Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2020, Cilt: 8 Sayı: 3, 643 - 656, 28.09.2020

Öz

Kaynakça

  • Kızmaz, K. C. and Çimşit Koş, F., “Esneklik Kavramında Kullanıcı Katılımının Önemi ve Güncel Yaklaşımlar”, Beykent Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi, 8(2): 111–142, (2015).
  • Kronenburg, R., Flexible Architecture that Responds to Change, Laurence King Publishing Ltd, London, 46-230, (2007).
  • İslamoğlu, Ö. and Usta, G., “Mimari Tasarımda Esneklik Yaklaşımlarına Kuramsal Bir Bakış”, The Turkish Online Journal of Design, Art and Communication, 8(4): 673-683, (2018).
  • Schneider T. and Till J., “Flexible Housing: Opportunities and Limits”, arq, 9(2): 157-166, (2005).
  • Estaji, H., “A Review of Flexibility and Adaptability in Housing Design”, International Journal of Contemporary Architecture The New ARCH, 4(2): 37-49, (2017).
  • Norberg-Schulz, C., Intention in Architecture, AllenandUnwin Ltd., Universitetforlaget, Oslo, 103-175, (1966).
  • İnan, N., “Kinetik Yapı Tasarımında İşlevsel Esneklik ve Entegre Sistemlerin Kullanım Önerisi”, Phd. Thesis , Gazi University Graduate School of Natural and Applied Sciences, Ankara, (2014).
  • Balbaa, N., “Approach to Flexıbılıty in Archıtecture in the 21st Century”, MSc. Thesis, Bahçeşehir University Graduate School of Natural and Applied Sciences, İstanbul, (2016).
  • Alpar, S., “Bauhaus’un Sahne Tasarımına Etkileri”, MSc. Thesis, Dokuz Eylül University Graduate School of Fine Arts, İzmir, (2006).
  • TRC1 KONUT, “TRC1 Bölgesi Tarihi, Teorik ve Ampirik Konut Değerlendirmesi”, İpekyolu Kalkınma Ajansı Araştırma Serisi – 7, Gaziantep, 70, (2012).
  • Internet: http://www.moderndesign.org/2006/04/luigi-colani-rotorhaus.html, 19 June, (2018).
  • Internet: https://www.fastcompany.com/90450018/how-the-end-of-the-white-majority-could-change-office-dynamics-in-2040, 19 June, (2018).
  • Internet: https://www.engadget.com/2019/04/03/the-shed-nyc-hudson-yards/, 19 June, (2018).
  • Zuk, W. and Clark, R. H. Kinetic Architecture, Van Nostrand Reinhold Company, New York, 1430, (1970).
  • Korkmaz, K., “An Analytıcal Study of the Desıgn Potentıals in Kınetıc Archıtecture”, Unpublished Phd. Thesis, IZTECH The Graduate School Of Engineering and Sciences, İzmir, (2004).
  • Arslan, Selçuk S., “Proposal for A Non-Dımensıonal Parametrıc Interface Desıgn in Archıtecture: A Bıomımetıc Approach”, Phd. Thesis, METU Graduate School of Natural and Applied Sciences, Ankara, (2009).
  • Zenter, Ö., “Mimari Tasarımda Biyomimetik Yaklaşımların İşlevsel Esneklik Amaçlı Kullanımı”, MSc. Thesis, Gazi University Graduate School of Natural and Applied Sciences, Ankara, (2018).
  • Atawula, A., “Bioinspired Kinetic Architecture and Adaptive Component Design Proposal”, MSc. Thesis, Yıldız Technical University University Graduate School of Natural and Applied Sciences, İstanbul, (2016).
  • Bar-Cohen, Y., “Biomimetics: using nature to inspire human innovation”, Bioinspiration & Biomimetics, (1): P1-P12, (2006).
  • Yedekçi, G., Doğayla Tasarlamak Biyomimikri ve Geleceğin Mimarlığı, First Edition, Mimarlık Vakfı İktisadi İşletmesi, İstanbul, (2015).
  • Arslan Selçuk S. and Gönenç Sorguç A., “Mimarlık Tasarımı Paradigmasında Biomimesis’in Etkisi”, GÜMMF Dergisi, 22 (2): 451-459, (2007).
  • Internet: https://www.domusweb.it/en/architecture/2010/06/22/a-manifesto-for-medellin.html, 07 January, (2017).
  • Ekmekçi, Ç., “Mimari Yapılarda Hareket Çeşitlerinin İncelenmesi ve Hareketin Mimari Tasarımda Kullanılması”, MSc. Thesis, Yıldız Technical University University Graduate School of Natural and Applied Sciences, İstanbul, (2005).
  • Internet: https://inhabitat.com/amazing-calatrava-shade-pavilion-for-the-milwaukee-art-museum/, 10 January, (2017).
  • Internet: https://infinitespider.com/wp-content/uploads/2014/12/Spider-characteristics.png, 04 July, (2018).
  • Barth, F.G., A Spider’s World: Sensesand Behavior, Springer-Verlag, Berlin, (2002).

PROPOSAL OF BIO-INSPIRED KINETIC MECHANISMS UTILIZATION FOR PROVIDING FUNCTIONAL FLEXIBILITY IN ARCHITECTURAL DESIGN

Yıl 2020, Cilt: 8 Sayı: 3, 643 - 656, 28.09.2020

Öz

The fact that building design in architecture cannot respond to functional changes over time after the building is built is seen as the first problem today. Approaching this problem with kinetic design inputs will bring new possibilities to the design. In this context, biomimetic, which is an approach to use and simulate nature formations, will be a guide in problem solving. The aim of this study is to test the hypothesis of using kinetic-biomimetic mechanisms in order to offer solutions in case of changing capacity and different functional needs. For this purpose, an original design that can respond to such situations is proposed within the scope of the study. The result has been reached by considering the advantages and disadvantages of the proposed design. The use of bio-inspired kinetic mechanisms in architectural design seems to be an important development in terms of providing functional flexibility in architecture.

Kaynakça

  • Kızmaz, K. C. and Çimşit Koş, F., “Esneklik Kavramında Kullanıcı Katılımının Önemi ve Güncel Yaklaşımlar”, Beykent Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi, 8(2): 111–142, (2015).
  • Kronenburg, R., Flexible Architecture that Responds to Change, Laurence King Publishing Ltd, London, 46-230, (2007).
  • İslamoğlu, Ö. and Usta, G., “Mimari Tasarımda Esneklik Yaklaşımlarına Kuramsal Bir Bakış”, The Turkish Online Journal of Design, Art and Communication, 8(4): 673-683, (2018).
  • Schneider T. and Till J., “Flexible Housing: Opportunities and Limits”, arq, 9(2): 157-166, (2005).
  • Estaji, H., “A Review of Flexibility and Adaptability in Housing Design”, International Journal of Contemporary Architecture The New ARCH, 4(2): 37-49, (2017).
  • Norberg-Schulz, C., Intention in Architecture, AllenandUnwin Ltd., Universitetforlaget, Oslo, 103-175, (1966).
  • İnan, N., “Kinetik Yapı Tasarımında İşlevsel Esneklik ve Entegre Sistemlerin Kullanım Önerisi”, Phd. Thesis , Gazi University Graduate School of Natural and Applied Sciences, Ankara, (2014).
  • Balbaa, N., “Approach to Flexıbılıty in Archıtecture in the 21st Century”, MSc. Thesis, Bahçeşehir University Graduate School of Natural and Applied Sciences, İstanbul, (2016).
  • Alpar, S., “Bauhaus’un Sahne Tasarımına Etkileri”, MSc. Thesis, Dokuz Eylül University Graduate School of Fine Arts, İzmir, (2006).
  • TRC1 KONUT, “TRC1 Bölgesi Tarihi, Teorik ve Ampirik Konut Değerlendirmesi”, İpekyolu Kalkınma Ajansı Araştırma Serisi – 7, Gaziantep, 70, (2012).
  • Internet: http://www.moderndesign.org/2006/04/luigi-colani-rotorhaus.html, 19 June, (2018).
  • Internet: https://www.fastcompany.com/90450018/how-the-end-of-the-white-majority-could-change-office-dynamics-in-2040, 19 June, (2018).
  • Internet: https://www.engadget.com/2019/04/03/the-shed-nyc-hudson-yards/, 19 June, (2018).
  • Zuk, W. and Clark, R. H. Kinetic Architecture, Van Nostrand Reinhold Company, New York, 1430, (1970).
  • Korkmaz, K., “An Analytıcal Study of the Desıgn Potentıals in Kınetıc Archıtecture”, Unpublished Phd. Thesis, IZTECH The Graduate School Of Engineering and Sciences, İzmir, (2004).
  • Arslan, Selçuk S., “Proposal for A Non-Dımensıonal Parametrıc Interface Desıgn in Archıtecture: A Bıomımetıc Approach”, Phd. Thesis, METU Graduate School of Natural and Applied Sciences, Ankara, (2009).
  • Zenter, Ö., “Mimari Tasarımda Biyomimetik Yaklaşımların İşlevsel Esneklik Amaçlı Kullanımı”, MSc. Thesis, Gazi University Graduate School of Natural and Applied Sciences, Ankara, (2018).
  • Atawula, A., “Bioinspired Kinetic Architecture and Adaptive Component Design Proposal”, MSc. Thesis, Yıldız Technical University University Graduate School of Natural and Applied Sciences, İstanbul, (2016).
  • Bar-Cohen, Y., “Biomimetics: using nature to inspire human innovation”, Bioinspiration & Biomimetics, (1): P1-P12, (2006).
  • Yedekçi, G., Doğayla Tasarlamak Biyomimikri ve Geleceğin Mimarlığı, First Edition, Mimarlık Vakfı İktisadi İşletmesi, İstanbul, (2015).
  • Arslan Selçuk S. and Gönenç Sorguç A., “Mimarlık Tasarımı Paradigmasında Biomimesis’in Etkisi”, GÜMMF Dergisi, 22 (2): 451-459, (2007).
  • Internet: https://www.domusweb.it/en/architecture/2010/06/22/a-manifesto-for-medellin.html, 07 January, (2017).
  • Ekmekçi, Ç., “Mimari Yapılarda Hareket Çeşitlerinin İncelenmesi ve Hareketin Mimari Tasarımda Kullanılması”, MSc. Thesis, Yıldız Technical University University Graduate School of Natural and Applied Sciences, İstanbul, (2005).
  • Internet: https://inhabitat.com/amazing-calatrava-shade-pavilion-for-the-milwaukee-art-museum/, 10 January, (2017).
  • Internet: https://infinitespider.com/wp-content/uploads/2014/12/Spider-characteristics.png, 04 July, (2018).
  • Barth, F.G., A Spider’s World: Sensesand Behavior, Springer-Verlag, Berlin, (2002).
Toplam 26 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mimarlık
Bölüm Mimarlık
Yazarlar

Özge Zenter 0000-0002-7785-3218

Tayfun Yıldırım 0000-0003-4160-8314

Yayımlanma Tarihi 28 Eylül 2020
Gönderilme Tarihi 30 Mart 2020
Yayımlandığı Sayı Yıl 2020 Cilt: 8 Sayı: 3

Kaynak Göster

APA Zenter, Ö., & Yıldırım, T. (2020). PROPOSAL OF BIO-INSPIRED KINETIC MECHANISMS UTILIZATION FOR PROVIDING FUNCTIONAL FLEXIBILITY IN ARCHITECTURAL DESIGN. Gazi University Journal of Science Part B: Art Humanities Design and Planning, 8(3), 643-656.