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Designing Resilience of the Built Environment to Extreme Weather Events

Author

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  • Ljubomir Jankovic

    (School of Creative Arts, University of Hertfordshire, Hatfield AL10 9AB, UK)

Abstract

Built environment comprises of a multitude of complex networks of buildings and processes in and between buildings. The paper looks at resilience design on three different levels: the building, the site, and the region. The building resilience design is studied using multi-objective optimization of a recently completed Passivhaus retrofit, under four different climate years: current, 2030, 2050, and 2080. The site resilience design is studied on the basis of a balance between incoming solar radiation and evaporative cooling from transpiration of plants to mitigate heat island effect. The regional resilience design is studied using a network model, taking into account connectivity, information capacity, and the ability to reconfigure. A common denominator found between these three aspects is a degree of system redundancy. Thus, a provision for adaptable building thermal insulation, a provision for adaptable green areas, and a provision for adaptable connectivity are the ingredients for resilient designs on these three respective levels. The findings increase our understanding of practical issues and implications for the resilience design of the built environment under extreme weather events. A combination of qualitative and quantitative approaches discussed in the paper provides practical guidance for designers and policy makers.

Suggested Citation

  • Ljubomir Jankovic, 2018. "Designing Resilience of the Built Environment to Extreme Weather Events," Sustainability, MDPI, vol. 10(1), pages 1-14, January.
  • Handle: RePEc:gam:jsusta:v:10:y:2018:i:1:p:141-:d:126145
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    References listed on IDEAS

    as
    1. Mahmoud Haggag & Ahmed Hassan & Ghulam Qadir, 2017. "Energy and Economic Performance of Plant-Shaded Building Façade in Hot Arid Climate," Sustainability, MDPI, vol. 9(11), pages 1-11, November.
    2. Laijun Zhao & Huiyong Li & Yan Sun & Rongbing Huang & Qingmi Hu & Jiajia Wang & Fei Gao, 2017. "Planning Emergency Shelters for Urban Disaster Resilience: An Integrated Location-Allocation Modeling Approach," Sustainability, MDPI, vol. 9(11), pages 1-20, November.
    3. Ayyoob Sharifi & Lorenzo Chelleri & Cate Fox-Lent & Stelios Grafakos & Minal Pathak & Marta Olazabal & Susie Moloney & Lily Yumagulova & Yoshiki Yamagata, 2017. "Conceptualizing Dimensions and Characteristics of Urban Resilience: Insights from a Co-Design Process," Sustainability, MDPI, vol. 9(6), pages 1-20, June.
    4. Silvio Caputo & Maria Caserio & Richard Coles & Ljubomir Jankovic & Mark R. Gaterell, 2015. "Urban resilience: two diverging interpretations," Journal of Urbanism: International Research on Placemaking and Urban Sustainability, Taylor & Francis Journals, vol. 8(3), pages 222-240, September.
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    Cited by:

    1. Uttama Barua & Mohammad Mojtahedi & Hoon Han & Mehedi Ahmed Ansary, 2025. "Conceptualizing Resilience, Sustainability and Smartness for Building Fire Risk Management," Sustainable Development, John Wiley & Sons, Ltd., vol. 33(S1), pages 1328-1354, November.
    2. Wei, Mingjun & Jiang, Zixin & Pandey, Pratik & Liu, Mingzhe & Li, Rongling & O'Neill, Zheng & Dong, Bing & Hamdy, Mohamed, 2025. "Energy resilience in the built environment: A comprehensive review of concepts, metrics, and strategies," Renewable and Sustainable Energy Reviews, Elsevier, vol. 210(C).
    3. Eva Lucas Segarra & Hu Du & Germán Ramos Ruiz & Carlos Fernández Bandera, 2019. "Methodology for the Quantification of the Impact of Weather Forecasts in Predictive Simulation Models," Energies, MDPI, vol. 12(7), pages 1-16, April.

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