Soil Improvement Planning Combination of Preloading and Stone Column (Case Study) in Sidorukun District, Gresik, Jawa Timur

Dewi Kusumaningrum, Gati Sri Utami, Johan Catur Atmaja

Abstract


The subgrade is the essential part of the construction process, such as access to factories, to develop industrial factory in areas to be developed, one of which in the Gresik area. Not all construction site has met the requirement. Hence, need soil improvement with a combination of preload and stone column. The soil parameters show the results of field and laboratory tests that the area has a small value NSPT with a thickness of the soft bottom layer up to a depth of 20 meters. This research is planned the initial height (Hinitial) to have stability analysis of un-reinforcement embankment, the diameter, and the distance from the stone column with the Xstab program. The results of the calculations carried out for the construction height of the embankment (Hfinal) 3.50 meters, then the first dam (HInitial) of 4.60 m is required. The tilt stabilization is obtained (MR = 168.7 tonm), wherein The Radius of the Slope area is 11.62 meters and the Safety Factor (SF = 0.881), where there is a possibility to slide. Planning preload with a stone column with a diameter of 1.00 meters needs to be combined, a distance of 1.50 meters installed in the subgrade.


Keywords


Preloading; Safety factor; Soft soil; Stone Column; Subgrade

Full Text:

PDF

References


Sukardi, "Geological map of the Surabaya & Sapulu quadrangle, Jawa," Pusat Penelitian dan Pengembangan Geologi, Bandung, 1992.

B. D. Yuspanca, W. Utama, M. S. Purwanto and A. S. Bahri, "INTEGRASI DATA RESISTIVITAS 2D DENGAN PARAMETER FISIS DAN MEKANIS TANAH," Jurnal Geosaintek, pp. 84-89, 2019.

A. Sismiani, "Limestones Characteristic and Value of the Safety Factor on the Slopes of the Quarry in Temandang Village, Merakurak Subdistrict, Tuban, East Java," Techno-Jurnal Fakutas Teknik-Universitas Muhammadiyah Purwokerto, pp. 42-49, 2017.

F. T. Wibowo, B. Setiawan and R. H. D. H.I, "PERILAKU PENAMBAHAN KOLOM BATU (STONE COLUMN) SEBAGAI PERKUATAN PADA TANAH DASAR (SUB GRADE) LUNAK," e-JurnalMATRIKS TEKNIK SIPIL, pp. 314-319, 2017.

S. K. Soni, P. K. Jain and R. Kumar, "Settlement Behaviour of Soft Clay Bed," International Journal of Engineering and Advanced Technology (IJEAT), pp. 1744-1749, 2019.

W. I. Manurung, I. B. Mochtar and T. R. Satrya, "Analisis Hasil Perencanaan pada Pemodelan Stabilitas Timbunan dengan Program," Jurnal Aplikasi Teknik Sipil, pp. 295-304, 2021.

K. Maulidina, T. Andienti and A. Pradiptiya, "PERHITUNGAN ULANG DAYA DUKUNG STONE COLUMN PADA PROYEK RUNWAY 3 SECTION 2 BANDARA SOEKARNO-HATTA," in Seminar Nasional Teknik Sipil Politeknik Negeri Jakarta, Jakarta, 2019.

A. C. Stamatopuolos and P. C. Kotzias, Soil Improvement by preloading, John Wiley and Sons, 1985.

I. Mochtar, Teknologi Perbaikan Tanah dan Alternatif Perencanaan pada Tanah Bermasalah (Problematic Soil), Surabaya: Jurusan Teknik Sipil FTSP-ITS, 2000.

B. M. Das, Principle of Geotechnical Engineering, PWS Publishing, 1985.

B. M. Das, Mekanika Tanah 1, Jakarta: Erlangga, 1995.

R. D. Barksdale and R. C. Bachus, "Design and Construction of Stone Columns. Volume 1.," Federal Highway Administration, Washington, 1983.

E. I. Testana, "Site Investigation," Gresik, 2019.

Z. Terzaghi and R. Peck, Soil Mechanics in Engineering Practice. 2nd Edition, New York: John Wiley, 1967.




DOI: https://doi.org/10.31284/j.iptek.2021.v25i2.2128

Refbacks

  • There are currently no refbacks.