ROCK FORMATION AND SITE CLASS IN BANDAR LAMPUNG

Authors

  • Rustadi Rustadi Geophysical Engineering Department, University of Lampung, Indonesia
  • Eko Rananda Teknik Geofisika Universitas Lampung, Indonesia

DOI:

https://doi.org/10.23960/jge.v6i3.101

Keywords:

SPT, kecepatan gelombang geser, Bandar Lampung

Abstract

Soil characteristics are important impact for the scale of damage caused by earthquake vibrations. The impact caused by an earthquake in a location depends on the shear wave velocity (Vs). The study examined the effect of sedimentary rock formations on shear wave velocity and site class based on SPT tests in two rock formations in Bandar Lampung. The value of Vs, Vs30 and site class is determined based on the N-SPT value. Older rock formations of Quaternary age, have produced compaction at a shallow depth of 2 m from the surface, with Vs30 360 m/s and site class C. While the formation is younger, compactions are formed at a depth of 20 m, Vs 30 200 m/s and site class D.

References

Anbazhagan, P., Kumar, A., & Sitharam, T. G. (2013). Seismic Site Classification and Correlation between Standard Penetration Test N Value and Shear Wave Velocity for Lucknow City in Indo-Gangetic Basin. Pure and Applied Geophysics, 170(3), 299–318. https://doi.org/10.1007/s00024-012-0525-1

Cetin, K. O., Seed, R. B., Kayen, R. E., Moss, R. E. S., Bilge, H. T., Ilgac, M., & Chowdhury, K. (2018). The use of the SPT-based seismic soil liquefaction triggering evaluation methodology in engineering hazard assessments. MethodsX, 5, 1556–1575. https://doi.org/10.1016/j.mex.2018.11.016

Dietiker, B., Pugin, A. J. M., Crow, H. L., Mallozzi, S., Brewer, K. D., Cartwright, T. J., & Hunter, J. A. (2018). HVSR measurements in complex sedimentary environment and highly structured resonator topography - Comparisons with seismic reflection profiles and geophysical borehole logs. Proceedings of the Symposium on the Application of Geophyics to Engineering and Environmental Problems, SAGEEP, 2018-March.

Fatehnia, M., Hayden, M., & Landschoot, M. (2015). Correlation between shear wave velocity and SPT-N values for north Florida soils. Electronic Journal of Geotechnical Engineering, 20(22), 12421–12430.

Haefner, R. J., Sheets, R. A., & Andrews, R. E. (2010). Evaluation of the horizontal-to-vertical spectral ratio (HVSR) seismic method to determine sediment thickness in the vicinity of the south well field, Franklin county, OH. Ohio Journal of Science, 110(4), 77–85.

Hatmoko, J. T., & Suryadharma, H. (2015). Prediction of liquefaction potential study at Bantul Regency the province of special region of Yogyakarta Indonesia. Procedia Engineering, 125, 311–316. https://doi.org/10.1016/j.proeng.2015.11.068

Kirar, B., Maheshwari, B. K., & Muley, P. (2016). Correlation Between Shear Wave Velocity (Vs) and SPT Resistance (N) for Roorkee Region. International Journal of Geosynthetics and Ground Engineering, 2(1), 1–11. https://doi.org/10.1007/s40891-016-0047-5

Luzi, L., Puglia, R., Pacor, F., Gallipoli, M. R., Bindi, D., & Mucciarelli, M. (2011). Proposal for a soil classification based on parameters alternative or complementary to Vs,30. Bulletin of Earthquake Engineering, 9(6), 1877–1898. https://doi.org/10.1007/s10518-011-9274-2

Maklad, M., & Hayashida, T. (2017). Estimation of Shear Wave Velocity Profiles Using Microtremor Array Explorations in Ismailia City , Egypt. 1–6.

Mangga, S.A., Amiruddin, T., Suwarti, S., Gafoer dan Sidarto, 1993, Geologi Lembar Tanjungkarang, Sumatera, PPPG, Departemen Pertambangan dan Energi.

Natawidjaja, D. H., Sieh, K., Galetzka, J., Suwargadi, B. W., Cheng, H., Edwards, R. L., & Chlieh, M. (2007). Interseismic deformation above the Sunda Megathrust recorded in coral microatolls of the Mentawai islands , West Sumatra Interseismic deformation above the Sunda Megathrust recorded in coral microatolls of the Mentawai islands , West Sumatra. (February). https://doi.org/10.1029/2006JB004450

Shukla, J., Choudhury, D., & Shah, D. (2015). Estimation of shear wave velocity from SPT N-value-Field assessments. 15th Asian Regional Conference on Soil Mechanics and Geotechnical Engineering, ARC 2015: New Innovations and Sustainability, (April 2016), 346–349. https://doi.org/10.3208/jgssp.IND-28

Zhang, W. G., Zhang, R. H., Han, L., & Goh, A. T. C. (2019). Engineering properties of the Bukit Timah Granitic residual soil in Singapore. Underground Space (China), 4(2), 98–108. https://doi.org/10.1016/j.undsp.2018.07.001

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Published

2020-11-24

How to Cite

Rustadi, R., & Rananda, E. (2020). ROCK FORMATION AND SITE CLASS IN BANDAR LAMPUNG. JGE (Jurnal Geofisika Eksplorasi), 6(3), 183–189. https://doi.org/10.23960/jge.v6i3.101

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