Analisis Korelasi Hasil Pengujian Unconfined Compressive Strength (UCS) & Point Load Index (PLI) Batuan pada Formasi Kampungbaru, Kabupaten Kutai Kartanegara
DOI:
https://doi.org/10.61132/venus.v4i2.1356Keywords:
Correlation, PLI, Porosity, Rock, UCSAbstract
Slope stability studies are crucial in determining the sustainability and operational safety of mining activities. This research was conducted to analyze the correlation between rock porosity and Unconfined Compressive Strength (UCS) results, as well as the corrleations between Point Load Index (PLI) and Unconfoned Compressive Strength (UCS) results. These two correlations form the primary components of the study. Three types of rock were tested claystone, coal, and siltstone. The results of the study are as follows for the correlation between porosity and Unconfoned Compressive Strength (UCS), claystone yielded a coefficient of determination (R2) of 0.32 is classified as weak correlation, with the linear regression equation Y=-0.11X+6.98. Coal yielded an (R2) of 0.56 is classified a moderate correlation, with the equation Y=-1.98X+103.77. Siltstone yielded an (R2) of 0.86 is classified a strong correlation, with the equation Y=-0.38X+20.02. Regarding the correlation between Point Load Index (PLI) and Unconfoned Compressive Strength (UCS), claystone achieved an (R2) of 0.12 is classified a very weak correlation, with the linear regression equation Y=8.91X. Coal achieved an (R2) of -0.27 is classified a very weak correlation, with the equation Y=27.87X. Lastly, siltstone achieved an (R2) of -0.45 is classified a very weak correlation, with the linear regression equation Y=24,90X.
References
Ananda, R., & Fadhli, M. (2018). Statistik pendidikan: Teori dan praktik dalam pendidikan (Cetakan pertama). CV Widya Puspita.
Arif, I. (2014). Geoteknik tambang. Gramedia Pustaka Utama.
Deb, D., & Verma, A. K. (2016). Fundamentals and application of rock mechanics. PHI Learning Private Limited.
Dewi, L. K. D., Oktaviani, R., Devy, S. D., Trides, T., & Nugroho, W. (2022). Korelasi point load index terhadap uniaxial compressive strength batupasir Formasi Balikpapan Kota Samarinda Provinsi Kalimantan Timur. Jurnal Teknologi Mineral FT UNMUL, 10(1). https://doi.org/10.30872/jtm.v10i1.7743
Ifnie, J. R. A., Trides, T., Nugroho, W., Oktaviani, R., & Pontus, A. J. (2023). Studi korelasi kekuatan batuan lempung dengan uji kuat tekan dan point load index Formasi Pulaubalang, Kota Samarinda. Journal of Civil Science, 2(10). https://doi.org/10.59188/jcs.v2i10.534
Kasdi, K., Oktaviani, R., & Winarno, A. (2024). Studi kuat tekan batulanau berdasarkan uji lapangan dan uji laboratorium pada Formasi Kampungbaru dan Pulaubalang daerah Kutai Kartanegara Kalimantan Timur. Konstruksi: Publikasi Ilmu Teknik, Perencanaan dan Teknik Sipil, 2(3). https://doi.org/10.61132/konstruksi.v2i3.383
Pariseau, W. G. (2011). Design analysis in rock mechanics (2nd ed.). CRC Press.
Rai, M. A., Kramadibrata, S., & Wattimena, R. K. (2013). Mekanika batuan. Penerbit ITB.
Sahir, S. H. (2021). Metodologi penelitian (Cetakan pertama). Penerbit KBM Indonesia.
Supriatna, S., Sukamto, S., Sukardi, S., & Rustandi, E. (2005). Peta geologi lembar Samarinda, Kalimantan (Edisi kedua). Pusat Penelitian dan Pengembangan Geologi.
Zahriyah, A., Suprianik, S., Parmono, A., & Mustofa, M. (2021). Ekonometrika teknik dan aplikasi dengan SPSS. Mandala Press.
Zuhdi, M. (2019). Buku ajar pengantar geologi. Duta Pustaka Ilmu.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2026 Venus: Jurnal Publikasi Rumpun Ilmu Teknik

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




