Analysis of Slope Failure at Jalan Muaradua – Kotabatu District OKU Selatan, South Sumatra
DOI:
https://doi.org/10.28932/jts.v21i2.9828Keywords:
Rainfall infiltration, Road Construction, Safety Factor, Slope Failure, Slope StabilizationAbstract
Infrastructure development leads to the cutting of slope dan additional construction loads on crest. Although the impact of slope cutting and additional construction loads on slope stability has been taken into account, several processes that follow, such as increased pore water pressure caused by rainwater seepage and the occurrence of cracks on the ground surface, can trigger slope failure. This article presents a stability analysis of a natural slope that has been cut to make room for the construction of a new road below the existing road. The stability analysis shows that the slope is in a stable condition before (FoS = 1.694) and after the construction (FoS = 1.423). However, the slope collapsed after heavy rain for 3 days on July 20th – 22nd, 2022. The failure plane starts at the crest of the slope, which is in the middle of the existing road, and ends at the toe. Seepage analysis carried out due to rain infiltration by considering the position of the crack as the starting point of the landslide plane, shows that there is an increase in pore water pressure in the slope, and the FoS decreases to 0.973. Remedial work carried out after a failure includes realigning the existing road, strengthening the toe of the slope with a retaining structure, covering the slope surface with vegetation, and arranging surface drainage.Downloads
References
Abdullah, NHH. Gofar, N. Rahman, NAA. Roslan, S.M. (2013). Empirical Correlation for Estimation of Unsaturated Soil Shear Strength, Proceedings of IEEE, BEIAC 2013, Pulau Langkawi, Malaysia, 7-9 April 2013, p. 690 – 694
Badan Standarisasi Nasional (2017) Persyaratan Perancangan Geoteknik SNI 8640-2017
Direktorat Jenderal Bina Marga (2013) Manual Desain Perkerasan Jalan Nomor 02/M/BM/2013
Ferryadi, A. & Gofar, N. (2022). Effect of Changing Free Water Level on the Stability of River Embankment. Jurnal Teknik Sipil Maranatha 18(1):33-50 https://doi.org/10.28932/jts.v18i1.3933
Geoslope International Ltd. 2018a. Slope Stability Analysis with SLOPE/W. Calgary, Canada.
Geoslope International Ltd. 2018b. Seepage Modelling with SEEP/W. Calgary, Canada.
Gofar, N. Pangestika, E.N., Harianto, Y., Gumay, H., Satyanaga, A. (2024). Effect of Near-Surface Heterogeneities on the Pore-water Pressure Distribution and Slope Stability. SINERGI 8(2) August. 0.22441/sinergi.2024.2.012
Gofar, N., & Rahardjo, H. (2017). Saturated and Unsaturated Stability Analysis of Slope Subjected to Rainfall Infiltration. MATEC Web of Conferences 101, 05004-SICEST2016. Bangka, Indonesia 8-9 November 2016.
Gofar, N. Lee M.L. (2008). Extreme Rainfall Characteristics for Surface Slope Stability in the Malaysian Peninsular. GEORISK: Assessment & Management Risk for Engineering Systems & Geohazards. 2 (2) 65-78. https://doi.org/10.1080/1799510802072991
Gofar, N. Lee M.L. and Asof, M. (2006). Transient Seepage and Slope Stability Analysis for Rainfall-Induced Landslide: A Case Study. Malaysian Journal of Civil Engineering. 18(1) 1-13.
Nugraha, A.S & Sutanto, A.K. (2019) Pengaruh Sudut Kemiringan Lereng terhadap Angka Stabilitas Lereng Tanah Kohesif Berdasarkan Kurva Taylor dan Software GEO5. Jurnal Teknik Sipil Maranatha 15(2): 87-99
Perera, Y. Y., Zapata, C. E., Houston, W. N., & Houston, S. L. (2005). Prediction of the Soil-Water Characteristic Curve Based on Grain-Size-Distribution and Index Properties. Paper presented at the Geo-Frontiers Congress.
Rahardjo, H., Nistor, M.M., Gofar, N., Satyanaga, A., Qin, X., & Yee. SIC. (2019). Spatial Distribution, Variation and Trend of Five-Day Antecedent Rainfall in Singapore, GEORISK: Assessment and Management of Risk for Engineered Systems and Geohazards, 14(3):177 - 191 https://doi.org/10.1080/17499518.2019.1639196
Satyanaga, A., Mohammad, A.S., Ibrahimi, A.B., Wijaya, M., Moon, S.W., Kim, J. (2023). Direct and Indirect Methods in Determination of Water Retention Curve of Residual Soils. Smart Geotechnics for Smart Societies. CRC Press. p. 3040 https://doi.org/10.1201/9781003299127
Sutejo, Y. & Gofar, N. (2015). Effect of Area Development on the Stability of Cut Slopes, Procedia Engineering 125:331-337
Zhai, Q. and Rahardjo, H. (2015), Estimation of Permeability Function from The Soil-Water Characteristic Curve, Engineering Geology, 199, 148-156. https://doi.org/10.1016/j.enggeo.2015.11.001.
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