrete Structural Walls. I: Theory.” Journal of Structural Engineering 141 (5): 04014135. doi: 10.1061/(ASCE)ST.1943-541X.0001059
  • Lavappa, Priya D., and Joshua D. Kneifel. 2018. NISTIR 85-3273-33: Energy Price Indices and Discount Factors for Life-Cycle Cost Analysis – 2018, Annual Supplement to NIST Handbook 135. US Department of Commerce, National Institute of Standards and Technology. doi:10.6028/NIST.IR.85-3273-33.
  • Lee, Ji Yun, Henry V. Burton, and David Lallemant. 2018. “Adaptive Decision-Making for Civil Infrastructure Systems and Communities Exposed to Evolving Risks.” Structural Safety 75: 1–12. doi: 10.1016/j.strusafe.2018.05.001
  • Lloyd, Shannon M., and Robert Ries. 2007. “Characterizing, Propagating, and Analyzing Uncertainty in Life-Cycle Assessment: A Survey of Quantitative Approaches.” Journal of Industrial Ecology 11 (1): 161–179. doi:10.1162/jiec.2007.1136.
  • Martínez-Rocamora, Alejandro, Jaime Solís-Guzmán, and Madelyn Marrero. 2017. “Ecological Footprint of the Use and Maintenance Phase of Buildings: Maintenance Tasks and Final Results.” Energy and Buildings 155 (November): 339–351. doi:10.1016/j.enbuild.2017.09.038.
  • Mazzoni, Silvia, Frank McKenna, Michael H. Scott, and Gregory L. Fenves. 2006. “The Open System for Earthquake Engineering Simulation (OpenSEES) User Command-Language Manual.”.
  • Mitrani-Reiser, Judith. 2007. An Ounce of Prevention: Probabilistic Loss Estimation for Performance-Based Earthquake Engineering. Pasadena, CA: California Institute of Technology.
  • Nadoushani, Moussavi, S. Zahra, Ali Akbarnezhad, Javier Ferre Jornet, and Jianzhuang Xiao. 2017. “Multi-Criteria Selection of Façade Systems Based on Sustainability Criteria.” Building and Environment 121 (August): 67–78. doi:10.1016/j.buildenv.2017.05.016.
  • Ochoa, Luis, Chris Hendrickson, and H. Scott Matthews. 2002. “Economic Input-Output Life-Cycle Assessment of US Residential Buildings.” Journal of Infrastructure Systems 8 (4): 132–138. doi: 10.1061/(ASCE)1076-0342(2002)8:4(132)
  • Padgett, Jamie Ellen, and Reginald DesRoches. 2007. “Sensitivity of Seismic Response and Fragility to Parameter Uncertainty.” Journal of Structural Engineering 133 (12): 1710–1718. doi: 10.1061/(ASCE)0733-9445(2007)133:12(1710)
  • Padgett, Jamie E., and Yue Li. 2016. “Risk-Based Assessment of Sustainability and Hazard Resistance of Structural Design.” Journal of Performance of Constructed Facilities 30: 2. doi: 10.1061/(ASCE)CF.1943-5509.0000723
  • Park, Hyo Seon, Jin Woo Hwang, and Byung Kwan Oh. 2018. “Integrated Analysis Model for Assessing CO2 Emissions, Seismic Performance, and Costs of Buildings Through Performance-Based Optimal Seismic Design with Sustainability.” Energy and Buildings 158 (January): 761–775. doi:10.1016/j.enbuild.2017.10.070.
  • Ramirez, C.Marcelo, and Eduardo Miranda. 2012. “Significance of Residual Drifts in Building Earthquake Loss Estimation.” Earthquake Engineering & Structural Dynamics 41: 1477–1493. doi:10.1002/eqe. doi: 10.1002/eqe.2217
  • Ramon, Jose, and San Cristobal. 2012. Multi Criteria Analysis in the Renewable Energy Industry. Springer-Verlag London. doi:10.1007/978-1-4471-2346-0.
  • Robati, Mehdi, Georgios Kokogiannakis, and Timothy J. McCarthy. 2017. “Impact of Structural Design Solutions on the Energy and Thermal Performance of an Australian Office Building.” Building and Environment 124: 258–282. doi: 10.1016/j.buildenv.2017.08.018
  • Roostaie, S., N. Nawari, and C. J. Kibert. 2019. ““Sustainability and Resilience: A Review of Definitions, Relationships, and Their Integration Into a Combined Building Assessment Framework.” Building and Environment, doi:10.1016/j.buildenv.2019.02.042.
  • RSMeans. 2018. RSMeans Data Online. Rockland, MA: Gordian Rsmeans. com.
  • Sutley, Elaina J., John W. van de Lindt, and Lori Peek. 2016. “Community-Level Framework for Seismic Resilience. II: Multiobjective Optimization and Illustrative Examples.” Natural Hazards Review 18 (3): 04016015. doi: 10.1061/(ASCE)NH.1527-6996.0000230
  • Tran, Thien A., and John W. Wallace. 2015. “Cyclic Testing of Moderate-Aspect-Ratio Reinforced Concrete Structural Walls.” ACI Structural Journal 112 (6): 653. doi: 10.14359/51687907
  • Triantaphyllou, Evangelos, B. Shu, S. Nieto Sanchez, and Tony Ray. 1998. “Multi-Criteria Decision Making: An Operations Research Approach.” Encyclopedia of Electrical and Electronics Engineering 15: 175–186.
  • US BLS. 2018. “Average Energy Prices In Boston-Cambridge-Newton – December 2018 : New England Information Office : U.S. Bureau of Labor Statistics.” https://www.bls.gov/regions/new-england/news-release/averageenergyprices_boston.htm.
  • Wallenius, Jyrki, James S. Dyer, Peter C. Fishburn, Ralph E. Steuer, Stanley Zionts, and Kalyanmoy Deb. 2008. “Multiple Criteria Decision Making, Multiattribute Utility Theory: Recent Accomplishments and What Lies Ahead.” Management Science 54 (7): 1336–1349. doi: 10.1287/mnsc.1070.0838
  • Wang, Jiangyu, Huanxin Chen, Yue Yuan, and Yao Huang. 2019. “A Novel Efficient Optimization Algorithm for Parameter Estimation of Building Thermal Dynamic Models.” Building and Environment 153 (April): 233–240. doi:10.1016/j.buildenv.2019.02.006.
  • Wood, David A., and Rassoul Khosravanian. 2015. “Exponential Utility Functions Aid Upstream Decision Making.” Journal of Natural Gas Science and Engineering 27: 1482–1494. doi: 10.1016/j.jngse.2015.10.012
  • Zavadskas, Edmundas Kazimieras, Artūras Kaklauskas, Friedel Peldschus, and Zenonas Turskis. 2007. “Multi-Attribute Assessment of Road Design Solutions by Using the COPRAS Method.” Baltic Journal of Road & Bridge Engineering 2: 4.
  • Zheng, Linzi, and Joseph Lai. 2018. “Environmental and Economic Evaluations of Building Energy Retrofits: Case Study of a Commercial Building.” Building and Environment 145 (November): 14–23. doi:10.1016/j.buildenv.2018.09.007.

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