Slope Stability Analysis Using Slope/W In The Cement Pongkor Warehouse Area
DOI:
https://doi.org/10.28932/jts.v22i1.12515Keywords:
Factor of Safety, Geotechnics, Slope, SLOPE/W, Slope StabilityAbstract
This study was conducted to analyze the slope stability around the Semen Pongkor Warehouse area in Bogor Regency. Initial inspections revealed significant structural deformation in the warehouse building, indicating potential slope instability. Geotechnical investigations were carried out through core drilling up to a maximum depth of 30 meters, Standard Penetration Test (SPT), and laboratory testing of undisturbed soil samples. The data obtained from these investigations were used to evaluate the slope’s factor of safety (FoS) through modeling with GeoStudio SLOPE/W software. The results showed that the existing condition had a Factor of Safety (FoS) of 1.23 (FoS < 1.5). Therefore, a new model was developed with the addition of soldier piles (60 cm diameter, 35 m length) and soil nailing (20 cm diameter, 35 m length). After implementing these reinforcement measures, the FoS increased to 1.503, which fell within the safe range (FoS ≥ 1.5). These findings highlight the importance of continuous monitoring and maintenance by installing instruments such as inclinometers and piezometers to monitor slope deformation and prevent potential landslides.Downloads
References
Al Irsyad, M. R., Rus, T. Y., dan Ain, M. I. (2023). Comporative Analysis of Slope Enforcement Between Gravity Wall with Gabions and Borepiled on Samarinda – Bontang Axis Road Slide Sta. 3+450. Nusantara Civil Engineering Journal, 2(02), 117–128. https://doi.org/10.32487/nuce.v2i02.492
Cahyono, Y. D. G., Tamanak, M. A., dan Putri, R. H. K. (2023). Analisa Kemantapan Lereng High Wall Pada PT Mitra Setia Tanah Bumbu Kalimantan Selatan. Jurnal Pertambangan, 7(1), 39–45. https://doi.org/10.36706/jp.v7i1.998
Froude, M. J., dan Petley, D. N. (2018). Global fatal landslide occurrence from 2004 to 2016. Natural Hazards and Earth System Sciences, 18(8), 2161–2181. https://doi.org/10.5194/nhess-18-2161-2018
Leal Sousa, R., Vargas, E., Chaminé, H. I., Ribeiro E Sousa, L., dan Karam, K. (2021). Risk assessment on landslides focused on the role of the water: Examples from model regions (Rio de Janeiro State and Hong Kong). SN Applied Sciences, 3(4), 423. https://doi.org/10.1007/s42452-021-04300-5
Setiawan, L. C., Sentosa, G. S., dan Iskandar, A. (2018). Analisis Stabilitas Lereng Batuan Dengan Metode Perkuatan Ground Anchor dan Soil Nailing di Labuan Bajo, NTT. JMTS: Jurnal Mitra Teknik Sipil, 1(1), 102. https://doi.org/10.24912/jmts.v1i1.2247
Shah, N. A., Shafique, M., Ishfaq, M., Faisal, K., dan Van Der Meijde, M. (2023). Integrated Approach for Landslide Risk Assessment Using Geoinformation Tools and Field Data in Hindukush Mountain Ranges, Northern Pakistan. Sustainability, 15(4), 3102. https://doi.org/10.3390/su15043102
Simorangkir, M. E., dan Suhendra, A. (2020). Studi Pengaruh Kemiringan, Jarak, Dan Panjang Soil Nailing Terhadap Stabilitas Lereng. JMTS: Jurnal Mitra Teknik Sipil, 3(3), 722. https://doi.org/10.24912/jmts.v3i3.8754
Singh, G., Kumar, S., Karmakar, R., dan Mishra, A. K. (2025). Rapid Assessment of Landslide Exposure to Element at Risk: A Decision Support tool in Regional Landslide Forecasting. In Review. https://doi.org/10.21203/rs.3.rs-6261551/v1
Suryajaya, E., dan Suhendra, A. (2019). Analisis Mitigasi Bencana Tanah Longsor Dan Metode Pengendaliannya (Studi Kasus Proyek Jalan Di Jambi). JMTS: Jurnal Mitra Teknik Sipil, 2(4), 177. https://doi.org/10.24912/jmts.v2i4.6189
Tarakashima, C., dan Zhafirah, A. (2023). Perkuatan Soil Nailing pada Lereng Singajaya Garut. Jurnal Konstruksi, 21(2), 217–223. https://doi.org/10.33364/konstruksi/v.21-2.1397
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2026 Paula Valery Dorothy, Asriwiyanti Desiani, Cindarto Lie

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
















