Araştırma Makalesi

Comparative Numerical Analysis of Surcharge Effects on a Cantilever Sheet Pile Wall in Stiff Clay

Cilt: 9 Sayı: 5 15 Eylül 2026
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Comparative Numerical Analysis of Surcharge Effects on a Cantilever Sheet Pile Wall in Stiff Clay

Öz

Cantilever sheet pile walls rely on passive resistance below the excavation level and are therefore sensitive to nearby surface loads. This study evaluates the combined effects of surcharge magnitude and distance on a 4 m deep excavation supported by a 9 m long steel sheet pile wall in homogeneous stiff clay. A two-dimensional plane-strain model was developed in PLAXIS 2D. The clay was represented by a drained Mohr-Coulomb model, while the wall was modelled as an elastic plate with interface elements on both sides. Uniform 4 m wide surcharges of 50 and 100 kPa were applied at normalised distances x/H of 0, 0.5, 1.0 and 2.0. A no-surcharge model was also analysed. The excavation was modelled as a staged construction process with four successive 1 m excavation stages, and stability was evaluated using the strength reduction method. When the 100 kPa surcharge started immediately behind the wall, the maximum wall displacement, maximum bending moment and excavation-induced surface settlement reached 31.0 mm, 107.3 kN m/m and 11.2 mm, respectively, while the factor of safety fell to 1.40. Moving the same load to x/H = 2.0 reduced the displacement and bending moment by 54% and 78%, and increased the factor of safety to 2.10. For the 50 kPa series, the wall displacement approached the no-surcharge condition once x/H reached 0.5, whereas the bending moment approached the reference value more gradually and became comparable at x/H = 2.0. The results show that increasing the surcharge distance substantially reduces wall deformation. However, the factor of safety remains lower than the no-surcharge value, even when the deformation response becomes comparable to the reference case.

Anahtar Kelimeler

Etik Beyan

Ethics committee approval was not required because this study did not involve human participants or animals.

Kaynakça

  1. Akan, R. (2023). The influence of distant surcharge load with a finite length on the cantilever walls. PLOS ONE, 18(12), Article e0295442. https://doi.org/10.1371/journal.pone.0295442
  2. Aparna, & Samadhiya, N. K. (2020). Evaluation of model sheet pile wall adjacent to a strip footing: An experimental investigation. International Journal of Geotechnical Engineering, 14(7), 828–835.
  3. Babu, G. L. S., & Basha, B. M. (2008). Optimum design of cantilever sheet pile walls in sandy soils using inverse reliability approach. Computers and Geotechnics, 35(2), 134–143. https://doi.org/10.1016/j.compgeo.2007.04.001
  4. Bentley Systems. (2021). PLAXIS 2D CONNECT Edition V21.01 tutorial manual: Dry excavation using a tie back wall. Bentley Systems.
  5. Debnath, A., & Pal, S. K. (2023). Influence of surcharge strip loads on the behavior of cantilever sheet pile walls: A numerical study. Journal of Engineering Research, 11(1), 100029.
  6. Kawa, M., Bagińska, I., & Wyjadłowski, M. (2019). Reliability analysis of sheet pile wall in spatially variable soil including CPTu test results. Archives of Civil and Mechanical Engineering, 19(2), 598–613. https://doi.org/10.1016/j.acme.2018.10.007
  7. Keawsawasvong, S., Lai, V. Q., Huynh, Q. T., & Van, C. N. (2023). Stability factors of cantilever sheet pile walls in clays by using finite element method. In J. N. Reddy, C. M. Wang, V. H. Luong, & A. M. Le (Eds.), Proceedings of the 2nd International Conference on Sustainable Civil Engineering Structures and Construction Materials (ICSCEA 2021; Lecture Notes in Civil Engineering, Vol. 268, pp. 651–657). Springer. https://doi.org/10.1007/978-981-19-3303-5_58.
  8. Maitra, S., & Singh, A. P. (2026). Simplified analysis of cantilever sheet pile walls with surcharge on cohesive backfill. Indian Geotechnical Journal, 56, 2108–2115.

Ayrıntılar

Birincil Dil

İngilizce

Konular

İnşaat Geoteknik Mühendisliği

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

15 Eylül 2026

Gönderilme Tarihi

18 Temmuz 2026

Kabul Tarihi

19 Ağustos 2026

Yayımlandığı Sayı

Yıl 2026 Cilt: 9 Sayı: 5

Kaynak Göster

APA
Turan, C. (2026). Comparative Numerical Analysis of Surcharge Effects on a Cantilever Sheet Pile Wall in Stiff Clay. Black Sea Journal of Engineering and Science, 9(5), 2621-2628. https://doi.org/10.34248/bsengineering.1998060
AMA
1.Turan C. Comparative Numerical Analysis of Surcharge Effects on a Cantilever Sheet Pile Wall in Stiff Clay. BSJ Eng. Sci. 2026;9(5):2621-2628. doi:10.34248/bsengineering.1998060
Chicago
Turan, Canan. 2026. “Comparative Numerical Analysis of Surcharge Effects on a Cantilever Sheet Pile Wall in Stiff Clay”. Black Sea Journal of Engineering and Science 9 (5): 2621-28. https://doi.org/10.34248/bsengineering.1998060.
EndNote
Turan C (01 Eylül 2026) Comparative Numerical Analysis of Surcharge Effects on a Cantilever Sheet Pile Wall in Stiff Clay. Black Sea Journal of Engineering and Science 9 5 2621–2628.
IEEE
[1]C. Turan, “Comparative Numerical Analysis of Surcharge Effects on a Cantilever Sheet Pile Wall in Stiff Clay”, BSJ Eng. Sci., c. 9, sy 5, ss. 2621–2628, Eyl. 2026, doi: 10.34248/bsengineering.1998060.
ISNAD
Turan, Canan. “Comparative Numerical Analysis of Surcharge Effects on a Cantilever Sheet Pile Wall in Stiff Clay”. Black Sea Journal of Engineering and Science 9/5 (01 Eylül 2026): 2621-2628. https://doi.org/10.34248/bsengineering.1998060.
JAMA
1.Turan C. Comparative Numerical Analysis of Surcharge Effects on a Cantilever Sheet Pile Wall in Stiff Clay. BSJ Eng. Sci. 2026;9:2621–2628.
MLA
Turan, Canan. “Comparative Numerical Analysis of Surcharge Effects on a Cantilever Sheet Pile Wall in Stiff Clay”. Black Sea Journal of Engineering and Science, c. 9, sy 5, Eylül 2026, ss. 2621-8, doi:10.34248/bsengineering.1998060.
Vancouver
1.Canan Turan. Comparative Numerical Analysis of Surcharge Effects on a Cantilever Sheet Pile Wall in Stiff Clay. BSJ Eng. Sci. 01 Eylül 2026;9(5):2621-8. doi:10.34248/bsengineering.1998060