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BARET TEMELLİ YUMUŞAK KİLLİ ZEMİNLERİN TAŞIMA GÜCÜ ANALİZİ

Year 2025, Volume: 30 Issue: 3, 731 - 750, 19.12.2025
https://doi.org/10.17482/uumfd.1732493
https://izlik.org/JA82TY23NF

Abstract

Bu çalışma, yumuşak killi zemin koşullarında baret temellerin taşıma gücü analizi sunmaktadır. Aynı kesit alanına sahip dikdörtgen, T ve L şeklindeki baret kazıklar, farklı planda yerleşim şekillerle Plaxis sonlu elemanlar yazılımı kullanılarak modellenmiştir. Gerçekleştirilen analizler sonucunda, her bir yerleşim şekline ait zeminin göçtüğü andaki maksimum taşıma gücü ve izin verilen 10 cm olan sınır oturma değeri için sınır taşıma gücü değerleri elde edilmiş. Elde edilen sonuçlar, baret temellerin geometrik yerleşiminin taşıma gücü performansı üzerinde önemli bir etkiye sahip olduğunu göstermektedir.

References

  • Basu, D., Salgado, R., & Prezzi, M. (2014). A framework for analysis of piles with rectangular cross section. In Geo-Frontiers 2014: Advances in Geotechnical Engineering (pp. 420–429). American Society of Civil Engineers.
  • Bajad, S.P. and Sahu, R. B., 2008. An experimental study on the behavior of vertically loaded piled raft on soft clay, The 12th Intl. Conf. Of International Association for Computer Methods and Advances in Geomechanics (IACMAG), 84–90.
  • Bertuzzi, R. (2014). Rock Testing and Site Characterisation (2nd ed.). Sydney: Roads and Maritime Services, Australia.
  • Chang, D.-W. ve Lin, Y. K. (2019). Three-dimensional finite element analyses of barrette piles under compression and uplift loads with field data assessments. Geotechnical Engineering. 50(3), 58-73.
  • Demiröz, A., & Saran, O. (2020). Baret Temeller ve Hesap İlkeleri. Paper presented at the International Mediterranean Science and Engineering Congress (IMSEC 2020), Antalya, Turkey, 186–192.
  • Deshpande, S.S. Ve Thakare, S.W. (2017) Performance of piled raft foundation subjected to non-uniform load, International Journal Of Civil Engineering And Technology, 8 (4), 16031613. ISSN Print: 0976-6308 and ISSN Online: 0976-6316
  • Durgunoglu, H. T. (2013). Barrette Foundations — Two Case Histories from Turkey. 7th International Conference on Case Histories in Geotechnical Engineering, Chicago, IL. Missouri University of Science and Technology.
  • El Gendy, M. M. M. (2016). Modeling Barrette Foundations under Lateral Loads [Yüksek lisans tezi, Port Said Üniversitesi]. ResearchGate.
  • Hsu, M. C., Yu, C. H. ve Chen, C. H. (2017). Case studies forside resistance of barrette piles using results of ultimate load tests. Journal of GeoEngineering, 12(2), 65–79.
  • Kumari, A., Thakare, S. W., & Dhatrak, A. I. (2018). Lateral and uplift capacities of barrette pile in sandy soil. In Construction in Geotechnical Engineering: Proceedings of IGC 2018 (pp. 215–235).
  • Mangushev, R. A. ve Nikitina, N. S. (2018). Evaluation and analysis of bearing capacity of bored piles and deep-laid pile-barrette for a high-rise building on loose grounds based on calculations and field tests. International Journal for Computational Civil and Structural Engineering, 14(2), 109–116.
  • Orhan, M. (2022). Geoteknik mühendisliği ve temel inşaatı: Cilt 1 (2. baskı). Gazi Kitabevi.
  • Towfeek, A. R. (2017). Behavior of Barrette Pile in Pure and Cemented Sand Using Osterberg Cell. Journal of Emerging Technologies and Innovative Research (JETIR), 4(11), 224–230.
  • Yeşiltepe, Ö., & Örnek, M. (2022). Baret Kazıklarda Taşıma Gücü Davranışının Sayısal Analizi. Zemin mekaniği ve geoteknik mühendisliği 18th International Conference on Geotechnical Engineering, Erciyes University, Kayseri, Turkey.
  • Yıldız, K. (2011). Baret kazıklı temellerde düşey taşıma kapasitesi [Yüksek lisans tezi, İstanbul Teknik Üniversitesi]. Yükseköğretim Kurulu Ulusal Tez Merkezi.

Bearing Capacity Analysis of Soft Clay Soils with Barrette Foundation

Year 2025, Volume: 30 Issue: 3, 731 - 750, 19.12.2025
https://doi.org/10.17482/uumfd.1732493
https://izlik.org/JA82TY23NF

Abstract

This study presents a bearing capacity analysis of barrette foundations under soft clay soil conditions. Barrette piles with identical cross-sectional areas in rectangular, T, and L shapes were modeled using the Plaxis finite element software with various layout configurations in plan. As a result of the analyses, the maximum bearing capacity at failure and the allowable bearing capacity corresponding to a settlement limit of 10 cm were determined for each configuration. The findings indicate that the geometric arrangement of barrette foundations has a significant impact on their bearing capacity performance.

References

  • Basu, D., Salgado, R., & Prezzi, M. (2014). A framework for analysis of piles with rectangular cross section. In Geo-Frontiers 2014: Advances in Geotechnical Engineering (pp. 420–429). American Society of Civil Engineers.
  • Bajad, S.P. and Sahu, R. B., 2008. An experimental study on the behavior of vertically loaded piled raft on soft clay, The 12th Intl. Conf. Of International Association for Computer Methods and Advances in Geomechanics (IACMAG), 84–90.
  • Bertuzzi, R. (2014). Rock Testing and Site Characterisation (2nd ed.). Sydney: Roads and Maritime Services, Australia.
  • Chang, D.-W. ve Lin, Y. K. (2019). Three-dimensional finite element analyses of barrette piles under compression and uplift loads with field data assessments. Geotechnical Engineering. 50(3), 58-73.
  • Demiröz, A., & Saran, O. (2020). Baret Temeller ve Hesap İlkeleri. Paper presented at the International Mediterranean Science and Engineering Congress (IMSEC 2020), Antalya, Turkey, 186–192.
  • Deshpande, S.S. Ve Thakare, S.W. (2017) Performance of piled raft foundation subjected to non-uniform load, International Journal Of Civil Engineering And Technology, 8 (4), 16031613. ISSN Print: 0976-6308 and ISSN Online: 0976-6316
  • Durgunoglu, H. T. (2013). Barrette Foundations — Two Case Histories from Turkey. 7th International Conference on Case Histories in Geotechnical Engineering, Chicago, IL. Missouri University of Science and Technology.
  • El Gendy, M. M. M. (2016). Modeling Barrette Foundations under Lateral Loads [Yüksek lisans tezi, Port Said Üniversitesi]. ResearchGate.
  • Hsu, M. C., Yu, C. H. ve Chen, C. H. (2017). Case studies forside resistance of barrette piles using results of ultimate load tests. Journal of GeoEngineering, 12(2), 65–79.
  • Kumari, A., Thakare, S. W., & Dhatrak, A. I. (2018). Lateral and uplift capacities of barrette pile in sandy soil. In Construction in Geotechnical Engineering: Proceedings of IGC 2018 (pp. 215–235).
  • Mangushev, R. A. ve Nikitina, N. S. (2018). Evaluation and analysis of bearing capacity of bored piles and deep-laid pile-barrette for a high-rise building on loose grounds based on calculations and field tests. International Journal for Computational Civil and Structural Engineering, 14(2), 109–116.
  • Orhan, M. (2022). Geoteknik mühendisliği ve temel inşaatı: Cilt 1 (2. baskı). Gazi Kitabevi.
  • Towfeek, A. R. (2017). Behavior of Barrette Pile in Pure and Cemented Sand Using Osterberg Cell. Journal of Emerging Technologies and Innovative Research (JETIR), 4(11), 224–230.
  • Yeşiltepe, Ö., & Örnek, M. (2022). Baret Kazıklarda Taşıma Gücü Davranışının Sayısal Analizi. Zemin mekaniği ve geoteknik mühendisliği 18th International Conference on Geotechnical Engineering, Erciyes University, Kayseri, Turkey.
  • Yıldız, K. (2011). Baret kazıklı temellerde düşey taşıma kapasitesi [Yüksek lisans tezi, İstanbul Teknik Üniversitesi]. Yükseköğretim Kurulu Ulusal Tez Merkezi.
There are 15 citations in total.

Details

Primary Language Turkish
Subjects Civil Engineering (Other)
Journal Section Research Article
Authors

Kinan Abdel Rahman 0009-0003-2817-896X

Mustafa Vekli 0000-0002-5850-731X

Submission Date July 1, 2025
Acceptance Date October 7, 2025
Early Pub Date December 11, 2025
Publication Date December 19, 2025
DOI https://doi.org/10.17482/uumfd.1732493
IZ https://izlik.org/JA82TY23NF
Published in Issue Year 2025 Volume: 30 Issue: 3

Cite

APA Abdel Rahman, K., & Vekli, M. (2025). BARET TEMELLİ YUMUŞAK KİLLİ ZEMİNLERİN TAŞIMA GÜCÜ ANALİZİ. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, 30(3), 731-750. https://doi.org/10.17482/uumfd.1732493
AMA 1.Abdel Rahman K, Vekli M. BARET TEMELLİ YUMUŞAK KİLLİ ZEMİNLERİN TAŞIMA GÜCÜ ANALİZİ. UUJFE. 2025;30(3):731-750. doi:10.17482/uumfd.1732493
Chicago Abdel Rahman, Kinan, and Mustafa Vekli. 2025. “BARET TEMELLİ YUMUŞAK KİLLİ ZEMİNLERİN TAŞIMA GÜCÜ ANALİZİ”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 30 (3): 731-50. https://doi.org/10.17482/uumfd.1732493.
EndNote Abdel Rahman K, Vekli M (December 1, 2025) BARET TEMELLİ YUMUŞAK KİLLİ ZEMİNLERİN TAŞIMA GÜCÜ ANALİZİ. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 30 3 731–750.
IEEE [1]K. Abdel Rahman and M. Vekli, “BARET TEMELLİ YUMUŞAK KİLLİ ZEMİNLERİN TAŞIMA GÜCÜ ANALİZİ”, UUJFE, vol. 30, no. 3, pp. 731–750, Dec. 2025, doi: 10.17482/uumfd.1732493.
ISNAD Abdel Rahman, Kinan - Vekli, Mustafa. “BARET TEMELLİ YUMUŞAK KİLLİ ZEMİNLERİN TAŞIMA GÜCÜ ANALİZİ”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 30/3 (December 1, 2025): 731-750. https://doi.org/10.17482/uumfd.1732493.
JAMA 1.Abdel Rahman K, Vekli M. BARET TEMELLİ YUMUŞAK KİLLİ ZEMİNLERİN TAŞIMA GÜCÜ ANALİZİ. UUJFE. 2025;30:731–750.
MLA Abdel Rahman, Kinan, and Mustafa Vekli. “BARET TEMELLİ YUMUŞAK KİLLİ ZEMİNLERİN TAŞIMA GÜCÜ ANALİZİ”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, vol. 30, no. 3, Dec. 2025, pp. 731-50, doi:10.17482/uumfd.1732493.
Vancouver 1.Kinan Abdel Rahman, Mustafa Vekli. BARET TEMELLİ YUMUŞAK KİLLİ ZEMİNLERİN TAŞIMA GÜCÜ ANALİZİ. UUJFE. 2025 Dec. 1;30(3):731-50. doi:10.17482/uumfd.1732493

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