Estimation Of Maximum Ground Acceleration Value Based On Mentawai Earthquake Scenario Using Atkinson Boore and Zhao
Penulis
Shafira Khairunnissa , Syafriani , Ahmad Fauzi , Zulhendra ZulhendraDOI:
10.29303/goescienceed.v5i4.510Diterbitkan:
2024-11-01Terbitan:
Vol 5 No 4 (2024): NovemberAbstrak
We have estimated the value and intensity of maximum ground acceleration in West Sumatra based on the Mentawai earthquake scenario by using the formulation of Atkinson Boore (2003) and Zhao (2006). This study aims to determine the PGA value of an area as the level of activity and intensity of the earthquake in West Sumatra region from the Mentawai earthquake scenario as a measure of damage caused by the earthquake and analyze its distribution. This study uses earthquake information data for the period 1900-2023 with magnitude > 7 SR and depth < 100 km and shear wave velocity model at a depth of 30 meters (Vs 30) sourced from the National Earthquakes Information Center US Geological Survey (NEIC/USGS) catalog. After that, calculations are carried out so that the estimated maximum ground acceleration value is obtained using the Atkinson Boore (2003) and Zhao (2006) formulas. The maximum ground acceleration and earthquake intensity values for each city/regency in West Sumatra were calculated with a 0.1° grid. The estimation results show that the largest values for each scenario are in Mentawai Islands and South Pesisir because those areas are close to the subduction zone. In addition, it is also influenced by the epicenter, magnitude and soil type in the region. So that the maximum ground acceleration value in West Sumatra ranges from 0.007 g - 2.117 g with earthquake intensity ranging from I - X+ MMI. This indicates that the area is vulnerable to damage if an earthquake occurs. Keywords: Earthquakes, Atkinson Boore, Zhao, PGA, IntensityReferensi
Akmam, Dwiridal, L., & Kemal, B. (2006). Studi Karakteristik Fisis Sumber Gempabumi di Wilayah Sumatera Barat. Laporan Hasil Penelitian.
Atkinson, G. M., & Boore, D. M. (2003). Empirical Ground-Motion Relations for Subduction-Zone Earthquakes and Their Application to Cascadia and Other Regions. Bulletin of The Seismological Society of America, 93(4), 1703-1729.
BMKG. (2023). Gempabumi Tektonik M 7,3 di Pantai Barat Sumatera Barat, Kabupaten Kepulauan Mentawai, Berpotensi Tsunami.
Douglas, J. (2022). Ground Motion Prediction Equations 1964 - 2021. United Kingdom.
Edwiza, D. (2008). Analisis Terhadap Intensitas dan Percepatan Tanah Maksimum Gempa Sumbar. Teknika(1), 73-79.
Leviana, M., Syafriani, & Sabarani, A. Z. (2017). Estimasi Nilai Percepatan Tanah Maksimum Wilayah Sumatera Barat Berdasarkan Skenario Gempabumi M 8.8 SR Menggunakan Rumusan Empiris Mc. Guire (1963) dan Donovan (1973). Pillar of Physics, 55-62.
Linkimer, L. (2008). Relationship Between Peak Ground Acceleration and Modified Mercalli Intensity in Costa Rica. Revista Geological de America Central, 81-94.
Mandasari, Syafriani, Triyono, R., & Hendra, R. (n.d.). Analisis Tingkat Kerentanan Seismik di Sumatera Barat Berdasarkan Nilai Percepatan Tanah Maksimum dan Intensitas Maksimum (Periode Data Gempa Tahun 2007 - 2017).
Marlisa, Pujiastuti, D., & Billyanto, R. (2016). Analisis Percepatan Tanah Maksimum Wilayah Sumatera Barat (Studi Kasus Gempa Bumi 8 Maret 1977 dan 11 September 2014). Jurnal Fisika Unand, 5(1), 53-58.
Nasional, T. P. (2017). Peta Sumber Dan Bahaya Gempa Indonesia Tahun 2017. Bandung: Pusat Penelitian dan Pengembangan Perumahan dan Pemukiman.
Natawidjaja, D. (2007). Gempa Bumi dan Tsunami di Sumatera dan Upaya Untuk Mengembangkan Lingkungan Hidup Yang Aman Dari Bencana Alam. Laporan KHL, LIPI.
Netrisa, Z., Syafriani, Triyono, R., & Arifin, H. (2018). Pemetaan Bahay Gempabumi Deterministik dengan Pendekatan Peak Ground Acceleration (PGA) di Kota Padang. Pilar Fisika(11), 41-48.
Nurdin, Pujiastuti, D., & Marzuki. (2022). Analisis Kecepatan Pergeseran Seismik Sesar Palu Koro Akibat Gempa Palu 2018 Menggunakan Data Global Navigation Satelite System. Jurnal Fisika Unand, 11(4), 428 - 434. doi:https://doi.org/10.25077/jfu.11.4.428-434.2022
Raharjo, F. D., Syafriani, & Ahadi, S. (2024). Estimastion Model Peak Ground Acceleration At Bedrock and Surface Of The Pasaman Barat Eartquake On February 25, 2022 Mw 6,1. Indonesian Journal of Applied Physics (IJAP), 14, 34-44. doi:https://doi.org/10.13057/ijap.v14i1.72221
Ramadhan, W., Syafriani, Fauzi, A., & Dwiridal, L. (2024). PGA Estimation of 346 Points in West Sumatra based on Earthquakes Scenario in West Pasaman with Si and Midorikawa Formula. Journal of Physics and Its Applications, 6(2), 54-60.
Romadiana, D., Syafriani, & Sabarani, A. Z. (2018). Analisis Nilai Percepatan Tanah Maksimum di Wilayah Sumatera Barat Menggunakan Persamaan Empiris Mc Guire, Si and Midorikawa dan Donovan. Pillar of Physics, 11(1), 09-16.
Romadiana.Dwi, Syafriani, & Zabarani, A. Z. (2018). Analisis Nilai Percepatan Tanah Maksimum di Wilayah Sumatera Barat Menggunakan Persamaan Empiris Mc Guire, Si dan Midorikawa dan Donovan. Pillar of Physics, II(1), 9 - 16.
Sieh, K., Bock, L., Taylor, F., & Gans, P. (1994). Active Tectonics of Sumatra. American Geophysical Unio.
Sofyan, M. R., & Edial, H. (2019). Estimasi Percepatan Tanah Maksimum dan Intensitas Gempa di Kota Padang Berdasarkan Skenario Gempabumi di Megathrust Mentawai Menggunakan Metode Deterministik. Jurnal Buana, III, 154 - 166.
Syafriana, D., Pujiastuti, D., & Sabarani, A. Z. (2015). Esrimasi Nilai Percepatan Tanah Maksimum di Sumatera Barat Berdasarkan Skenario Gempabumi di Wilayah Siberut Dengan Menggunakan Rumusan Si and Midorikawa (1999). Jurnal Fisika Unand, 4(4), 365 - 374.
Zhao, J. X., Zhang, J., Asano, A., Ohno, Y., Ouchi, T., Takahashi, T., . . . Fukushima, Y. (2006). Attenuation Relations of Strong Ground Motion in Japan Using Site Classification Based on Predominant Period. Bulletin of the Sesimological Society of America, 96, 898 - 913. doi:10.1785/0120050122