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Earthquake-Oriented, Generative Artificial Intelligence and Voronoi-Assisted Design Approach
Abstract
In the 21st century, earthquakes occurring in regions with high seismic risk result not only in physical destruction but also in prolonged crises at social, economic, and psychological levels. Post-disaster temporary shelter solutions often evolve into permanent uncertainties, giving rise to issues such as social exclusion, disconnection from productive life, and spatial injustice. This study is grounded in the notion that temporary living environments must be not only rapidly deployable but also adaptable, sustainable, and socially restorative.
In the design approach, the nature-inspired organizational logic of Voronoi diagrams is reinterpreted beyond conventional horizontal sprawl and transformed into a modular vertical structural system. Each module is tailored to specific functions—such as housing, healthcare, education, and production—and designed as an independent unit with its own structural and technical infrastructure. By proliferating vertically, these modules allow for spatial flexibility and evolutionary development over time
Developed through generative artificial intelligence-supported design processes, the proposed system is not merely a structure, but a dynamic living organism capable of reorganizing itself in response to environmental and societal needs. The project presents an innovative model for post-disaster reconstruction by addressing spatial, technological, and social dimensions in an integrated manner, thereby contributing a novel perspective to the field of disaster architecture.
Keywords
References
- [1] Quarantelli, E. L. Patterns of Sheltering and Housing in US Disasters. Disaster Research Center, University of Delaware, 1995.
- [2] Alexander, D. Principles of Emergency Planning and Management. Oxford University Press, Oxford, 2002.
- [3] World Bank. Türkiye Kahramanmaraş Earthquake Recovery and Reconstruction Assessment: Rapid Damage Assessment Report. Washington, DC: World Bank, 2023.
- [4] United Nations Development Programme (UNDP). Türkiye Earthquakes Recovery and Reconstruction Assessment (TRRA). Ankara: UNDP, 2023.
- [5] World Bank. Türkiye Earthquake Resilient Housing Reconstruction Project: Project Appraisal Document. Washington, DC: World Bank, 2025.
- [6] Sphere Association. The Sphere Handbook: Humanitarian Charter and Minimum Standards in Humanitarian Response, 4th ed. Geneva, Switzerland, 2018.
- [7] Johnson, C. Impacts of prefabricated temporary housing after disasters: 1999 earthquakes in Turkey. Habitat International, 31(1): 36–52, 2007.
- [8] Kelman, I. Disaster by Choice: How Our Actions Turn Natural Hazards into Catastrophes. Oxford University Press, Oxford, 2020.
Details
Primary Language
English
Subjects
Architectural Design, Data Visualisation and Computational Design
Journal Section
Research Article
Publication Date
September 30, 2025
Submission Date
June 4, 2025
Acceptance Date
September 9, 2025
Published in Issue
Year 2025 Volume: 13 Number: 3
APA
Güner, H., & Özen Yavuz, A. (2025). Earthquake-Oriented, Generative Artificial Intelligence and Voronoi-Assisted Design Approach. Gazi University Journal of Science Part B: Art Humanities Design and Planning, 13(3), 401-414. https://izlik.org/JA36LL33PD
AMA
1.Güner H, Özen Yavuz A. Earthquake-Oriented, Generative Artificial Intelligence and Voronoi-Assisted Design Approach. GUJSPB. 2025;13(3):401-414. https://izlik.org/JA36LL33PD
Chicago
Güner, Hande, and Arzu Özen Yavuz. 2025. “Earthquake-Oriented, Generative Artificial Intelligence and Voronoi-Assisted Design Approach”. Gazi University Journal of Science Part B: Art Humanities Design and Planning 13 (3): 401-14. https://izlik.org/JA36LL33PD.
EndNote
Güner H, Özen Yavuz A (September 1, 2025) Earthquake-Oriented, Generative Artificial Intelligence and Voronoi-Assisted Design Approach. Gazi University Journal of Science Part B: Art Humanities Design and Planning 13 3 401–414.
IEEE
[1]H. Güner and A. Özen Yavuz, “Earthquake-Oriented, Generative Artificial Intelligence and Voronoi-Assisted Design Approach”, GUJSPB, vol. 13, no. 3, pp. 401–414, Sept. 2025, [Online]. Available: https://izlik.org/JA36LL33PD
ISNAD
Güner, Hande - Özen Yavuz, Arzu. “Earthquake-Oriented, Generative Artificial Intelligence and Voronoi-Assisted Design Approach”. Gazi University Journal of Science Part B: Art Humanities Design and Planning 13/3 (September 1, 2025): 401-414. https://izlik.org/JA36LL33PD.
JAMA
1.Güner H, Özen Yavuz A. Earthquake-Oriented, Generative Artificial Intelligence and Voronoi-Assisted Design Approach. GUJSPB. 2025;13:401–414.
MLA
Güner, Hande, and Arzu Özen Yavuz. “Earthquake-Oriented, Generative Artificial Intelligence and Voronoi-Assisted Design Approach”. Gazi University Journal of Science Part B: Art Humanities Design and Planning, vol. 13, no. 3, Sept. 2025, pp. 401-14, https://izlik.org/JA36LL33PD.
Vancouver
1.Hande Güner, Arzu Özen Yavuz. Earthquake-Oriented, Generative Artificial Intelligence and Voronoi-Assisted Design Approach. GUJSPB [Internet]. 2025 Sep. 1;13(3):401-14. Available from: https://izlik.org/JA36LL33PD