Daylight Performance Evaluation of Parametric Facades Inspired by Kinetic Systems
Year 2025,
Volume: 10 Issue: 1, 417 - 433, 28.07.2025
Merve Savrunlu
,
Türkan İrgin Uzun
Abstract
Parametric facade models and daylight analyses have been performed. 4 different kinetic facade examples have been examined for parametric facade models The selected examples are; Penumbra – A Kinetic Daylighting and Shading System, One Ocean Thematic Pavilion, Brisbane Airport Parking Garage and HelioTrace. The similarities and differences between the examined kinetic facade examples and parametric facade models have been identified. Parametric facade models have been adapted for Istanbul Gelişim University building, which was modeled using Rhinoceros software. Illuminance analysis of the existing facade was performed using Honeybee software. Analyses were conducted on June 21 and December 21. Illuminance analyses of the adapted parametric facade were performed to assess the impact of these adaptations on the illuminance. The illuminance data of the adapted parametric facade were compared with the illuminance data of the existing facade. Out of the 48 parametric façade daylight analysis datas, 46 are closer to the optimum comfort condition.
References
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Cimmino, M. C., Miranda, R., Sicignano, E., Ferreira, A. J. M., Skelton, R.E. & Fraternali, F. (2016). Composite solar
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Çelebi, N. G. & Arpacıoğlu, Ü. (2024). Monumental and Historical Religious Buildings in the Contexts of Cultural
Heritage, Urban Identity, and Sustainable Design. Arpacıoğlu, Ü. & Koçyiğit, R. G. (Eds.). Architectural Sciences,
Spatial Design and Planning Researches. 2024, Chapter: 17, 643-672. ISBN: 978-625-367-911-8. Iksad
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kahn-uap/
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penumbra/#:~:text=Penumbra%20sisteminin%20amac%C4%B1%2C%20dairelerin%20g%C3%BCne%C5%9F,%C3%
A7%C4%B1karmak%20i%C3%A7in%20ba%C4%9F%C4%B1ms%C4%B1z%20olarak%20d%C3%B6nebi
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VERS%C4%B0TES%C4%B0/@40.9980215,28.6945986,1315m/data=!3m1!1e3?
entry=ttu&g_ep=EgoyMDI1MDQwNi4wIKXMDSoASAFQAw%3D%3D
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Haidari, H. (2015). Decisive design aspects for designing a kinetic façade. Eindhoven University of Technology.
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Hosseini, S., Mohammadi, M. & Guerra-Santin, O. (2019). Interactive kinetic façade: Improving visual comfort
based on dynamic daylight and occupant's positions by 2D and 3D shape changes. Building and Environment.
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Ibrahim, J. A. & Alibaba, H. Z. (2019). Kinetic facade as a tool for energy efficiency. International Journal of
Engineering Research and Reviews, 7(4), 1-7.
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Kahramanoğlu, B. & Alp, N. Ç. (2021). Kinetik sistemli bina cephelerinin modelleme yöntemlerinin incelenmesi.
Aurum Mühendislik Sistemleri ve Mimarlik Dergisi, 5(1), 119-138.
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Kolarevic, B. & Parlac, V. (2015). Adaptive, Responsive Building Skins. B. Kolarevic, & V. Parlac (Ed.). Building
Dynamics: Exploring Arcitecture of Change. London: Routledge.
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Kormaníková, L., Kormaníková, E. & Katunský, D. (2017). Shape design and analysis of adaptive structures,
Procedia Engineering, 190, 7 – 14.
-
Kutluay, P., İnan, T., Ersoy, U. & Başaran, T. (2015). Türkiye'den ve Dünyadan Örnekler Işığında Çift Cidarlı Cephenin
Gelişimi. 12. Ulusal Tesisat Mühendisliği Kongresi. İzmir.
-
Le-Thanh, L., Le-Duc, T., Ngo-Minh, H., Nguyen, Q. & Nguyen-Xuan, H. (2021). Optimal design of an Origami-
inspired kinetic façade by balancing composite motion optimization for improving daylight performance and
energy efficiency, Energy, 219.
-
Maden, F. (2022). Tesselasyon Tabanlı kinetik cephe tasarımları. mimar•ist, (73), 104-111.
-
Mahmoud, A. & Elghazi, Y. (2016). Parametric-based designs for kinetic facades to optimize daylight
performance: Comparing rotation and translation kinetic motion for hexagonal facade patterns, Solar Energy,
126, 111-127.
-
Mendilcioğlu, R. F. (2017). Parametrik Tasarım Yönteminin Sürdürülebilir İç Mekanlarda Doğal Aydınlatmaya
Etkisi. Ankara: Hacettepe Üniversitesi Güzel Sanatlar Enstitüsü.
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Reinhart, C. (2011). Daylight Performance Predictions, Building Performance Simulation for Design and Operation,
Spon Press.
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https://www.archdaily.com/233487/somas-thematic-pavilion-opens-tomorrow?ad_medium=gallery
-
Sadegh, S. O., Gasparri, E., Brambilla, A., Globa, A. (2022). Kinetic facades: An evolutionary-based performance
evaluation framework, Journal of Building Engineering, 53.
-
Savrunlu, M. (2024). Performansa Dayalı Cephe Sistemleri ve Parametrik Tasarımın Günışığı Açısından
İncelenmesi. İstanbul: Gelişim Üniversitesi Müh. Mim. Fak., Fen Bilimleri Enstütüsü, Yüksek Lisans Programı.
-
Stevanović, S. (2013). Optimization of passive solar design strategies: a review, Renewable and Sustainable
Energy Reviews, 177–196.
-
Sümengen, Ö., & Yener, A. K. (2015). Binalarda aydınlatma enerji performansının belirlenmesinde günışığına
ilişkin değişkenlerin incelenmesi. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 31(2), 135-148.
-
Yaman, B. & Arpacıoğlu, Ü. (2021). Dinamik kontrollü uyarlanabilir cephe ve gölgeleme sistemleri. Journal of
Architectural Sciences and Applications, 6 (1), 153-164. doi: 10.30785/mbud.798233
-
Yılmaz, Z. (2006). Akıllı Binalar ve Yenilenebilir Enerji. Tesisat Mühendisliği Dergisi(91), s. 7-15.
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formulation and software utilization. Journal of Integrated Design and Process Science, 1-22.
Kinetik Sistemlerden Esinlenerek Parametrik Cephelerin Gün Işığı Performansının Değerlendirilmesi
Year 2025,
Volume: 10 Issue: 1, 417 - 433, 28.07.2025
Merve Savrunlu
,
Türkan İrgin Uzun
Abstract
Bu çalışmada parametrik cephe modellemeleri ve günışığı analizleri yapılmıştır. Parametrik cephe modellemeleri için dünyadaki 4 farklı kinetik cephe örneği incelenmiştir. Seçilen örnekler; Penumbra – A Kinetic Daylighting and Shading System, One Ocean Thematic Pavilion, Brisbane Airport Parking Garage ve HelioTrace’dir. İncelenen kinetik cephe örneklerinin ve parametrik cephe modellemelerinin benzerlikleri ve farklılıkları belirtilmiştir. Parametrik cephe modellemeleri, Rhinoceros yazılımında modellenen İstanbul Gelişim Üniversitesi binasına uyarlanmıştır. Honeybee yazılımını kullanarak mevcut cephenin aydınlık düzeyi analizleri yapılmıştır. Analizler 21 Haziran ve 21 Aralık tarihlerinde gerçekleştirilmiştir. Parametrik cephe uyarlamalarının aydınlık düzeyine etkilerini görebilmek için parametrik cephe uyarlanmış halinin de aydınlık düzeyi analizleri yapılmıştır. Parametrik cephe uyarlanmış halinin aydınlık düzeyi verileri mevcut cephenin aydınlık düzeyi verileri ile karşılaştırılmıştır. 48 parametrik cephe gün ışığı analizi veri noktasından 46 optimum konfor koşuluna daha yakındır.
References
-
Al-Masrani, S. & Al-Obaidi, K. (2019). Dynamic shading systems: A review of design parameters, platforms and evaluation strategies. Automation in Construction, 195-216.
-
Arpacıoğlu, Ü., Çalışkan, İ., Şahin, B. & Ödevci, N. (2020). Design support model for increasing daylight efficiency
in architectural planning. Tasarım+Kuram, 16(29), 53-78., Doi: 10.14744/tasarimkuram.2020.70783
-
Architectmagazine. (2025). Citation: HelioTrace Façade System. Access Address (09.04.2025):
https://www.architectmagazine.com/photos/citation-heliotrace-facade-system
-
Cimmino, M. C., Miranda, R., Sicignano, E., Ferreira, A. J. M., Skelton, R.E. & Fraternali, F. (2016). Composite solar
façades and wind generators with tensegrity architecture, Composites Part B: Engineering, 115, 275-281.
-
Çelebi, N. G. & Arpacıoğlu, Ü. (2024). Monumental and Historical Religious Buildings in the Contexts of Cultural
Heritage, Urban Identity, and Sustainable Design. Arpacıoğlu, Ü. & Koçyiğit, R. G. (Eds.). Architectural Sciences,
Spatial Design and Planning Researches. 2024, Chapter: 17, 643-672. ISBN: 978-625-367-911-8. Iksad
Publications.
-
Delana. (2025). Another Wave in the Wall: Vertical Lake Building Facade. Access Address (09.04.2025):
https://weburbanist.com/2010/07/23/another-wave-in-the-wall-vertical-lake-building-facade/
-
Designboom. (2012). brisbane airport kinetic parking garage facade by ned kahn + UAP. Access Address
(09.04.2025): https://www.designboom.com/art/brisbane-airport-kinetic-parking-garage-facade-by-ned-
kahn-uap/
-
Eltaweel, A., & Su, Y. (2017). Parametric design and daylighting: A literature review. Renewable and Sustainable
Energy Reviews, 1086–1103.
-
Fortmeyer, R. & Linn, C. (2014). Kinetic Architecture: Designs for Active Envelopes. Singapur: Images Publishing
Group.
-
Günel, Ç. M. (2017). Gün işığına karşı kinetik gölgeleme sistemi: Penumbra. İç Mimarlık Dergisi. Access Address
(09.04.2025): https://www.icmimarlikdergisi.com/2017/10/27/gun-isigina-karsi-kinetik-golgeleme-sistemi-
penumbra/#:~:text=Penumbra%20sisteminin%20amac%C4%B1%2C%20dairelerin%20g%C3%BCne%C5%9F,%C3%
A7%C4%B1karmak%20i%C3%A7in%20ba%C4%9F%C4%B1ms%C4%B1z%20olarak%20d%C3%B6nebi
-
Google. (2025). Google map of İstanbul Gelişim University. Access Address (09.04.2025):
https://www.google.com.tr/maps/search/%C4%B0STANBUL+GEL%C4%B0%C5%9E%C4%B0M+%C3%9CN%C4%B0
VERS%C4%B0TES%C4%B0/@40.9980215,28.6945986,1315m/data=!3m1!1e3?
entry=ttu&g_ep=EgoyMDI1MDQwNi4wIKXMDSoASAFQAw%3D%3D
-
Haidari, H. (2015). Decisive design aspects for designing a kinetic façade. Eindhoven University of Technology.
-
Hosseini, S., Mohammadi, M. & Guerra-Santin, O. (2019). Interactive kinetic façade: Improving visual comfort
based on dynamic daylight and occupant's positions by 2D and 3D shape changes. Building and Environment.
-
Ibrahim, J. A. & Alibaba, H. Z. (2019). Kinetic facade as a tool for energy efficiency. International Journal of
Engineering Research and Reviews, 7(4), 1-7.
-
IEA. Access Address (10.06.2025): https://www.iea.org/data-and-statistics/charts/energy-consumption-in
buildings-by-fuel-in- the-net-zero-scenario-2010-2030-2)
-
Kahramanoğlu, B. & Alp, N. Ç. (2021). Kinetik sistemli bina cephelerinin modelleme yöntemlerinin incelenmesi.
Aurum Mühendislik Sistemleri ve Mimarlik Dergisi, 5(1), 119-138.
-
Kolarevic, B. & Parlac, V. (2015). Adaptive, Responsive Building Skins. B. Kolarevic, & V. Parlac (Ed.). Building
Dynamics: Exploring Arcitecture of Change. London: Routledge.
-
Kormaníková, L., Kormaníková, E. & Katunský, D. (2017). Shape design and analysis of adaptive structures,
Procedia Engineering, 190, 7 – 14.
-
Kutluay, P., İnan, T., Ersoy, U. & Başaran, T. (2015). Türkiye'den ve Dünyadan Örnekler Işığında Çift Cidarlı Cephenin
Gelişimi. 12. Ulusal Tesisat Mühendisliği Kongresi. İzmir.
-
Le-Thanh, L., Le-Duc, T., Ngo-Minh, H., Nguyen, Q. & Nguyen-Xuan, H. (2021). Optimal design of an Origami-
inspired kinetic façade by balancing composite motion optimization for improving daylight performance and
energy efficiency, Energy, 219.
-
Maden, F. (2022). Tesselasyon Tabanlı kinetik cephe tasarımları. mimar•ist, (73), 104-111.
-
Mahmoud, A. & Elghazi, Y. (2016). Parametric-based designs for kinetic facades to optimize daylight
performance: Comparing rotation and translation kinetic motion for hexagonal facade patterns, Solar Energy,
126, 111-127.
-
Mendilcioğlu, R. F. (2017). Parametrik Tasarım Yönteminin Sürdürülebilir İç Mekanlarda Doğal Aydınlatmaya
Etkisi. Ankara: Hacettepe Üniversitesi Güzel Sanatlar Enstitüsü.
-
Reinhart, C. (2011). Daylight Performance Predictions, Building Performance Simulation for Design and Operation,
Spon Press.
-
Rosenfield, K. (2012). soma’s Thematic Pavilion opens tomorrow! Archdaily. Access Address (09.04.2025):
https://www.archdaily.com/233487/somas-thematic-pavilion-opens-tomorrow?ad_medium=gallery
-
Sadegh, S. O., Gasparri, E., Brambilla, A., Globa, A. (2022). Kinetic facades: An evolutionary-based performance
evaluation framework, Journal of Building Engineering, 53.
-
Savrunlu, M. (2024). Performansa Dayalı Cephe Sistemleri ve Parametrik Tasarımın Günışığı Açısından
İncelenmesi. İstanbul: Gelişim Üniversitesi Müh. Mim. Fak., Fen Bilimleri Enstütüsü, Yüksek Lisans Programı.
-
Stevanović, S. (2013). Optimization of passive solar design strategies: a review, Renewable and Sustainable
Energy Reviews, 177–196.
-
Sümengen, Ö., & Yener, A. K. (2015). Binalarda aydınlatma enerji performansının belirlenmesinde günışığına
ilişkin değişkenlerin incelenmesi. Erciyes Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 31(2), 135-148.
-
Yaman, B. & Arpacıoğlu, Ü. (2021). Dinamik kontrollü uyarlanabilir cephe ve gölgeleme sistemleri. Journal of
Architectural Sciences and Applications, 6 (1), 153-164. doi: 10.30785/mbud.798233
-
Yılmaz, Z. (2006). Akıllı Binalar ve Yenilenebilir Enerji. Tesisat Mühendisliği Dergisi(91), s. 7-15.
-
Zhao, S. & Angelis , E. (2019). Performance-based generative architecture design: A review on design problem
formulation and software utilization. Journal of Integrated Design and Process Science, 1-22.