Antisipasi Penanganan Masalah pada Praktek Keinsinyuran untuk Pekerjaan Penanganan Longsoran dengan Menggunakan Bore Pile
DOI:
https://doi.org/10.55606/jurritek.v5i1.7398Keywords:
Anticipation of Implementation, Bore Pile, Geotechnical Engineering, Slope Stability, Soil RetentionAbstract
In engineering practice, various methods have been implemented to stabilize landslide-prone slopes, one of which is the use of bore piles. Bore piles are structures that hold back soil and make slopes more stable by reinforcing the ground inside them. However, the application of bore piles in landslide mitigation presents its own challenges, making it essential to identify and anticipate potential issues that may arise in field engineering practice. Bore piles are installed vertically, either parallel or staggered, at specific spacing and are often combined with capping beams and struts to resist soil movement and provide lateral restraint. This method is commonly applied to high-risk slopes or critical infrastructures such as roads, bridges, and buildings. Anticipation strategies in engineering practice consist of three stages: planning, implementation, and long-term maintenance, with this study focusing specifically on anticipation strategies during the implementation stage. Although bore piles serve as an effective solution to reduce landslide risk, their success depends heavily on proper planning, construction execution, and maintenance. Issues such as soil conditions, construction quality, and external factors must be addressed through a comprehensive engineering approach.
Downloads
References
Atkinson, J. (2007). The mechanics of soils and foundations (2nd ed.). Taylor & Francis.
Badan Perencanaan Pembangunan Nasional, & Japan International Cooperation Agency. (2022). Manual of slope disaster risk management.
Bowles, J. E. (1996). Foundation analysis and design. McGraw-Hill.
Coduto, D. P., Kitch, W. A., & Yeung, M. R. (2016). Foundation design: Principles and practices (3rd ed.). Pearson.
Craig, R. F. (2012). Craig’s soil mechanics (8th ed.). Spon Press.
Das, B. M. (2011). Principles of geotechnical engineering. Cengage Learning.
Fellenius, B. H. (2014). Basics of foundation design. Richmond, B.C.: Bengt Fellenius.
Goktan, R. M., & Gunes, Y. (2005). A semi-empirical approach to the prediction of drilling performance in rock drilling. Journal of the South African Institute of Mining and Metallurgy, 105(8), 525–535.
Hardiyatmo, H. C. (2011). Analisis dan perencanaan fondasi I (Edisi 2). Gadjah Mada University Press.
Holtz, R. D., Kovacs, W. D., & Sheahan, T. C. (2011). An introduction to geotechnical engineering (2nd ed.). Pearson.
Jawat, I. W., Gita, P. P. T., & Dharmayoga, I. M. S. (2020). Kajian metoda pelaksanaan pekerjaan pondasi bored pile pada tahap perencanaan pelaksanaan. Paduraksa: Jurnal Teknik Sipil Universitas Warmadewa, 9(2), 126–142.
Kementerian Pekerjaan Umum dan Perumahan Rakyat. (2016). Peraturan Menteri PUPR No. 28/PRT/M/2016 tentang Bangunan Penahan Tanah.
Lambe, T. W., & Whitman, R. V. (1979). Soil mechanics. John Wiley & Sons.
Mitchell, R. (2007). Drilling: The manual of methods, applications, and management. CRC Press.
Terzaghi, K., Peck, R. B., & Mesri, G. (1996). Soil mechanics in engineering practice (3rd ed.). Wiley-Interscience.
Wahyudi, D. (2020). Stabilitas lereng dan penanganannya di Indonesia.
Zhang, L. M., & Zhang, L. L. (2017). Reliability assessment of slope stability: State-of-the-art review. Géotechnique, 67(4), 1–20. https://doi.org/10.1680/jgeot.16.P.172
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 JURAL RISET RUMPUN ILMU TEKNIK

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
_001.jpg)




