Research Article
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Year 2024, Volume: 2 Issue: 2, 109 - 120, 27.11.2024
https://doi.org/10.26650/JTADP.24.012

Abstract

References

  • Al-Azzawi., T., & Al-Majidi, Z. (2020). Parametric architecture: the second international style. 4th International Conference on Engineering Sciences (ICES 2020). 1067 (2021). 012019. google scholar
  • ASCE standard. ASCE/SEI. 41-17. (2017). Seismic evaluation and retrofit of existing buildings. American Society of Civil Engineers. google scholar
  • Baker, N., & Steemers, K. (2013). Daylight Design of Buildings - A Handbook for Architects and Engineers. Taylor & Francis e-Library. google scholar
  • Burry, M. (2013). Scripting Cultures: Architectural Design and Programming. John Wiley & Sons Ltd. google scholar
  • Bento, R., & Simöes, A. (2021). Seismic Performance Assessment ofBuildings. MDPI. CERIS, Instituto Superior Tecnico. University of Lisbon. 1049-001 Lisbon. Portugal. google scholar
  • Eltaweel, A., & SU, Y. (2017). Parametric design and daylighting: A literature review. Department of Architecture and Build Environment. University of Nottingham. Nottingham. google scholar
  • FEMA P-1051. (2016). 2015 NEHRP Recommended Seismic Provisions: Design Examples, Building Seismic Safety Council of the National Institute of Building Sciences. (National Earthquake Hazards Reduction Program). google scholar
  • Giuliani, H. (2000). Seismic Resistant Architecture: A theory for the Architectural design of buildings in seismic zones. 12WCEE. Instituto de Investigaciones Antis^smicas. Universidad Nacional de San Juan. Argentina. google scholar
  • Isabella, M. (February 27, 2024). Parametric Architecture-Innovations in Design and Construction Avatar. https://artincontext.org/parametric-architecture/. google scholar
  • Kolarevic, B. (2009). Architecture in the Digital Age - Design and Manufacturing. Taylor & Francis e-Library. google scholar
  • Lorant, G. (2016). Seismic Design Principles. FAIA-WBDG whole building design guide. Lorant Group, Inc. google scholar
  • Laghi, V., & Palermo, M. (2017). Seismic-Proof Buildings in Developing Countries. Front, Built, Environ. Sec. Earthquake Engineering. Volume 3. google scholar
  • Oxman, R. (2010). Status of digital design research. Design Studies, 31(2), 128-143. google scholar
  • Schumacher, P. (2008). Parametricism as Style - Parametricist Manifesto. 11th Architecture Biennale. Venice 2008. google scholar
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The Role of Earthquake-Resistant Building Elements in Parametric Architecture Design; Balancing Aesthetics and Performance

Year 2024, Volume: 2 Issue: 2, 109 - 120, 27.11.2024
https://doi.org/10.26650/JTADP.24.012

Abstract

While traditional methods prioritise structural strength but limit design flexibility, parametric design provides a data-driven method that can maximise seismic performance and aesthetics. This article analyzes the core principles of earthquake-resistant buildings and discusses how seismic braces and critical structural components can be integrated aesthetically into parametric designs. Furthermore, this paper explores various parametric design parameters that contribute to aesthetics, including form, texture, light, repetition, and variation. In addition to analysing the parameters of architecture and parametric design and taking a general look at the structure of the theoretical foundations of this contemporary artistic realm, this classification emphasises the importance of prioritising structural integrity while strategically using these parameters for visual appeal.
Finally, by highlighting the transformative potential of parametric design in earthquake-prone areas, this paper tries to show that parametric design can pave the way for creating visually captivating architectural wonders and flexible seismic architecture. This represents a significant advancement in the design process, offering a path towards safer, stronger, and more aesthetically pleasing structures in earthquake-prone regions.

References

  • Al-Azzawi., T., & Al-Majidi, Z. (2020). Parametric architecture: the second international style. 4th International Conference on Engineering Sciences (ICES 2020). 1067 (2021). 012019. google scholar
  • ASCE standard. ASCE/SEI. 41-17. (2017). Seismic evaluation and retrofit of existing buildings. American Society of Civil Engineers. google scholar
  • Baker, N., & Steemers, K. (2013). Daylight Design of Buildings - A Handbook for Architects and Engineers. Taylor & Francis e-Library. google scholar
  • Burry, M. (2013). Scripting Cultures: Architectural Design and Programming. John Wiley & Sons Ltd. google scholar
  • Bento, R., & Simöes, A. (2021). Seismic Performance Assessment ofBuildings. MDPI. CERIS, Instituto Superior Tecnico. University of Lisbon. 1049-001 Lisbon. Portugal. google scholar
  • Eltaweel, A., & SU, Y. (2017). Parametric design and daylighting: A literature review. Department of Architecture and Build Environment. University of Nottingham. Nottingham. google scholar
  • FEMA P-1051. (2016). 2015 NEHRP Recommended Seismic Provisions: Design Examples, Building Seismic Safety Council of the National Institute of Building Sciences. (National Earthquake Hazards Reduction Program). google scholar
  • Giuliani, H. (2000). Seismic Resistant Architecture: A theory for the Architectural design of buildings in seismic zones. 12WCEE. Instituto de Investigaciones Antis^smicas. Universidad Nacional de San Juan. Argentina. google scholar
  • Isabella, M. (February 27, 2024). Parametric Architecture-Innovations in Design and Construction Avatar. https://artincontext.org/parametric-architecture/. google scholar
  • Kolarevic, B. (2009). Architecture in the Digital Age - Design and Manufacturing. Taylor & Francis e-Library. google scholar
  • Lorant, G. (2016). Seismic Design Principles. FAIA-WBDG whole building design guide. Lorant Group, Inc. google scholar
  • Laghi, V., & Palermo, M. (2017). Seismic-Proof Buildings in Developing Countries. Front, Built, Environ. Sec. Earthquake Engineering. Volume 3. google scholar
  • Oxman, R. (2010). Status of digital design research. Design Studies, 31(2), 128-143. google scholar
  • Schumacher, P. (2008). Parametricism as Style - Parametricist Manifesto. 11th Architecture Biennale. Venice 2008. google scholar
  • Schumacher, P. (2009). Parametricism: A New Global StyleforArchitecture and Urban Design. Architectural Design. s 79 14—23. (Wiley Online Library). google scholar
  • Schumacher, P. (2011). The Autopoiesis of Architecture, Volume I: A New Framework for Architecture. (Wiley Online Library). google scholar
  • Weston, R. (2011). 100 Ideas that Changed Architecture. Laurence King Publishing. google scholar
There are 17 citations in total.

Details

Primary Language English
Subjects Architecture (Other)
Journal Section Research Articles
Authors

Seyed Mohammad Amin Mostafavi Mousavi 0009-0003-8775-9764

Selahattin Ersoy 0000-0001-9426-9841

Publication Date November 27, 2024
Submission Date August 14, 2024
Acceptance Date November 9, 2024
Published in Issue Year 2024 Volume: 2 Issue: 2

Cite

APA Mostafavi Mousavi, S. M. A., & Ersoy, S. (2024). The Role of Earthquake-Resistant Building Elements in Parametric Architecture Design; Balancing Aesthetics and Performance. Journal of Technology in Architecture, Design and Planning, 2(2), 109-120. https://doi.org/10.26650/JTADP.24.012
AMA Mostafavi Mousavi SMA, Ersoy S. The Role of Earthquake-Resistant Building Elements in Parametric Architecture Design; Balancing Aesthetics and Performance. JTADP. November 2024;2(2):109-120. doi:10.26650/JTADP.24.012
Chicago Mostafavi Mousavi, Seyed Mohammad Amin, and Selahattin Ersoy. “The Role of Earthquake-Resistant Building Elements in Parametric Architecture Design; Balancing Aesthetics and Performance”. Journal of Technology in Architecture, Design and Planning 2, no. 2 (November 2024): 109-20. https://doi.org/10.26650/JTADP.24.012.
EndNote Mostafavi Mousavi SMA, Ersoy S (November 1, 2024) The Role of Earthquake-Resistant Building Elements in Parametric Architecture Design; Balancing Aesthetics and Performance. Journal of Technology in Architecture, Design and Planning 2 2 109–120.
IEEE S. M. A. Mostafavi Mousavi and S. Ersoy, “The Role of Earthquake-Resistant Building Elements in Parametric Architecture Design; Balancing Aesthetics and Performance”, JTADP, vol. 2, no. 2, pp. 109–120, 2024, doi: 10.26650/JTADP.24.012.
ISNAD Mostafavi Mousavi, Seyed Mohammad Amin - Ersoy, Selahattin. “The Role of Earthquake-Resistant Building Elements in Parametric Architecture Design; Balancing Aesthetics and Performance”. Journal of Technology in Architecture, Design and Planning 2/2 (November 2024), 109-120. https://doi.org/10.26650/JTADP.24.012.
JAMA Mostafavi Mousavi SMA, Ersoy S. The Role of Earthquake-Resistant Building Elements in Parametric Architecture Design; Balancing Aesthetics and Performance. JTADP. 2024;2:109–120.
MLA Mostafavi Mousavi, Seyed Mohammad Amin and Selahattin Ersoy. “The Role of Earthquake-Resistant Building Elements in Parametric Architecture Design; Balancing Aesthetics and Performance”. Journal of Technology in Architecture, Design and Planning, vol. 2, no. 2, 2024, pp. 109-20, doi:10.26650/JTADP.24.012.
Vancouver Mostafavi Mousavi SMA, Ersoy S. The Role of Earthquake-Resistant Building Elements in Parametric Architecture Design; Balancing Aesthetics and Performance. JTADP. 2024;2(2):109-20.