DAFTAR PUSTAKA
Ardianto. 2018. Pemetaan Kecepatan Gelombang Geser (Vs30) Metode Multichannel Analysis Of Surface Wave Untuk Zonasi Amplifikasi Gempa Wilayah Surabaya Bagian Timur. Bandung: Institut Teknologi Bandung. Halaman website : https://respository.its.ac.id (Terakhir diakses tanggal 21 Januari 2022)
Asrirufak, M. 2010. Development of Spectral Hazard Map for Indonesia with a Return Period of 2500 Years using Probabilistic Method. Bandung:
Institut Teknologi Bandung
Bolt, B. A. (1978). Earthquake hazards. Eos, Transactions American Geophysical Union, 59(11), 946.
Boore, D. M., and Atkinson, G.M., (2008). Ground-motion prediction equations for the average horizontal component of PGA, PGV, and 5%-damped PSA at spectral periods between 0.001 s and 10.0 s:
Earthquake Spectra, v. 24, no.1.
Bellier, O., Sebrier, M., Beaudouin, T., Villeneuve, M., Brauncher, R, R., Bourles, D., Siame, L., Putranto, E., dan Pratomo, I. (2001), High slip rate for a low seismicity along the Palu-Koro active fault in central Sulawesi (Indonesia), Terr. Nova, 463-470
Campbell, K.W., and Bozorgnia, Y., (2008), Ground motion model for the geometric mean horizontal component of PGA, PGV, PGD and 5%
damped linear elastic response spectra for periods ranging from 0.01 to 10.0 s: Earthquake Spectra, v. 24, no. 1.
Chiou, B., and Youngs, R., (2008), A NGA model for the average horizontal component of peak ground motion and response spectra: Earthquake Spectra, v. 24, no. 1.
Cornell, C.A., 1968. Engineering Seismic Risk Analysis. Bull. Seismol. Soc.
Am. 1583–1606.
EERI Committee on Seismic Risk, (1989), The Basic of Seismic Risk Analysis, Earthquake Spectra, 5(4), 675-702.
Fowler, C. M. R. 1990. The Solid Earth. United Kingdom. Cambridge University Press
Gerstenberger, M. Wiemer, S. and Giardini, D. 2001. Systematic test of the hypothesis the b-value varies with depth in California, Geophys. Res.
Letts., Vol. 28, No. 1.
Ghassabian, N. N., Khatib, M. M., Nazari, H., dan Heyhat, M. R. 2016.
Fractal dimension and earthquake frequency-magnitude distribution in the North of Central-East Iran Blocks (NCEIB). Geopersia.
Ginanjar,R dan Nassir, I. H. 2008. Analisis Seismic Hazard di Batuan Dasar Untuk Wilayah Indonesia Bagian Timur pada T = 0 , T = 0.2 dan T = 1 Detik 235 dengan Periode Ulang 500 Tahun, Program Studi Teknik Sipil, Institut Teknologi Bandung.
Gutenberg, B. & Richter, C. F. 1944. Frequency of earthquakes in California. Bull. Seismol. Soc. Am, Vol. 34, No.4
Hamilton, W. 1979.Tectonics of the Indonesian Region. Washington:
Geological Survey Profesional Paper 1078. 345p
Hutapea, B.M., Mangape, I., 2009. Analisis Hazard Gempa dan Usulan Ground Motion pada Batuan Dasar untuk Kota Jakarta. J. Tek. Sipil 16, 121–132.
Irsyam, M., Subki B., Himawan A., Suntoko H., (1999), Analisis Seismisitas untuk Semenanjung Muria, Prosiding Konferensi Nasional Rekayasa Gempa, Pemanfaatan Perkembangan Rekayasa Kegempaan dalam Rangka Penyempurnaan Peraturan dan Peningkatan Kepedulian Masyarakat Terhadap Bencana Gempa di Indonesia, hal VI9-VI-20.
Irsyam, M., Sengara, W., Aldiamar, F., Widiyantoro, S., Triyoso, W., 2010.
Ringkasan Hasil Sudi Tim Revisi Peta Gempa Indonesia 2010. Tim Revisi Peta Gempa Indonesia, Bandung.
Kusuma, Lanny Dian. 2013. Analisis Respon Spektra Kota Manado.
Manado: Unsrat. Halaman website : https://ejournal.unsrat.ac.id (Terakhir diakses tanggal 18 Januari 2022)
Kramer, S.L., (1996), Geotechnical Earthquake Engineering, New Jersey, Prentice Hall
Kulkarni, R.B., Youngs, R.R., dan Coppersmith, K.J., (1984), Assessment of Confidence Interval for Results of Seismic Hazard Analysis, Proceedings, 8th World Conference on Earthquake Engineering, San Fransisco, Vol. 1
Mallisa, H., Taru’allo, G., Mallisa, Z.. 2009. Mikrozonasi Seismic dan Analisis Respon Site Spesific Kota Palu. Palu : Staff Pengajar Jurusan Teknik Sipil Fakultas Teknik Universitas Tadulako
Merz, H.A. dan Cornell, C.A (1973). Aftershocks in Engineering Seismic Risk Analysis. Report R73-25. Massachusetts: Department of Civil Engineering, MIT, Cambridge.
McGuire, R.K., 1976, FORTRAN Computer Program for Seismic Risk Analysis, US Geological Survey Open File Report, Wiley InterScience pp. 67-76.
McGuire, R.K., 2001. Deterministic Vs. Probabilistic Earthquake Hazards and Risk. Risk Eng. Inc Publ. Pap. 21, 377–384.
National Earthquake Information Center United Stated Geological Survey, http://neic.usgs.gov/neis/epic/epic/html.
Pabendan, Oktavianne. 2021. Studi Kegempaan Kota Mamuju dengan Metode Probabilistic Seismic Hazard Analysis. Universitas Hasanuddin : Makassar.
Pacheco, J.F., Sykes, L.R., 1992. Seismic moment catalog of large shallow earthquakes, 1900 to 1989. Bull. Seismol. Soc. Am. 82, 1306–1349.
Petersen, M.D., Dewey, J., Hartzell, S., Mueller, C., Harmsen, S., Frankel, A., Rukstales, K., 2004. Probabilistic seismic hazard analysis for Sumatra, Indonesia and across the Southern Malaysian Peninsula.
Tectonophysics 390, 141– 158. doi:10.1016/j.tecto.2004.03.026 Prawirodikromo, W., 2012. Seismologi Teknik dan Rekayasa Kegempaan.
Pustaka Pelajar.
Rante, Ryan. 2015. Mikrozonasi Bahaya Kegempaan Kota Makassar Berbasis Data Seismik dan Data Geoteknik. Universitas Hasanuddin : Makassar.
Reiter, L. 1990. Earthquake Hazard Analysis – Issues and Insights. New York: Columbia University Press.
Rofaany R., Cindy. 2021. Studi Kegempaan Kota Mamuju dengan Metode Deterministic Seismic Hazard Analysis. Universitas Hasanuddin : Makassar
Rohadi, Supriyanto, Grandis, Hendra, dan Ratag, M.A. 2007. Studi Variasi Spatial Seismisitas Zona Subduksi Jawa. Jurnal Meteorologi dan Geofisika. Vol.8 No.1.
Sammond. P.R, Meredit, P.G. and Main, I.G. 1992. Role of pore fluid in the generation of seismic precursors to shear fracture. Nature. Vol. 359, pp. 228-230.
SEAOC Vision 2000 Committee, (1997), Performance Based Seismic Engineering, Structural Engineers Association of California, California.
Seismograph (Seismic Hazard Analysis Software) Earthquake Engineering, https://seismograph.me/product/psha-tool
Shi, Y. and B.A. Bolt. 1982. The standard error of the magnitudo-frequency b-value, Bull. Seismol. Soc. Am., Vol. 72, No. 5.
Socquet, A., Simons, W., Vigny, C., McCaffrey, R., Subarya, C., Sarsito, D., Ambrosius, B. and Spakman, W., (2006). “Microblock rotations and fault coupling in SE asia triple junction ( Sulawesi, Indonesia) from GPS and earthquake slip vector data”. Journal of Geophysical Research: Solid earth, 111(B8).
Standar Nasional Indonesia, 2019. Tata Cara Perencanaan Ketahanan Gempa untuk Bangunan Gedung dan Non Gedung (SNI 1726 2019).
Badan Standarisasi Nasional.
Sunardi, B., 2013. Peta Deagregasi Hazard Gempa Wilayah Jawa dan Rekomendasi Ground Motion di Empat Daerah. Universitas Islam Indonesia, Yogyakarta
Supartoyo, Surono and Putranto, E. 2014. ‘Katalog Gempabumi Merusak Di indonesia Tahun 1612-2014’, Pusat Vulkanologi dan Mitigasi Bencana Geologi.
Tauhik, Hilman. 2017. Analisis Respon Tanah Terhadap Gempa Pada Wilayah Kota Makassar Menggunakan Aplikasi EERA Dengan Sumber Gempa Patahan Walanae. Universitas Hasanuddin : Makassar.
Tim Pusat Studi Gempa Nasional. 2017. Peta Sumber dan Bahaya Gempa Indonesia Tahun 2017. Bandung: Kementerian Pekerjaan Umum dan Perumahan.
Wahyono,M. 2020. ‘Penerapan Teorema Probabilitas Total dalam Resiko Gempa’, Rekonstruksi Tadulako. new.jurnal.untad.ac.idindex.php