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Investigation of Evacuation Efficiency of High-Rise Buildings: Case of Gaziantep Annex Courthouse Building

Yıl 2022, Cilt: 5 Sayı: 2, 545 - 559, 31.10.2022
https://doi.org/10.35341/afet.1083155

Öz

The most realistic method in the evacuation analysis of buildings is evacuation drills. However, this method carries some physical risks, especially in buildings with high occupant loads. With the developing technology, computer-based simulation programs have started to take a large place in evacuation analyzes as in many areas. In this article, the evacuation efficiency of Gaziantep Annex Courthouse, which has been tested and approved with the prescriptive method and is in the high-rise class according to the Turkish Zoning Regulation, is examined. In this study, which examines the prescriptive and performance-based methods used in creating simulation models, Gaziantep Annex Courthouse was tested according to the performance-based model and according to international definitions, with the Pathfinder simulation program. According to the results obtained, it was seen that the building was evacuated in 45 minutes and 35 seconds with the occupant load determined by the National Fire Protection Association, and in 18 minutes and 50 seconds with the estimated occupant load determined by the authors for the normal occupant load of the building on a normal day. In addition, design details that will allow effective evacuation in the design of high-rise buildings are mentioned.

Kaynakça

  • Aydın, M. M., Akgöl, K., & Günay, B. (2019). Trafik sakinleştirme çalışmalarında farklı kıvrımlama uygulamalarının sürüş simülatörü ortamında incelenmesi. Gazi Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi, 34(4), 1793–1806. https://doi.org/10.17341/gazimmfd.571558
  • Binaların Yangından Korunması Hakkında Yönetmelik., Pub. L. No. 26735 (2015).
  • Brown, S. (2016). Fire and Evacuation Modelling Technical Conference. A UK Evacuation Case Study Using Pathfinder Questions the Suitability of Fire Safety Guidance. Costa de Sol.
  • Chen, J., Ma, J., & Lo, S. M. (2017). Event-driven modeling of elevator assisted evacuation in ultra high-rise buildings. Simulation Modelling Practice and Theory, 74, 99–116. https://doi.org/10.1016/J.SIMPAT.2017.03.004
  • Code for Fire Protection Design of Tall Building, (2005). Chinese Standard in English/GB 50045-1995.
  • Code of Practice for Lift Works and Escalator Works, (2018). Electrical and Mechanical Services Department The Government of the Hong Kong Special Administrative Region.
  • Ding, Y., Yang, L., Weng, F., Fu, Z., & Rao, P. (2015). Investigation of combined stairs elevators evacuation strategies for high rise buildings based on simulation. Simulation Modelling Practice and Theory, 53, 60–73. https://doi.org/10.1016/J.SIMPAT.2015.01.004
  • Fang, Z.-M., Song, W.-G., Li, Z.-J., Tian, W., Lv, W., Ma, J., & Xiao, X. (2012). Experimental study on evacuation process in a stairwell of a high-rise building. Building and Environment, 47, 316–321. https://doi.org/10.1016/J.BUILDENV.2011.07.009
  • Galea, E. R., Sharp, G., Lawrence, P., & Holden, R. (2008). Approximating the Evacuation of the World Trade Center North Tower using Computer Simulation. Journal of Fire Protection Engineering - J FIRE PROT ENG, 18, 85–115. https://doi.org/10.1177/1042391507079343
  • Güleç, E., Akın, G., Sağır, M., Koca Özer, B., Gültekin, T., & Bektaş, Y. (2009). ANADOLU İNSANININ ANTROPOMETRİK BOYUTLARI: 2005 YILI TÜRKİYE ANTROPOMETRİ ANKETİ GENEL SONUÇLARI. Ankara Ünibersitesi Dil ve Tarih-Coğrafya Fakültesi Dergisi, 49(2), 187–201.
  • Haitao, C., Leilei, L., & Jiuzi, Q. (2012). Accident Cause Analysis and Evacuation Countermeasures on the High-Rise Building Fires. Procedia Engineering, 43, 23–27. https://doi.org/10.1016/J.PROENG.2012.08.005
  • Huo, F., Song, W., Chen, L., Liu, C., & Liew, K. M. (2016). Experimental study on characteristics of pedestrian evacuation on stairs in a high-rise building. Safety Science, 86, 165–173. https://doi.org/10.1016/J.SSCI.2016.02.025
  • Hurley, M. J., Gottuk, D. T., Hall, J. R., Harada, K., Kuligowski, E. D., Puchovsky, M., … WIECZOREK, C. J. (2015). SFPE Handbook of Fire Protection Engineering. Retrieved from https://books.google.com.tr/books?id=Jh88rgEACAAJ
  • Kinsey, M., Galea, E. R., & Lawrence, P. (2012). Human Factors Associated with the Selection of Lifts/Elevators or Stairs in Emergency and Normal Usage Conditions. Fire Technology, 48, 3–26. https://doi.org/10.1007/s10694-010-0176-7
  • Kuligowski, E. (2003). Elevators for occupant evacuation and fire department access. NISTIR.
  • Leur, P. van de. (2005). Building Evacuation, Rules and Reality. HERON, 50(4), 237–246.
  • Lowe, S. (2019). Prescriptive vs. Performance Specifications In Construction. Retrieved September 23, 2019, from https://www.traunerconsulting.com/prescriptive-vs-performance-specifications-in-construction/
  • Ma, J., Lo, S. M., & Song, W. G. (2012). Cellular automaton modeling approach for optimum ultra high-rise building evacuation design. Fire Safety Journal, 54, 57–66. https://doi.org/10.1016/J.FIRESAF.2012.07.008
  • McConnell, N. C., Boyce, K. E., Shields, J., Galea, E. R., Day, R. C., & Hulse, L. M. (2010). The UK 9/11 evacuation study: Analysis of survivors’ recognition and response phase in WTC1. Fire Safety Journal, 45(1), 21–34. https://doi.org/10.1016/J.FIRESAF.2009.09.001
  • Muha, T. (2012). Evaluating Occupant Load Factors for Business Operations. Worcester.
  • Nakahama, S., Ebihara, M., Sekizawa, A., Ikehata, Y., & Notake, H. (2005). An Examination Of Feasibility Of Elevator Evacuation Based On Risk Assessment. Fire Safety Science, 8, 611–622. https://doi.org/10.3801/IAFSS.FSS.8-611
  • National Fire Protection Association, NFPA 101-Life Safety Code, (2009).
  • Planlı Alanlar İmar Yönetmeliği. Resmî Gazete Tarihi: 03.07.2017 Resmî Gazete Sayısı: 30113, (2017).
  • Reynolds, C. W. (1999). Steering Behavior for Autonomous Characters. Game Developers Conference, 763–782.
  • Ronchi, E., & Nilsson, D. (2013). Assessment of Total Evacuation Systems for Tall Buildings.
  • Sosnowski, M., & Pisarek, J. (2014). Comparative analysis of evacuation modelling using different numerical models. Prace Naukowe Akademii Im. Jana Długosza w Częstochowie. Technika, Informatyka, Inżynieria Bezpieczeństwa, 2, 383–390. https://doi.org/10.16926/tiib.2014.02.33
  • Strömgren, M. (2018). Fire Safety Europe. Retrieved September 23, 2019, from https://firesafeeurope.eu/performance-based-design-prescriptive-methods/
  • Topraklı, A. Y., Sedihemaiti, S., & Ağraz, G. (2019). Osmanlı klasik dönem tipi modern camilerin tahliye problemine ilişkin değerlendirme. Gazi Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi, 34(4), 2261–2270. https://doi.org/10.17341/gazimmfd.490086
  • Wu, G.-Y., & Huang, H.-C. (2015). Modeling the emergency evacuation of the high rise building based on the control volume model. Safety Science, 73, 62–72. https://doi.org/10.1016/J.SSCI.2014.11.012

Yüksek Binaların Tahliye Etkinliğinin İncelenmesi: Gaziantep Ek Adliye Binası Örneği

Yıl 2022, Cilt: 5 Sayı: 2, 545 - 559, 31.10.2022
https://doi.org/10.35341/afet.1083155

Öz

Binaların tahliye analizinde en gerçekçi metot tahliye tatbikatlarıdır. Fakat bu metot özellikle yüksek kullanıcı yüküne sahip binalarda bazı fiziki riskler taşımaktadır. Gelişen teknolojiyle birlikte bilgisayar tabanlı benzetim çalışmaları, birçok alanda olduğu gibi tahliye analizlerinde de geniş yer almaya başlamıştır. Bu makalede, ön tanımlı metotla test edilmiş ve onaylanmış olan ve Türkiye İmar Yönetmeliğine göre yüksek yapı sınıfında bulunan Gaziantep Ek Adliye Binasının tahliye etkinliği incelenmiştir. Benzetim modelleri oluşturulurken kullanılan metotlardan ön tanımlı ve performans tabanlı metotları inceleyen bu çalışmada, Gaziantep Ek Adliye Binası, performans tabanlı modele göre ve uluslararası tanımlara göre, Pathfinder benzetim programıyla test edilmiştir. Elde edilen sonuçlara göre binanın, National Fire Protection Association tarafından belirlenen kullanıcı yüküne göre 45 dk 35 sn’de, yazarlar tarafından binanın normal bir gündeki normal yüküne yönelik oluşturulan tahmini kullanıcı yüküne göre ise 18 dk 50 sn’de tahliye edildiği görülmüştür. Ayrıca yüksek binaların tasarımında etkin tahliyeye izin verecek tasarım detaylarından bahsedilmiştir.

Kaynakça

  • Aydın, M. M., Akgöl, K., & Günay, B. (2019). Trafik sakinleştirme çalışmalarında farklı kıvrımlama uygulamalarının sürüş simülatörü ortamında incelenmesi. Gazi Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi, 34(4), 1793–1806. https://doi.org/10.17341/gazimmfd.571558
  • Binaların Yangından Korunması Hakkında Yönetmelik., Pub. L. No. 26735 (2015).
  • Brown, S. (2016). Fire and Evacuation Modelling Technical Conference. A UK Evacuation Case Study Using Pathfinder Questions the Suitability of Fire Safety Guidance. Costa de Sol.
  • Chen, J., Ma, J., & Lo, S. M. (2017). Event-driven modeling of elevator assisted evacuation in ultra high-rise buildings. Simulation Modelling Practice and Theory, 74, 99–116. https://doi.org/10.1016/J.SIMPAT.2017.03.004
  • Code for Fire Protection Design of Tall Building, (2005). Chinese Standard in English/GB 50045-1995.
  • Code of Practice for Lift Works and Escalator Works, (2018). Electrical and Mechanical Services Department The Government of the Hong Kong Special Administrative Region.
  • Ding, Y., Yang, L., Weng, F., Fu, Z., & Rao, P. (2015). Investigation of combined stairs elevators evacuation strategies for high rise buildings based on simulation. Simulation Modelling Practice and Theory, 53, 60–73. https://doi.org/10.1016/J.SIMPAT.2015.01.004
  • Fang, Z.-M., Song, W.-G., Li, Z.-J., Tian, W., Lv, W., Ma, J., & Xiao, X. (2012). Experimental study on evacuation process in a stairwell of a high-rise building. Building and Environment, 47, 316–321. https://doi.org/10.1016/J.BUILDENV.2011.07.009
  • Galea, E. R., Sharp, G., Lawrence, P., & Holden, R. (2008). Approximating the Evacuation of the World Trade Center North Tower using Computer Simulation. Journal of Fire Protection Engineering - J FIRE PROT ENG, 18, 85–115. https://doi.org/10.1177/1042391507079343
  • Güleç, E., Akın, G., Sağır, M., Koca Özer, B., Gültekin, T., & Bektaş, Y. (2009). ANADOLU İNSANININ ANTROPOMETRİK BOYUTLARI: 2005 YILI TÜRKİYE ANTROPOMETRİ ANKETİ GENEL SONUÇLARI. Ankara Ünibersitesi Dil ve Tarih-Coğrafya Fakültesi Dergisi, 49(2), 187–201.
  • Haitao, C., Leilei, L., & Jiuzi, Q. (2012). Accident Cause Analysis and Evacuation Countermeasures on the High-Rise Building Fires. Procedia Engineering, 43, 23–27. https://doi.org/10.1016/J.PROENG.2012.08.005
  • Huo, F., Song, W., Chen, L., Liu, C., & Liew, K. M. (2016). Experimental study on characteristics of pedestrian evacuation on stairs in a high-rise building. Safety Science, 86, 165–173. https://doi.org/10.1016/J.SSCI.2016.02.025
  • Hurley, M. J., Gottuk, D. T., Hall, J. R., Harada, K., Kuligowski, E. D., Puchovsky, M., … WIECZOREK, C. J. (2015). SFPE Handbook of Fire Protection Engineering. Retrieved from https://books.google.com.tr/books?id=Jh88rgEACAAJ
  • Kinsey, M., Galea, E. R., & Lawrence, P. (2012). Human Factors Associated with the Selection of Lifts/Elevators or Stairs in Emergency and Normal Usage Conditions. Fire Technology, 48, 3–26. https://doi.org/10.1007/s10694-010-0176-7
  • Kuligowski, E. (2003). Elevators for occupant evacuation and fire department access. NISTIR.
  • Leur, P. van de. (2005). Building Evacuation, Rules and Reality. HERON, 50(4), 237–246.
  • Lowe, S. (2019). Prescriptive vs. Performance Specifications In Construction. Retrieved September 23, 2019, from https://www.traunerconsulting.com/prescriptive-vs-performance-specifications-in-construction/
  • Ma, J., Lo, S. M., & Song, W. G. (2012). Cellular automaton modeling approach for optimum ultra high-rise building evacuation design. Fire Safety Journal, 54, 57–66. https://doi.org/10.1016/J.FIRESAF.2012.07.008
  • McConnell, N. C., Boyce, K. E., Shields, J., Galea, E. R., Day, R. C., & Hulse, L. M. (2010). The UK 9/11 evacuation study: Analysis of survivors’ recognition and response phase in WTC1. Fire Safety Journal, 45(1), 21–34. https://doi.org/10.1016/J.FIRESAF.2009.09.001
  • Muha, T. (2012). Evaluating Occupant Load Factors for Business Operations. Worcester.
  • Nakahama, S., Ebihara, M., Sekizawa, A., Ikehata, Y., & Notake, H. (2005). An Examination Of Feasibility Of Elevator Evacuation Based On Risk Assessment. Fire Safety Science, 8, 611–622. https://doi.org/10.3801/IAFSS.FSS.8-611
  • National Fire Protection Association, NFPA 101-Life Safety Code, (2009).
  • Planlı Alanlar İmar Yönetmeliği. Resmî Gazete Tarihi: 03.07.2017 Resmî Gazete Sayısı: 30113, (2017).
  • Reynolds, C. W. (1999). Steering Behavior for Autonomous Characters. Game Developers Conference, 763–782.
  • Ronchi, E., & Nilsson, D. (2013). Assessment of Total Evacuation Systems for Tall Buildings.
  • Sosnowski, M., & Pisarek, J. (2014). Comparative analysis of evacuation modelling using different numerical models. Prace Naukowe Akademii Im. Jana Długosza w Częstochowie. Technika, Informatyka, Inżynieria Bezpieczeństwa, 2, 383–390. https://doi.org/10.16926/tiib.2014.02.33
  • Strömgren, M. (2018). Fire Safety Europe. Retrieved September 23, 2019, from https://firesafeeurope.eu/performance-based-design-prescriptive-methods/
  • Topraklı, A. Y., Sedihemaiti, S., & Ağraz, G. (2019). Osmanlı klasik dönem tipi modern camilerin tahliye problemine ilişkin değerlendirme. Gazi Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi, 34(4), 2261–2270. https://doi.org/10.17341/gazimmfd.490086
  • Wu, G.-Y., & Huang, H.-C. (2015). Modeling the emergency evacuation of the high rise building based on the control volume model. Safety Science, 73, 62–72. https://doi.org/10.1016/J.SSCI.2014.11.012
Toplam 29 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Mimarlık
Bölüm Makaleler
Yazarlar

Abdurrahman Yağmur Topraklı 0000-0003-2437-9724

Muhsin Selçuk Satır 0000-0003-1011-5429

Yayımlanma Tarihi 31 Ekim 2022
Kabul Tarihi 4 Ağustos 2022
Yayımlandığı Sayı Yıl 2022 Cilt: 5 Sayı: 2

Kaynak Göster

APA Topraklı, A. Y., & Satır, M. S. (2022). Yüksek Binaların Tahliye Etkinliğinin İncelenmesi: Gaziantep Ek Adliye Binası Örneği. Afet Ve Risk Dergisi, 5(2), 545-559. https://doi.org/10.35341/afet.1083155
AMA Topraklı AY, Satır MS. Yüksek Binaların Tahliye Etkinliğinin İncelenmesi: Gaziantep Ek Adliye Binası Örneği. Afet ve Risk Dergisi. Ekim 2022;5(2):545-559. doi:10.35341/afet.1083155
Chicago Topraklı, Abdurrahman Yağmur, ve Muhsin Selçuk Satır. “Yüksek Binaların Tahliye Etkinliğinin İncelenmesi: Gaziantep Ek Adliye Binası Örneği”. Afet Ve Risk Dergisi 5, sy. 2 (Ekim 2022): 545-59. https://doi.org/10.35341/afet.1083155.
EndNote Topraklı AY, Satır MS (01 Ekim 2022) Yüksek Binaların Tahliye Etkinliğinin İncelenmesi: Gaziantep Ek Adliye Binası Örneği. Afet ve Risk Dergisi 5 2 545–559.
IEEE A. Y. Topraklı ve M. S. Satır, “Yüksek Binaların Tahliye Etkinliğinin İncelenmesi: Gaziantep Ek Adliye Binası Örneği”, Afet ve Risk Dergisi, c. 5, sy. 2, ss. 545–559, 2022, doi: 10.35341/afet.1083155.
ISNAD Topraklı, Abdurrahman Yağmur - Satır, Muhsin Selçuk. “Yüksek Binaların Tahliye Etkinliğinin İncelenmesi: Gaziantep Ek Adliye Binası Örneği”. Afet ve Risk Dergisi 5/2 (Ekim 2022), 545-559. https://doi.org/10.35341/afet.1083155.
JAMA Topraklı AY, Satır MS. Yüksek Binaların Tahliye Etkinliğinin İncelenmesi: Gaziantep Ek Adliye Binası Örneği. Afet ve Risk Dergisi. 2022;5:545–559.
MLA Topraklı, Abdurrahman Yağmur ve Muhsin Selçuk Satır. “Yüksek Binaların Tahliye Etkinliğinin İncelenmesi: Gaziantep Ek Adliye Binası Örneği”. Afet Ve Risk Dergisi, c. 5, sy. 2, 2022, ss. 545-59, doi:10.35341/afet.1083155.
Vancouver Topraklı AY, Satır MS. Yüksek Binaların Tahliye Etkinliğinin İncelenmesi: Gaziantep Ek Adliye Binası Örneği. Afet ve Risk Dergisi. 2022;5(2):545-59.