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Yapı Malzemesi Seçiminde Kriterler ve Sürdürülebilirliğin Yeri

Yıl 2024, Cilt: 17 Sayı: Sürdürülebilir İnsani Kalkınma ve Kent, 334 - 354, 27.10.2024
https://doi.org/10.35674/kent.1448627

Öz

Yapılar, yaşam döngüleri boyunca başta malzeme ve enerji olmak üzere büyük miktarlarda doğal kaynak tüketmeleri ve atık üretmeleri nedeniyle sürdürülebilirliğin odak noktası haline gelmişlerdir. Yapıları sürdürülebilir hale getirme çabaları yapım yönetim sürecinin büyük kısmını yöneten malzemelerin sürdürülebilirliğiyle başlamaktadır. Bu çalışmada yapı malzemelerinin sürdürülebilirliğinde dikkate alınacak kriterlerin önem seviyelerinin belirlenmesine çalışılmıştır. Bu maksatla çevresel, sosyal ve ekonomik kriterler başlıkları altında toplanmış 25 kriterin sürdürülebilirlik açısından öneminin değerlendirildiği bir anket çalışması gerçekleştirilmiştir. Anket farklı mesleklerden ve farklı demografik özelliklerde 50 kişinin katılımı ile gerçekleştirilmiş, katılımcı görüşlerinin demografik özelliklere göre farklılaşıp farklılaşmadığı çıkarımsal analizlerle incelenmiştir. Çıkarımsal analizlerde sadece iş deneyim süresi için ekonomik kriterlere ilişkin görüşlerin farklılaştığı, cinsiyet, yaş, eğitim seviyesi ve mesleğe göre bir farklılaşma olmadığı tespit edilmiştir. Bu nedenle sonuçların genellenebileceğine karar verilmiş ve kriterlerin göreli önem değerleri belirlenmiştir. Suyun korunumu çevresel dahil tüm kriterler içerisinde ilk sırada yer alırken, sosyal kriterler içerisinde erişilebilirlik ve ekonomik kriterler içerisinde uzun vadeli tasarruf en önemli kriterler olarak tespit edilmiştir. Sonuçlar inşaat sektörünü daha sürdürülebilir hale getirmek için yapı malzemelerinin sürdürülebilirliğinde hangi kriterlere dikkat edilmesi gerektiğini ortaya koymuştur. Bu açıdan çalışmanın hükümetler, yerel yönetimler, yapı malzemesi üreticileri, tasarımcılar, yükleniciler ve en nihayetinde kullanıcılar için yol gösterici olacağı değerlendirilmektedir.

Kaynakça

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Criteria in Building Material Selection and The Role of Sustainability

Yıl 2024, Cilt: 17 Sayı: Sürdürülebilir İnsani Kalkınma ve Kent, 334 - 354, 27.10.2024
https://doi.org/10.35674/kent.1448627

Öz

Buildings have become the focal point of sustainability because they consume large amounts of natural resources, especially materials and energy, and produce waste throughout their life cycle. Efforts to make buildings sustainable begin with the sustainability of the materials that govern most of the construction management process. In this study, an attempt was made to determine the importance levels of the criteria to be considered in the sustainability of building materials. For this purpose, a survey study was conducted to evaluate the importance of 25 criteria, grouped under the headings of environmental, social, and economic criteria, in terms of sustainability. The survey was conducted with the participation of 50 people from different professions and with different demographic characteristics, and whether participant opinions differed according to demographic characteristics was examined through inferential analyses. The inferential analyses revealed that the views differed for the work experience and only on economic criteria, and that there was no differentiation according to gender, age, education level and profession. For this reason, it was decided that the results could be generalized, and the relative importance values of the criteria were determined. While water conservation ranks first among all criteria, including environmental, accessibility among social criteria and long-term savings among economic criteria have been determined to be the most important criteria. The results revealed which criteria should be taken into consideration in the sustainability of building materials in order to make the construction industry more sustainable. In this respect, it is evaluated that the study will be a guide for governments, local governments, building material manufacturers, designers, contractors and ultimately users.

Kaynakça

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  • Alabi, B., & Fapohunda, J. (2021). Effects of İncrease in the Cost of Building Materials on the Delivery of Affordable Housing in South Africa. Sustainability, 13(4), 1772.
  • Al-Atesh, E. A., Rahmawati, Y., Zawawi, N. A. W. A., & Utomo, C. (2023). A Decision-Making Model for Supporting Selection of Green Building Materials. International Journal of Construction Management, 23(5), 922-933.
  • Alibaba, H. Z., & Deniz, M. B. (2004). A Building Elements Selection System for Architects. Building and Environment, 39(3), 307-316.
  • Anderson, J., & Thornback, J. (2012). A Guide to Understanding the Embodied İmpacts of Construction Products. Construction Products Association, 12(1), 2013.
  • Andrady, A. L., Torikai, A., Redhwi, H. H., Pandey, K. K., & Gies, P. (2015). Consequences of Stratospheric Ozone Depletion and Climate Change on the Use of Materials. Photochemical & Photobiological Sciences, 14(1), 170-184.
  • Anschütz, J., IJgosse, J., & Scheinberg, A. (2004). Putting İntegrated Sustainable Waste Management into Practice. Waste Netherland, 1-102.
  • Arun, M., Baskar, K., Geethapriya, B. S., Jayabarathi, M., & Angayarkkani, R. (2021). Affordable Housing: Cost Effective Construction Materials for Economically Weaker Section. Materials Today: Proceedings, 45, 7838-7844.
  • Ashraf, N., Al Ghonamy, A., Esam, M., Aichouni, M., Abdulwahab, M., & Subhi, O. (2015). Significance of Life Cycle Costing for Selection of Building Construction Materials. In Second Intl. Conf. on Advances in Civil, Structural and Construction Engineering-CSCE (pp. 94-98).
  • Aye, E. (2003). Taking the Pulse. Sustainability and the Interior Design Practice, Retrived November 5, 2023. from http://www.greenbuildingservices.com/news/releases/2003_ 13__55_pulse.pdf
  • Baharetha, S. M., Al-Hammad, A. A., & Alshuwaikhat, H. M. (2013). Towards a Unified Set of Sustainable Building Materials Criteria. In ICSDEC 2012: Developing the Frontier of Sustainable Design, Engineering, and Construction (pp. 732-740).
  • Balm, S., & Ploos Van Amstel, W. (2018). Exploring Criteria for Tendering for Sustainable Urban Construction Logistics. City Logistics 1: New Opportunities and Challenges, 251-263.
  • Baumann, H., & Tillman, A. (2004). The Hitch Hiker's Guide to LCA: An Orientation in Life Cycle Assessment Methodology and Application.
  • Bleby M., (2023). “Embodied Water” is the Latest Challenge for the Building İndustry Retrieved February 20, 2023. from https://www.afr.com/property/commercial/construction-s-next-cost-challenge-embodied-water-
  • Bowling, A., & Ebrahim, S. (2005). Handbook of Health Research Methods: İnvestigation, Measurement and Analysis. McGraw-Hill Education (UK).
  • Bredenoord, J. (2016). Sustainable Housing and Building Materials for Low-İncome Households. Journal of Architectural Engineering Technology, 5(1), 1-9.
  • Bulkeley, H., & Betsill, M. (2005). Rethinking Sustainable Cities: Multilevel Governance and the'Urban'Politics of Climate Change. Environmental politics, 14(1), 42-63.
  • Caldas, C. H., Menches, C. L., Reyes, P. M., Navarro, L., & Vargas, D. M. (2015). Materials Management Practices in the Construction İndustry. Practice Periodical on Structural Design and Construction, 20(3), 04014039.
  • Castro-Lacouture, D., Sefair, J. A., Flórez, L., & Medaglia, A. L. (2009). Optimization Model for the Selection of Materials Using a LEED-Based Green Building Rating System in Colombia. Building and Environment, 44(6), 1162-1170.
  • Chirarattananon, S., & Taveekun, J. (2004). An OTTV-Based Energy Estimation Model for Commercial Buildings in Thailand. Energy and Buildings, 36(7), 680-689.
  • Clayton, M.H. & Radcliffe, N.J. (1996). Sustainability—A Systems Approach. Edinburgh: Westview Press.
  • Clean Air Right Platform. (2022). Kara Rapor 2022 Hava Kirliliği ve Sağlık Etkileri, Retrieved January 10, 2024. from https://www.temizhavahakki.org/wpcontent/uploads/2023/03/KaraRapor_v6.pdf%20P Printworld Matbaa, İstanbul.
  • Cronbach, L. J. (1951). Coefficient Alpha and the İnternal Structure of Tests. Psychometrika, 16(3), 297-334. Cycle Assessment Methodology and Application. 1st ed. 2004: Studentlitteratur AB.
  • Danso, H. (2018). Dimensions and İndicators for Sustainable Construction Materials: A Review. Res. Dev. Mater. Sci, 3(4), 1-9.
  • Dinh, T. H., Dinh, T. H., & Götze, U. (2020). Integration of Sustainability Criteria and Life Cycle Sustainability Assessment Method into Construction Material Selection in Developing Countries: The Case of Vietnam. Int. J. Sustain. Dev. Plan, 15, 1145-1156.
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  • Narin, M. & Akdemir S. (2006). Enerji Verimliliği ve Türkiye, UEK-TEK 2006 Uluslararası Ekonomi Konferansı, Türkiye Ekonomi Kurumu, 11-13 Eylül 2006, Ankara.
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  • Yıldız, D., Başlamışlı Y., Özgüler, H., Demir, N. & Kandemir, F., (2021). Doğal Göllerimizin Durumu ve Acil Önlem İhtiyacı, Su Politikaları Derneği, Report no: 41.
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  • Zhang, X., Platten, A., & Shen, L. (2011). Green Property Development Practice in China: Costs and Barriers. Building and Environment, 46(11), 2153-2160.
  • Zhou, L., Keivani, R., & Kurul, E. (2008). The Economic Benefits of Sustainable PFI Project: A Case Study of Newport Southern Distributor Road.
Toplam 94 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Ekoloji, Sürdürülebilirlik ve Enerji
Bölüm Tüm Makaleler
Yazarlar

Serkan Yıldız 0000-0002-6020-1993

Gülnaz Şengül Güneş 0000-0001-8961-9210

Berkan Alim 0009-0003-4504-7013

Yayımlanma Tarihi 27 Ekim 2024
Gönderilme Tarihi 8 Mart 2024
Kabul Tarihi 27 Ekim 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 17 Sayı: Sürdürülebilir İnsani Kalkınma ve Kent

Kaynak Göster

APA Yıldız, S., Şengül Güneş, G., & Alim, B. (2024). Criteria in Building Material Selection and The Role of Sustainability. Kent Akademisi, 17(Sürdürülebilir İnsani Kalkınma ve Kent), 334-354. https://doi.org/10.35674/kent.1448627

International Refereed and Indexed Journal of Urban Culture and Management | Kent Kültürü ve Yönetimi Uluslararası Hakemli İndeksli Dergi

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