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Hasil Pencarian

Ditemukan 1029 dokumen yang sesuai dengan query
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Rikitake, Tsuneji
Amsterdam: Elsevier, 1976
551.22 TSU e (1)
Buku Teks SO  Universitas Indonesia Library
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Lomnitz, Cinna
New York: John Wiley & Sons, 1994
551.22 LOM f
Buku Teks SO  Universitas Indonesia Library
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Nottingham: Wiley InterScience,
551 EESD
Majalah, Jurnal, Buletin  Universitas Indonesia Library
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"Makalah ini memaparkan hasil pengembangan beberapa model acuan un
tuk menentukan jumlah stasiun pencatat percepatan gempabumi kuat pada tingkatan negara berdasarkan kondisi geografis, demografis, dan sosial-ekonomi. Beberapa model ini dapat digunakan dalam pengembangan lebih lanjut sistem pencatat gempa bumi kuat Indonesia. Dasar pengembangan model adalah sistem serupa di Selandia Baru, Jepang, Taiwan, Iran, Turki, dan Italia. Parameter jumlah
stasiun pencatat yang diusulkan adalah jumlah stasiun per 1000 km2
luas daratan, dan tiga buah model regresi eksponensial telah dikembangkan berdasarkan fungsi kepadatan penduduk negara, fungsi
Produk Domestik Bruto (PDB) per kapita, dan fungsi Indeks Daya-Saing Global (GCI) kelompok Persyaratan Dasar. Berdasarkan tiga model
ini, jumlah minimum stasiun pencatat yang dibutuhkan adalah sekitar 750 stasiun.

Abstract
An empirical study to develop benchmark models at country-level to assess the suggested number of earthquake strong-motion stations based on a framework encompassing geographic, demographic, and socio-economic parameters is reported. The models are to provide a working estimate of the required number of stations for improving the strong-motion instrumentation program of Indonesia. National earthquake strong-motion networks of New Zealand, Japan,
Taiwan, Iran, Turkey, and Italy were used as the references.
The parameter proposed is the number of stations in land area of 1,000 km2, and three models based on the exponential regression analysis are presented as functions of population density, Gross Domestic Product (GDP) per capita, and the Global Competitiveness Index (GCI) Basic Requirements Index. Using the models, it is suggested that Indonesia would require at least 750 stations."
[Direktorat Riset dan Pengabdian Masyarakat Universitas Indonesia, Fakultas Teknik Universitas Indonesia], 2012
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Artikel Jurnal  Universitas Indonesia Library
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Aristo
"Tinjauan karakteristik zona seismogenik terkait dengan proses rupture gempabumi di zona Subduksi Sumatera telah dilakukan dengan berbagai metode. Zona ini tercatat pernah mengalami beberapa gempa besar yaitu gempabumi Aceh 2004 Mw=9,1, Nias-Simeulue 2005 Mw=8,6, Bengkulu 2007 Mw=8,5, dan Enggano 2000 Mw=7,9. Penelitian ini memfokuskan hubungan antara analisis kontras densitas berdasarkan data gravitasi satelit GOCE dengan distribusi slip di zona rupture empat gempabumi besar yang pernah terjadi. Pemrosesan data gravitasi satelit dilakukan untuk mendapatkan data Gravity disturbance (Gd) dan turunan vertikal gravitasi (Tzz) yang dikoreksi oleh efek topografi dan sedimen dengan dekomposisi spektrum yang berbeda-beda untuk mendapatkan peta gravitasi dengan kedalaman yang berbeda-beda. Berdasarkan analisis Tzz, slip maksimal rupture gempabumi berkorelasi dengan pola Tzz minimal dan kontras densitas rendah, sementara itu rupture berakhir pada pola Tzz maksimal dan kontras densitas tinggi. Pola Tzz dan Gravity disturbance dapat menggambarkan posisi barrier dan asperitas dari zona subduksi Sumatra. Peta skematik berhasil menggambarkan segmentasi seismik Subduksi Sumatra yang memiliki zona asperitas sepanjang strike subduksi yang berhubungan dengan Tzz minimal dan berhubungan dengan zona forearc, serta adanya barrier yang berhubungan dengan Tzz maksimal yang merupakan manifestasi dari struktur (fracture zone dan seamount) yang tersubduksi ke lempeng samudra.

The review of the characteristics of the seismogenic zone associated with the earthquake rupture process in the Sumatra Subduction Zone has been carried out by various methods. This zone has experienced several major earthquakes, namely the Aceh 2004 Mw=9,1, Nias-Simeulue 2005 Mw=8,6, Bengkulu 2007 Mw=8,5, and Enggano 2000 Mw=7,9. This study focuses on the relationship between density contrast analysis based on gravity data from the GOCE satellite and the slip distribution in the rupture zones of four major earthquakes that have occurred. Satellite gravity data processing was carried out to obtain data for Gravity disturbance (Gd) and vertical gravity derivatives (Tzz), which are corrected by topography and sediment effects with different spectrum decomposition to get gravity maps with different depths. Based on the Tzz analysis, the maximal slip of the earthquake rupture is correlated with the minimal Tzz pattern and low-density contrast. In contrast, the rupture ends at the maximum Tzz pattern and high-density contrast. Tzz pattern and Gravity disturbance can describe the barrier position and asperity of Sumatra subduction zone. The schematic map succeeds in portraying the seismic segmentation of Sumatra Subduction which have asperities zone along the subduction strike associated with the minimal Tzz and associated with the forearc zone, as well as the barrier related to the maximum Tzz which is a manifestation of structures (fracture zone and seamount) that are subducted to the oceanic plate."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2020
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UI - Skripsi Membership  Universitas Indonesia Library
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Robiatul Adawiyah
"Gempabumi yang terjadi di Yogyakarta 27 Mei 2006 merupakan gempabumi besar dengan kekuatan Mw : 6, 2. Selain menyebabkan kematian sekitar 5000-an jiwa, juga mneyebabkan kerusakan infrastruktur serta mengakibatkan kerusakan geologi berupa hilangnya kekuatan tanah atau likuifaksi. Penelitian ini ingin mengungkapkan kaitan kejadian likuifaksi dengan geologi dan indeks keburukan likuifaksi serta pola wilayah bahaya likuifaksi di Daerah Istimewa Yogyakarta menggunakan metode deskriptif dengan pendekatan spasial (keruangan). Hasil penelitian menunjukkan sebaran titik kejadian likuifaksi cenderung mengelompok di tengah wilayah penelitian, sebarannya mengikuti : sebaran jenis batuan endapan Gunungapi Merapi muda, sebaran umur batuan kuarter. Seluruh titik kejadian likuifaksi dijumpai pada jarak kurang dari enam kilometer dari sesar utama dan sesar minor. Sebaran kejadian likuifaksi tidak selalu dijumpai pada wilayah dengan nilai LSI yang besar. Wilayah bahaya likuifaksi terbagi menjadi : wilayah bahaya likuifaksi sangat tidak aman, tidak aman, dan wilayah aman.

The Yogyakarta earthquake of May 27, 2006 has magnitude Mw : 6,2. This earthquake caused about 5000 died people and destroyed infrastructures also liquefaction. Focus of this study is interrelation between liquefaction occurance and geological condition and liquefaction severity index (LSI). This research is descriptive and spatial approach. The research shows that distribution of liquefaction occurrence is clustered in the centre part of Yogyakarta Special Province, it is related to young volcanic deposits of Merapi Volcano distribution and Quarternary deposits distribution. Liquefaction occurance is situated within 6 km distance from the major and minor fault zone.The distribution of liquefaction occurance it isn?t related to liquefaction severity index (LSI)."
2008
S34215
UI - Skripsi Open  Universitas Indonesia Library
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Sigit Pramono
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Kota Palu sebagai bagian Provinsi Sulawesi Tengah secara tektonik berada dekat dengan sumber gempa aktif crustal, yaitu sesar segmen Sulawesi Tengah. Sesar tersebut terdiri dari banyak segmen, diantaranya yang sudah dikenal adalah Sesar Besar Palu-Koro memanjang dari utara ke selatan. Di ujung selatan terhubung sesar Matano dan di utara terhubung dengan subduksi Utara Sulawesi (North Sulawesi Subduction) dan Selat Makasar bagian utara. Pembangunan infrastruktur berbasis mitigasi kegempaan di Indonesia merujuk Peraturan Bangunan Tahan Gempa berdasarkan Peta Bahaya Gempabumi SNI 1726 Tahun 2019. Kota Palu dan wilayah sekitar sesar segmen Sulawesi Tengah menjadi wilayah yang perlu dilakukan penelitian dengan mempertimbangkan efek kondisi site lokal. Parameter kondisi lokal meliputi jenis situs tanah, periode dominan tanah metode Horizontal to Vertical Spectral Ratio (HVSR) dan estimasi kedalaman bedrock menggunakan metoda Spatial Autocorrelation (SPAC) menjadi bagian parameter studi karakteristik ground motion di Kota Sulawesi Tengah. Penelitian ini menggunakan parameter gempa magnitudo gempa ML 1,5-6,5. Pengolahan data ground motion menggunakan data hasil observasi sinyal 5 sensor Jaringan Strong motion Nasional BMKG sampling 100Hz, 5 sensor  jaringan strong motion terpasang sementara sampling 100Hz dan 25 sensor Jaringan Array Velocity Broadband dengan sampling 250 Hz. Jaringan khusus array ini hasil kerjasama BMKG dengan ANU (Australian National University) yang dipasang di sekitar Kota Palu dan dekat sesar segmen Sulawesi Tengah dalam durasi 3 bulan. Tujuan dalam studi ini adalah untuk mengkaji karakteristik dan pembangunan model ground motion segmen fault Sulawesi Tengah. Karakteristik ground motion model yang dibangun dikaji dari uji model regional dan lokal dengan katalog gempa utama (independent) dan gempa gabungan foreshock,mainshock dan aftershock (dependent). Hasilnya menunjukkan karakteristik ground motion hasil dependent mempunyai nilai hasil model yang lebih rendah dibandingan independent, fitting model regional menunjukkan hasil bervariasi tingkat kecocokannya terhadap data observasi masing-masing fault yaitu dengan melihat hasil garis korelasi terhadap data observasi dan hasil residualnya. Model tersebut diuji menggunakan data observasi gempa merusak 29 Mei 2017 Mw 6,6 dan gempa merusak 2018 magnitudo 7,4. Hasilnya menunjukkan model GMPE dependent mempunyai nilai estimasi GM-PGA model yang berada pada distribusi data observasi, sedangkan hasil model independent mempunyai tingkat kecocokan berada di atas sebaran data observasi. Sedangkan pengujian GMSA median M=3-4 dan M=4-5 model dependent dan independent terhadap dari data observasi M=3-4 dan M=4-5 di luar data pembangun model, menunjukkan hasil korelasi yang cukup baik terhadap dua model tersebut. Pemahaman kondisi site lokal menjadi sangat penting dan menjadi bagian dalam perhitungan GM-PGA dan dipertimbangkan dalam penentuan nilai estimasi tingkat goncangan dalam bagian desain infrastruktur mitigasi bencana gempa bumi.     

 


Palu City in one major city in Indonesia which has administratively is the part of Central Sulawesi Province. It has the potential to develop the big infrastructure which has to consider mitigation aspect, due to tectonically it has located close to earthquake active source, particularly segments crustal zone of Central Sulawesi. Central Sulawesi fault has the many faults segmentation, it is called The Active Major Fault System of Central Sulawesi, as well known Palu Koro Fault System zone. It was along the north to southward close to Palu Valley. Development of infrastructure with earthquake hazard mitigation accordance to SNI 1726:2019. Local site classification parameters using the dominant period HVSR (Horizontal Vertical Spectral Ratio), estimation deep of engineering bedrock using SPAC method (Spatial Auto Correlation) as well done. The understanding of the local seismic condition and seismotectonic mechanism based on seismicity data are significantly contributing to know earlier the possibility of the amplification, which have related PGA value with the distance. In this study used 5 National Strong motion Network Station of  BMKG in Palu, 25 Array Network Broadband Velocity Temporarily Station of BMKG-ANU and 5 Regional Strong motion Network Temporarily Station along the Palu-Koro fault and short period for the mini regional network. The purpose of this research to study the characteristics of the local ground motion GM-PGA model from multi fault in Central of Sulawesi, with considered the local site effect.  All these parameters contribute to play roles within the form of the GMPE model.The characteristics of ground motion in this research using independent (mainshock)-independent (foreshock, mainshock, aftershock) regional and local earthquake catalog. The result showed characteristics of ground motion dependent has the calculated value is lower than independent, and the regional model showed the fitting variated to micro fault observed data. It can be seen using correlated regression and residuals. Moreover, when compared with two devastating earthquakes, 29th May 2017 Mw 6.6 and Palu earthquake Mw 7.4 showed that the dependent model is fitted well with distribution of observed data, while for the independent model is overestimated. Meanwhile to calibrate GMSA has used Median GMSA for M=3-4 and M=4-5 to GMSA data observed of M=3-4 and M=4-5. The results showed that the well correlated between of Median GMSA to data observed distribution. The Understanding of local seismic is very important to asses the related PGA value with the distance in GM-PGA and GMSA in GMPE. The GMPE model could be used to be considered in detail engineering design process to determine the level of potential shaking when implement development mitigation based.    

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Depok: Fakultas Teknik Universitas Indonesia, 2020
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UI - Disertasi Membership  Universitas Indonesia Library
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Krinitzsky, Ellis L.
New York : John Wiley & Sons, 1993
624.176 KRI f
Buku Teks  Universitas Indonesia Library
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James Wijaya
"The work presented in this thesis is divided two subjects. First, devoted to the behavior, mechanic model, simulation and analysis of plate tectonics under excitation force approximated. Approach of an Earthquake are assumptions on the nature of the rupture process, review the evidence for the essential importance of the flow under plate with the modes of deformations.
Earthquake is primarily a mechanical process which appears as genuire rupture of crust and the earth behaves as an elastic body during the short time span of the phenomena. The friction has probably a fundamental role in the mechanics of the earthquakes. Rock mechanicians consider an earthquake as a stick-slip event controlled by the friction properties of the fault.
During an earthquake, on the nature of the fault and on the effect of trapped fluids within the crust at seismogenic depth, fault zone head seismic waves are generated by a shear-dislocation source and then propagated through the modeled earth medium. Wave propagation theory is used to solve the problem at hand for wave motion response, which is found as the superposition of the mean and scattered wave response.
Second, devoted model of the wave propagation, an important modeling tool of fault zone properties at depth can be provided by accurate simulations of seismic fault zone head and trapped waves for realistic structures. Analytical solutions for seismic wave fields generated by double-couple sources at material discontinuities in plane-parallel structures. Extensive 2D studies of the dependency of fault zone wave motion on basic media properties and source receiver geometries show that there are significant trade offs between propagation distances along the structure, fault zone width, impedance contrasts, source location within.
And the most important applications of the theory of structural dynamics is in analyzing the response of the structures to ground shaking caused by an earthquake. The study for earthquake response of linear SDF systems to earthquake motions concerned the displacement, velocity and acceleration. Then we introduced the response spectrum concept, which is central to earthquake engineering, together with procedures to determine the peak response of systems directly from the response spectrum.
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Depok: Fakultas Teknik Universitas Indonesia, 2002
T9957
UI - Tesis Membership  Universitas Indonesia Library
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"The Encyclopedia of Earthquake Engineering is designed to be the authoritative and comprehensive reference
covering all major aspects of the science of earthquake engineering, specifically focusing on the interaction
between earthquakes and infrastructure. The encyclopedia comprises approximately 300 contributions. Since earthquake engineering deals with the interaction between earthquake disturbances and the built infrastructure, the emphasis is on basic design processes important to both non-specialists and engineers so that readers become suitably well informed without needing to deal with the details of specialist understanding. The encyclopedia’s content provides technically-inclined and informed readers about the ways in which earthquakes can affect our infrastructure and how engineers would go about designing against, mitigating and remediating these effects. The coverage ranges from buildings, foundations, underground construction, lifelines and bridges, roads, embankments and slopes. The encyclopedia also aims to provide cross-disciplinary and cross-domain information to domain-experts. This is the first single reference encyclopedia of this breadth and scope that brings together the science, engineering and technological aspects of earthquakes and structures."
Berlin: Springer Berlin, Heidelberg, 2019
e20509036
eBooks  Universitas Indonesia Library
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