Analisis Pondasi Tiang Pancang Pipa Baja Jembatan Parit 3 Kec. Kuala Jambi

Muhamad Ardy Pratama, Suhendra Suhendra, Dwitya Okky Azanna, Amsori M. Das, Wari Dony, Fadlan Fadlan

Abstract


Steel pipe pile foundations function to transfer superstructure loads to the supporting soil layer while providing resistance to axial and lateral forces. These foundations are widely used not only for buildings but also for various civil engineering structures, including bridges. The Parit 3 Bridge in Kuala Jambi District was constructed to reconnect two disconnected road sections, thereby improving local community accessibility. This study aimed to analyze the bridge structural loading and determine the bearing capacity of the steel pipe pile foundation using the Schmertmann and Nottingham method. Bridge loading calculations were performed in accordance with SNI 1725:2016, while the foundation bearing capacity was evaluated using the Schmertmann and Nottingham method. The results indicated that the maximum factored ultimate load under the Strength 1 load combination was Pu = 3,695.00 kN, equivalent to 376.79 tons. The allowable bearing capacity of a single pile was Qa = 739.538 kN, equivalent to 75.411 tons, whereas the bearing capacity of the pile group was Qg = 7,395.380 kN, equivalent to 751.841 tons. The calculated pile group bearing capacity exceeded the maximum applied load, indicating that the foundation satisfied the required bearing capacity criteria. Furthermore, both the single-pile settlement and the pile-group settlement were smaller than the allowable settlement, demonstrating that the settlement requirements were also satisfied.

Keywords


steel pipe pile foundation; bridge; bearing capacity; Schmertmann and Nottingham; pile settlement.

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References


Badan Standardisasi Nasional. (2016a). SNI 1725:2016 pembebanan untuk jembatan. Badan Standardisasi Nasional.

Badan Standardisasi Nasional. (2016b). SNI 2833:2016 perencanaan jembatan terhadap beban gempa. Badan Standardisasi Nasional.

Bowles, J. E. (1977). Foundation analysis and design (2nd ed.). McGraw-Hill.

Das, B. M. (1995). Mekanika tanah: Prinsip-prinsip rekayasa geoteknis (Jilid 1). Erlangga.

Fellenius, B. H. (2006). Basics of foundation design. Electronic edition.

Hardiyatmo, H. C. (1992). Mekanika tanah I. Gramedia Pustaka Utama.

Hardiyatmo, H. C. (2002). Teknik fondasi I (Edisi kedua). Beta Offset.

Poulos, H. G., & Davis, E. H. (1980). Pile foundation analysis and design. John Wiley & Sons.

Rahardjo, P. P. (2008). Penyelidikan geoteknik dengan uji in-situ. GEC Universitas Katolik Parahyangan.

Schmertmann, J. H. (1969). The three-dimensional consolidation of sand (Final Report, Project No. 99000-7212). University of Florida.

Schmertmann, J. H., & Nottingham, L. C. (1975). Specifications for cone penetration test performance and design methods for pile capacity. Department of Civil Engineering, University of Florida.

Sosrodarsono, S., & Nakazawa, K. (1994). Mekanika tanah dan teknik fondasi. Pradnya Paramita.

Struyk, H. J., & Van der Veen, K. H. C. W. (1984). Jembatan. Pradnya Paramita.

Supriyadi, B., & Muntohar, A. S. (2007). Jembatan. Beta Offset.

Teng, W. C. (1962). Foundation design. Prentice-Hall.

Terzaghi, K., & Peck, R. B. (1948). Soil mechanics in engineering practice. John Wiley & Sons.

Vesic, A. S. (1977). Design of pile foundations (NCHRP Synthesis of Highway Practice No. 42). Transportation Research Board.




DOI: http://dx.doi.org/10.33087/talentasipil.v9i2.1423

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Jurnal Talenta Sipil, Faculty of Engineering, Batanghari University
Adress: Fakultas Teknik, Jl.Slamet Ryadi, Broni-Jambi, Kec.Telanaipura, Kodepos: 36122, email: talentasipil.unbari@gmail.com


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