Hasil Ringkasan
PUSTAKA Mohammad Yusril Iqbal Habibana

Jumlah halaman: 4 · Jumlah kalimat ringkasan: 20

ðñ DAFTAR PUSTAKA Anderson, E.M. 1951. The Dynamics of Faulting. Edinburgh: Oliver & Boyd. Asano Y., Saito T., Ito Y., Shiomi K., Hirose H., Matsumoto T., Aoi S., Hori S., Sekiguchi S., 2011. Spatial distribution and focal mechanisms of aftershocks of the 2011 of the Pacific coast of Tohoku Earthquake, Earth Planets Space, 63 (7), 669 –673. DOI: https://doi.org/10.5047/eps.2011.06.016 . Beaudouin, T., Bellier, O., & Sébrier, M, 2003. Present-day stress and deformation field within the Sulawesi Island area (Indonesia) : geodynamic implications, Bulletin De La Societe Geologique De France, 174 (3), 305-317. DOI: https://doi.org/10.2113/174.3.305 . Bouchon, M., 1981. A simple method to calculate Green’s functions for elastic layered media. Bull Seismol Soc Am, 71, 959–971. DOI: https://doi.org/10.1785/BSSA0710040959 Bu, Wankui & Xu, Hui, 2020. Research on the Effect of Dip Angle on Shear Stress on Normal Fault Plane and Water Inrush in Floor Strata During Mining Activities, Geotechnical and Geological Engineering, 38. DOI: https://doi.org/10.1007/s10706-020-01282-w . Clinton, J. F., Hauksson, E., dan Solanki, K., 2006. An evaluation of the SCSN moment tensor solutions: Robustness of the Mw magnitude scale, style of faulting, and automation of the method, Bulletin of the Seismological Society of America , 96 (5), 1689 –1705. DOI: https://doi.org/10.1785/0120050241 . Hallo, M., Asano, K. & Gallovič, F., 2017. Bayesian inference and interpretation of centroid moment tensors of the 2016 Kumamoto earthquake sequence, Kyushu, Japan. Earth Planets Space, 69, 134. https://doi.org/10.1186/s40623-017-0721-4 Hallo, M., Opršal, I., & Asano, K., 2019. Seismotectonics of the 2018 northern Osaka M6.1 earthquake and its aftershocks: joint movements on strike-slip and reverse faults in inland Japan. Earth Planets Space 71, 34. https://doi.org/10.1186/s40623-019-1016-8 Harris, R.A., 1998. Introduction to Special Section: Stress Triggers, Stress Shadows, and Implications for Seismic Hazard. Journal of Geophysical Research Solid Earth, 103, 24347-24358. DOI: https://doi.org/10.1029/98JB01576 ðò Houksson, E., 1990. Earthquakes, faulting, and stress in the Los Angeles Basin, Journal of Geophysical Research, 95 (B10), 15,365-15,394. DOI: https://doi.org/10.1029/JB095iB10p15365 . Jost M.L. Herrmann R.B., 1989. A student’s guide to and review of moment tensors, Seismol. Res. Lett. , 60 (2), 37 –57. DOI: https://doi.org/10.1785/gssrl.60.2.37 . King, G., Stein, R., Lin, J., 1994. Static Stress Changes and the Triggering of Earthquakes. Bulletin - Seismological Society of America. 84. No. 3, pp. 935-953. DOI: https://doi.org/10.1785/BSSA0840030935 Kusumawati, D., Sahara, D., Puspito, N., Baskara, A., Kurniawan, A., Tanihaha, W., Johan S., Leonardo, Pratama, M., Patimah, S., Sasmi, A., Muhammad, H., Muhammad, H., Natafrisca, W., & Bening, M., 2023. Moment tensor inversion implementation in determining focal mechanism solution of Palu- Koro and Matano fault events: processing strategy. IOP Conference Series: Earth and Environmental Science. 1227. 012043. DOI: https://doi.org/10.1088/1755-1315/1227/1/012043 . Kusumawati, D., Sahara, D.P., Nugraha, A.D. et al., 2019. Sensitivity of static Coulomb stress change in relation to source fault geometry and regional stress magnitude: case study of the 2016 Pidie Jaya, Aceh earthquake (Mw = 6.5), Indonesia, J. Seismol, 23, 1391–1403. DOI: https://doi.org/10.1007/s10950-019-09878-3 . Langston, C. A., Barker, J. S., dan Pavlin, G. B., 1982. Point-source inversion techniques, Physics of the Earth and Planetary Interiors, 30 (2–3), 228– 241. DOI: https://doi.org/10.1016/0031-9201(82)90110-8 . Laske, G, Masters, G, Ma, Z. & Pasyanos, M., 2013. Update on CRUST1.0 - A 1- degree global model of Earth's crust, Abstract EGU2013-2658 presented at 2013 Geophys. Res. Abstracts, 15, 2658. Liu, C., Shi, Y.L., 2021. Space-time stress variations on the Palu-Koro fault impacting the 2018 Mw 7.5 Palu earthquake and its seismic hazards, Geochem. Geophys. Geosyst . 22 (5), 1-11. DOI: https://doi.org/10.1029/2020GC009552 . Meilano, I., Salman, R.,, Susilo, Shiddiqi, H. A., Supendi, P., Lythgoe, K., Tay, C., Bradley, K., Rahmadani, S., Kristyawan, S., Yun, S.H., 2023. The 2021 M W 6.2 Mamuju, West Sulawesi, Indonesia earthquake: partial rupture of the Makassar Strait thrust, Geophysical Journal International, Volume 233, Issue 3, Pages 1694–1707. DOI: https://doi.org/10.1093/gji/ggac512 ðó Natawidjaja, Danny H., Daryono, M. R, Prasetya, G., Udrekh, Liu, P. L-F, Hananto, N. D., Kongko, W., Triyoso, W., Puji, A. R., Meilano, I., Gunawan, E., Supendi, P., Pamumpuni, A., Irsyam, M., Faizal, L., Hidayati, S., Sapiie, B., Kusuma, M. A, Tawil, S., 2021. The 2018 Mw 7.5 Palu ‘supershear’ earthquake ruptures geological fault's multisegment separated by large bends: results from integrating field measurements, LiDAR, swath bathymetry and seismic-reflection data, Geophysical Journal International, 224 (2), 985–1002. DOI: https://doi.org/10.1093/gji/ggaa498 . Nishiwaki, H., Okudaira, T., Ishii, K. et al., 2021. Dip angles of active faults from the surface to the seismogenic zone inferred from a 2D numerical analysis of visco-elasto-plastic models: a case study for the Osaka Plain, Earth Planets Space, 73, 86. DOI: https://doi.org/10.1186/s40623-021-01390-8 . Pusat Gempa Nasional (PusGeN), 2017. Peta Sumber dan Bahaya Gempa Indonesia Tahun 2017. Jakarta: Pusat Penelitian dan Pengembangan Perumahan dan Pemukiman, Kementrian PUPR. Ramancharla, P. & Meguro, K., 2002. Non-linear Static Modelling of Dip- slip Faults for Studying Ground Surface Deformation using Applied Element Method. Structural engineering/earthquake engineering, 9, 169-178. https://scholarsmine.mst.edu/icrageesd/04icrageesd/session10/24 . Sibson, R., 1989. Earthquake faulting as a structural process.