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Review Article

Adaptive office buildings: improving functional flexibility in response to shifting needs using kinetic technology’

, , &
Received 01 Dec 2023, Accepted 04 Mar 2024, Published online: 21 Mar 2024

References

  • Abdulpader, O. Q., & Sabah, O. A. (2014). Impact of flexibility principle on the efficiency of interior design - IMPRESSO. International Transaction Journal of Engineering, Management, & Applied Sciences & Technologies, 5(3), 195–212. http://tuengr.com
  • Ahmed, A. N., & Aziz, S. A. (2019). Office building adaptability through buildings’ layers. Zanco Journal of Pure and Applied Sciences, 31(5). http://doi.org/10.21271/zjpas.31.5.12
  • Akgün, Y., Erkarslan, Ö. E., & Kavuncuoğlu, C. (2022). Tectonics of kinetic architecture: Moving envelope, changing space and the shades of the shed. Frontiers in Built Environment, 8, 1–18. https://doi.org/10.3389/fbuil.2022.1006300
  • Alhusban, A. A., Alhusban, S. A., & Alhusban, M. A. (2022). How the COVID 19 pandemic would change the future of architectural design. Journal of Engineering, Design and Technology, 20(1), 339–357. https://doi.org/10.1108/JEDT-03-2021-0148
  • Alkhansari, M. (2018). Toward a convergent model of flexibility in architecture. Journal of Architecture and Urbanism, 42(2), 120–133. https://doi.org/10.3846/jau.2018.6241
  • Alkhayyat, J. M. J. (2013). Design strategy for adaptive kinetic patterns: Creating a generative design for dynamic solar shading systems.
  • Almajidi, B. H., Marqus, R. W., & Mudhaffar Yacoub, G. (2021). Functional flexibility as a criticism mechanism in contemporary architecture. IOP Conference Series: Materials Science and Engineering, 1105(1), 012088.
  • Asefi, M. (2012). Transformation and movement in architecture: The marriage among art, engineering and technology. Procedia - Social and Behavioral Sciences, 51, 1005–1010. https://doi.org/10.1016/j.sbspro.2012.08.278
  • Awada, M., Becerik-Gerber, B., White, E., Hoque, S., O’Neill, Z., Pedrielli, G., … Wu, T. (2022). Occupant health in buildings: Impact of the COVID-19 pandemic on the opinions of building professionals and implications on research. Building and Environment, 207(PA), 108440. https://doi.org/10.1016/j.buildenv.2021.108440
  • Behzadinasab, S., Chin, A., Hosseini, M., Poon, L., & Ducker, W. A. (2020). A surface coating that rapidly inactivates SARS-CoV-2. ACS Applied Materials and Interfaces, 12(31), 34723–34727. https://doi.org/10.1021/acsami.0c11425
  • Cavalliere, C., Dell’Osso, G. R., Favia, F., & Lovicario, M. (2019). BIM-based assessment metrics for the functional flexibility of building designs. Automation in Construction, 107. https://doi.org/10.1016/j.autcon.2019.102925
  • Celadyn, M. (2019). Interior architectural design for adaptive reuse in application of environmental sustainability principles. Sustainability (Switzerland), 11(14). https://doi.org/10.3390/su11143820
  • Cirrincione, L., Plescia, F., Ledda, C., Rapisarda, V., Martorana, D., Moldovan, R. E., … Cannizzaro, E. (2020). COVID-19 pandemic: Prevention and protection measures to be adopted at the workplace. Sustainability, 12(9), 3603. https://doi.org/10.3390/su12093603
  • Cortiços, N. D., & Duarte, C. C. (2021). COVID-19: The impact in US high-rise office buildings energy efficiency. Energy and Buildings, 249, 111180. https://doi.org/10.1016/j.enbuild.2021.111180
  • Cristiana Cellucci, M. D. S. (2015, July). The flexible housing: Criteria and strategies for implementation of the flexibility. Journal of Civil Engineering and Architecture, 9(7).
  • De Paris, S. R., and C. N. L. Lopes. (2018). Housing flexibility problem: Review of recent limitations and solutions. Frontiers of Architectural Research, 7(1), 80–91.
  • El Razaz, Z. (2010). Sustainable vision of kinetic architecture. Journal of Building Appraisal, 5(4), 341–356.
  • El Samaty, H., Waseef, A., & Badawy, N. (2023). The effects of city morphology on airborne transmission of COVID-19. Case study: Port Said City, Egypt.
  • Eltarabily, S., & Elgheznawy, D. (2020). Post-Pandemic cities – The impact of COVID-19 on Cities and Urban Design. Architecture Research, 10(3), 75–84.
  • El-Zanfaly, D. E. M. (2011). Active Shapes: Introducing guidelines for designing kinetic architectural structures.
  • Estaji, H. (2017). A review of Flexibility and Adaptability in Housing Design. International Journal of Contemporary Architecture “The New ARCH“, 4(2), 37–49.
  • Faulkner, C. A., Castellini, J. E., Zuo, W., Lorenzetti, D. M., & Sohn, M. D. (2022). Investigation of HVAC operation strategies for office buildings during COVID-19 pandemic. Building and Environment, 207(PB), 108519.
  • Fawaz. (2024). Towards an Action Plan to Improve the Role of Perforated Building Envelopes in Sustainable Design.
  • Folke, C., Carpenter, S. R., Walker, B., Scheffer, M., Chapin, T., & Rockström, J. (2010). Resilience thinking: Integrating resilience, adaptability and transformability. Ecology and Society. https://doi.org/10.5751/ES-03610-150420
  • Fouad, S., & Khalil, A. (2019). Design Methodology Kinetic Architecture Related papers Design Methodology : Kinetic Architecture Presented to the Graduate School Master of Science.
  • Fouad, S. M. A. E.-H. (2012). Design Methodology : Kinetic Architecture (Issue July, p. 9).
  • Gamal, A., Nashaat, B., Shahda, M. M., & Nosier, S. R. (2024). Ten questions concerning the integration of digital fabrication techniques into the architectural design process.
  • Geraedts, R., Remøy, H., & Hermans, M. (2014). Aadaptive Capacity of Buildings.
  • Geraedts, R. P. (2008). Design for change; flexibility Key performance indicators. 1st International Conference on Industrialised, Integrated, Intelligent Construction (I3CON), May, 11.
  • Gosling, J., Naim, M., Sassi, P., Iosif, L., & Lark, R. (2008). Flexible buildings for an adaptable and sustainable future. Association of Researchers in Construction Management, ARCOM 2008 - Proceedings of the 24th Annual Conference, 1, 115–124.
  • Hassanein, H. (2019). Utilization of “Multiple Kinetic Technology KT” in interior architecture design as concept of futuristic innovation. The Academic Research Community Publication, 2(4), 302. https://doi.org/10.21625/archive.v2i4.370
  • Heidrich, O., Kamara, J., Maltese, S., Re Cecconi, F., & Dejaco, M. C. (2017). A critical review of the developments in building adaptability. International Journal of Building Pathology and Adaptation, 35(4), 284–303. https://doi.org/10.1108/IJBPA-03-2017-0018
  • Herthogs, P., Debacker, W., Tunçer, B., De Weerdt, Y., & De Temmerman, N. (2019). Quantifying the generality and adaptability of building layouts using weighted graphs: The SAGA method. Buildings, 9(4), 92–20. https://doi.org/10.3390/buildings9040092
  • Hosseini M., Chin A., Behzadinasab S., Poon L., & Ducher W. (2021). Cupric oxide coating that rapidly reduces infection by SARS-CoV-2 via solids.
  • Ingram, C., Downey, V., Roe, M., Chen, Y., Archibald, M., Kallas, K.-A., … Wainwright, E. (2021). COVID-19 prevention and control measures in workplace settings: A rapid review and Meta-Analysis. International Journal of Environmental Research and Public Health, 18. https://doi.org/10.3390/ijerph18157847
  • Israelsson, N., & Hansson, B. (2009). Factors influencing flexibility in buildings. Structural Survey, 27(2), 148–161. https://doi.org/10.1108/02630800910956461
  • Kim, Y.-J. (2013). On flexibility in architecture focused on the contradiction in designing flexible space and its design proposition. Architectural Research, 15(4), 191–200. https://doi.org/10.5659/AIKAR.2013.15.4.191
  • Kronenburg, R. (2013). Architecture in motion: The history and development of portable building, 1–318. https://doi.org/10.4324/9780203408964
  • Liu, Y., Ning, Z., Chen, Y., Guo, M., Liu, Y., Kumar Gali, N., … Lan, K. (2020). Aerodynamic analysis of SARS-CoV-2 in two Wuhan hospitals. Nature, 582(7813), 557–560.
  • Macozoma, D. S. (2002). Understanding the concept of flexibility in design for deconstruction. In Proceedings of the CIB Task Group 39 – Deconstruction Meeting (Issue 9 April).
  • McDowell, C. P., Herring, M. P., Lansing, J., Brower, C., & Meyer, J. D. (2020). Working from home and job loss due to the COVID-19 pandemic are associated with greater time in sedentary behaviors. Frontiers in Public Health, 8. https://doi.org/10.3389/fpubh.2020.597619
  • Megahed. (2016). Understanding kinetic architecture: typology, classification, and design strategy.
  • Megahed, N. A. (2017). Origami Folding and its Potential for Architecture Students.
  • Megahed, N. A., & Ghoneim, E. M. (2020). Antivirus-built environment: Lessons learned from Covid-19 pandemic. Sustainable Cities and Society, 61(May), 102350. https://doi.org/10.1016/j.scs.2020.102350
  • Megahed, N. A., & Hassan, A. M. (2022). A blended learning strategy: Reimagining the post-Covid-19 architectural education.
  • Nair, A. N., Anand, P., George, A., & Mondal, N. (2022). A review of strategies and their effectiveness in reducing indoor airborne transmission and improving indoor air quality. Environmental Research, 213, 113579. https://doi.org/10.1016/j.envres.2022.113579
  • Nashaat, B. (2018). Kinetic Architecture: Concepts, History and Applications.
  • Navaratnam, S., Nguyen, K., Selvaranjan, K., Zhang, G., Mendis, P., & Aye, L. (2022). Designing post COVID-19 buildings: Approaches for achieving healthy buildings. Buildings, 12(1). https://doi.org/10.3390/buildings12010074
  • Nikezic, A., & Zivkovic, J. (2019). Multifunctional public open spaces for sustainable cities: Concept and application. Facta Universitatis - Series: Architecture and Civil Engineering, 17(2), 205–219. https://doi.org/10.2298/fuace190327012z
  • Osama, O. (2018). Intelligent building, definitions, factors andevaluation criteria of selection. Alexandria Engineering Journal, 57(4), 2903–2910.
  • Rodriguez, C. S. (2011). Morphological Principles of Current Kinetic Architectural Structures.
  • Saari, A., & Heikkilä, P. (2008). Building flexibility management. The Open Construction and Building Technology Journal, 2, 239-242.
  • Sadafi, N., Zain, M., & Fauzi, M. (2014). Design criteria for increasing building flexibility: Dynamics and prospects. Environmental Engineering and Management Journal, 13(2), 407–417. https://doi.org/10.30638/eemj.2014.045
  • Shamaileh, A. A. (2022). Responding to COVID-19 pandemic: Interior designs’ trends of houses in Jordan. International Journal of Human Rights in Healthcare, 15(2), 137–150. https://doi.org/10.1108/IJHRH-01-2021-0013
  • Sun, C., & Zhai, Z. (2020). The efficacy of social distance and ventilation effectiveness in preventing COVID-19 transmission. Sustainable Cities and Society, 62, 102390. https://doi.org/10.1016/j.scs.2020.102390
  • Velasco, R., & Brakke, A. P. D. C. (2015). Dynamic façades and computation: Towards an inclusive categorization of high performance kinetic façade systems. In Proceedings of The International Conference on Computer-Aided Architectural Design Futures. In Proceedings - Design Automation Conference (p. 279). https://doi.org/10.2307/1424568
  • Youssef, M. M. (2017). Kinetic behavior, the dynamic potential through architecture and design. International Journal of Computational Methods and Experimental Measurements, 5(4), 607–618. https://doi.org/10.2495/CMEM-V5-N4-607-618
  • Zhen, Q., Zhang, A., Huang, Q., Li, J., Du, Y., & Zang, Q. (2022). Overview of the Role of Spatial Factors in Indoor SARS-CoV-2.pdf.
  • Zivkovic, M., & Jovanovic, G. (2012). A method for evaluating the degree of housing unit flexibility in multi-family housing. Facta Universitatis - Series: Architecture and Civil Engineering, 10(1), 17–32. https://doi.org/10.2298/FUACE1201017Z

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