ANALISIS LIKUEFAKSI PADA LAPISAN TANAH BERPASIR DI LOKASI PROYEK PABRIK, GRESIK, JAWA TIMUR

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Amelia Yuwono

Abstract

In this study, an analysis was conducted to evaluate the potential for liquefaction at a factory project located in Manyar, Gresik, East Java. The analysis aimed to determine whether the sandy soil layer in the factory area has liquefaction potential. Liquefaction potential was evaluated by comparing the earthquake-induced loading with the soil’s resistance to liquefaction. The potential was expressed as a factor of safety against liquefaction (FSL). In addition, Cyclic Stress Ratio (CSR) calculations were carried out. Two methods were used to determine the Cyclic Resistance Ratio (CRR) values in this project: the Ishihara method (1979), the Yoshimi & Tokimatsu method (1984), the Boulanger & Idriss method (2014) and Andrus & Stokoe method. The data used in this study included soil investigation reports, downhole seismic test results, and earthquake maps. Based on the liquefaction analysis, no liquefaction potential was found at borehole SPT B02. However, since the project location is near a fault (based on the geological map of Surabaya and Quadrangle, Java), further checks on site classification based on SNI 1726:2019 are recommended.


Abstrak


Penelitian ini melakukan analisis potensi likuefaksi pada proyek pabrik yang berlokasi di Manyar, Gresik, Jawa Timur. Analisis dilakukan untuk mengetahui apakah lapisan tanah berpasir di area pabrik berpotensi mengalami likuefaksi. Evaluasi potensi likuefaksi dilakukan dengan membandingkan beban gempa terhadap ketahanan tanah terhadap likuefaksi. Potensi likuefaksi dinyatakan sebagai faktor keamanan terhadap likuefaksi (FSL). Selain itu, dilakukan juga perhitungan Cyclic Stress Ratio (CSR). Terdapat empat metode yang digunakan untuk menentukan nilai Cyclic Resistance Ratio (CRR) pada proyek ini, yaitu metode Ishihara (1979), Yoshimi & Tokimatsu (1984), Boulanger & Idriss (2014) dan Andrus & Stokoe (2000). Data yang digunakan meliputi laporan penyelidikan tanah, hasil uji downhole seismic, dan peta gempa. Berdasarkan hasil analisis likuefaksi, tidak ditemukan potensi likuefaksi pada lokasi lubang bor SPT B02. Namun, mengingat lokasi proyek dekat dengan sesar (berdasarkan peta geologi Surabaya dan Quadrangle, Jawa), disarankan dilakukan pengecekan lebih lanjut mengenai klasifikasi situs berdasarkan SNI 1726:2019.

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References

Aytaş, Z., Alpaslan, N., & Özçep, F. (2023). Evaluation of liquefaction potential by standard penetration test and shear wave velocity methods: A case study. Natural Hazards, 118, 2377–2417. https://doi.org/10.1007/s11069-023-06093-9

Arif, M., & Zulhendra, R. (2025). Research Growth in the Topic of Soil Liquefaction between Indonesia and New Zealand: A Bibliometric Analysis from Scopus Database. Journal of Civil Engineering and Planning (JCEP), 6(1), 39-49. https://journal.uib.ac.id/index.php/jce/article/view/10318

Badan Standardisasi Nasional. (2017). Persyaratan perancangan geoteknik (SNI 8460:2017). Jakarta: BSN.

Badan Standardisasi Nasional. (2019). Tata cara perencanaan ketahanan gempa untuk struktur bangunan gedung dan non-gedung (SNI 1726:2019). Jakarta: BSN.

Bol, E., Özocak, A., Sert, S., Çetin, K. Ö., Arslan, E., Kocaman, K., & Ayhan, B. U. (2024). Evaluation of soil liquefaction in the city of Hatay triggered after the February 6, 2023 Kahramanmaraş-Türkiye earthquake sequence. Engineering Geology, 339, 107648. https://doi.org/10.1016/j.enggeo.2024.107648

Boulanger, R. W., & Idriss, I. M. (2014). CPT and SPT based liquefaction triggering procedures (Report No. UCD/CGM-14). Center for Geotechnical Modeling, University of California.

Boumpoulis, V., Depountis, N., Pelekis, P., & Sabatakakis, N. (2021). SPT and CPT application for liquefaction evaluation in Greece. Arabian Journal of Geosciences, 14(16), 1631. https://doi.org/ 10.1007/s12517-021-08103-1

Cetin, K. O., Soylemez, B., Guzel, H., Bakir, B. S., & Ozturk, O. (2025). Soil liquefaction sites following the February 6, 2023, Kahramanmaraş-Türkiye earthquake sequence. Bulletin of Earthquake Engineering, 23, 921–944. https://doi.org/10.1007/s10518-024-01875-3

Day, R. W. (2002). Geotechnical earthquake engineering. McGraw-Hill.

Idriss, I. M., & Boulanger, R. W. (2010). SPT-based liquefaction triggering procedures (Report No. UCD/CGM-10). Center for Geotechnical Modeling, University of California.

Kumar, D. R., Samui, P., & Burman, A. (2023). Suitability assessment of the best liquefaction analysis procedure based on SPT data. Multiscale and Multidisciplinary Modeling, Experiments and Design, 6(2), 319–329. https://doi.org/10.1007/s41939-023-00148-x

Laporan Analisis Likuefaksi. (2022). Laporan proyek likuefaksi Manyar, Gresik, Jawa Timur.

Laporan Uji Downhole Seismic. (2022). Laporan proyek uji downhole seismic Manyar, Gresik, Jawa Timur.

Mangunpraja, D. M., & Prihatiningsih, A. (2019). Analisis perbaikan tanah sebagai bentuk mitigasi bencana likuifaksi yang dapat diaplikasikan masyarakat di Palu. JMTS: Jurnal Mitra Teknik Sipil, 95-104. https ://doi.org/10.24912/jmts.v2i4.6167

Mavroulis, S., Lekkas, E., & Carydis, P. (2021). Liquefaction phenomena induced by the 26 November 2019, Mw= 6.4 Durrës (Albania) earthquake and liquefaction susceptibility assessment in the affected area. Geosciences, 11(5), 215. https://doi.org/10.3390/geosciences11050215

Seed, H. B., & Idriss, I. M. (1971). Simplified procedure for evaluating soil liquefaction potential. Journal of the Soil Mechanics and Foundations Division, 97(9), 1249–1273.

Uyanık, O. (2020). Soil liquefaction analysis based on soil and earthquake parameters. Journal of Applied Geophysics, 176, 104004. https://doi.org/10.1016/j.jappgeo.2020.104004

Yueren, X., Guochao, F., Zeyu, L., Guiming, H., Xiaocheng, Z., Feng, S., & Yuan, Y. (2025). Preliminary study on the characteristics of landslides and soil liquefaction triggered by the Tingri M s 6.8 earthquake on January 7, 2025, Southern Tibetan Plateau. Journal of Earth Science. http://en.earth-science.net/en/article/doi/10.1007/s12583-025-0308-0