Proposed seismic hazard maps of Sumatra and Java islands and microzonation study of Jakarta city, Indonesia

This paper presents the development of spectral hazard maps for Sumatra and Java islands, Indonesia and microzonation study for Jakarta city. The purpose of this study is to propose a revision of the seismic hazard map in Indonesian Seismic Code SNI 03-1726-2002. Some improvements in seismic hazard...

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Veröffentlicht in:Journal of Earth System Science 2008-11, Vol.117 (Suppl 2), p.865-878
Hauptverfasser: Irsyam, Masyhur, Dangkua, Donny T., Hendriyawan, Hoedajanto, Drajat, Hutapea, Bigman M., Kertapati, Engkon K., Boen, Teddy, Petersen, Mark D.
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container_end_page 878
container_issue Suppl 2
container_start_page 865
container_title Journal of Earth System Science
container_volume 117
creator Irsyam, Masyhur
Dangkua, Donny T.
Hendriyawan
Hoedajanto, Drajat
Hutapea, Bigman M.
Kertapati, Engkon K.
Boen, Teddy
Petersen, Mark D.
description This paper presents the development of spectral hazard maps for Sumatra and Java islands, Indonesia and microzonation study for Jakarta city. The purpose of this study is to propose a revision of the seismic hazard map in Indonesian Seismic Code SNI 03-1726-2002. Some improvements in seismic hazard analysis were implemented in the analysis by considering the recent seismic activities around Java and Sumatra. The seismic hazard analysis was carried out using 3-dimension (3-D) seismic source models (fault source model) using the latest research works regarding the tectonic setting of Sumatra and Java. Two hazard levels were analysed for representing 10% and 2% probability of exceedance (PE) in 50 years ground motions for Sumatra and Java. Peak ground acceleration contour maps for those two hazard levels and two additional macrozonation maps for 10% PE in 50 years were produced during this research. These two additional maps represent short period (0.2 s) and long-period (1.0 s) spectra values at the bedrock. Microzonation study is performed in order to obtain ground motion parameters such as acceleration, amplification factor and response spectra at the surface of Jakarta. The analyses were carried out using nonlinear approach. The results were used to develop contour of acceleration at the surface of Jakarta. Finally, the design response spectra for structural design purposes are proposed in this study.
doi_str_mv 10.1007/s12040-008-0073-3
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The purpose of this study is to propose a revision of the seismic hazard map in Indonesian Seismic Code SNI 03-1726-2002. Some improvements in seismic hazard analysis were implemented in the analysis by considering the recent seismic activities around Java and Sumatra. The seismic hazard analysis was carried out using 3-dimension (3-D) seismic source models (fault source model) using the latest research works regarding the tectonic setting of Sumatra and Java. Two hazard levels were analysed for representing 10% and 2% probability of exceedance (PE) in 50 years ground motions for Sumatra and Java. Peak ground acceleration contour maps for those two hazard levels and two additional macrozonation maps for 10% PE in 50 years were produced during this research. These two additional maps represent short period (0.2 s) and long-period (1.0 s) spectra values at the bedrock. 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The purpose of this study is to propose a revision of the seismic hazard map in Indonesian Seismic Code SNI 03-1726-2002. Some improvements in seismic hazard analysis were implemented in the analysis by considering the recent seismic activities around Java and Sumatra. The seismic hazard analysis was carried out using 3-dimension (3-D) seismic source models (fault source model) using the latest research works regarding the tectonic setting of Sumatra and Java. Two hazard levels were analysed for representing 10% and 2% probability of exceedance (PE) in 50 years ground motions for Sumatra and Java. Peak ground acceleration contour maps for those two hazard levels and two additional macrozonation maps for 10% PE in 50 years were produced during this research. These two additional maps represent short period (0.2 s) and long-period (1.0 s) spectra values at the bedrock. Microzonation study is performed in order to obtain ground motion parameters such as acceleration, amplification factor and response spectra at the surface of Jakarta. The analyses were carried out using nonlinear approach. The results were used to develop contour of acceleration at the surface of Jakarta. Finally, the design response spectra for structural design purposes are proposed in this study.</abstract><cop>India</cop><pub>Springer-Verlag</pub><doi>10.1007/s12040-008-0073-3</doi><tpages>14</tpages></addata></record>
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source Indian Academy of Sciences; EZB-FREE-00999 freely available EZB journals; SpringerLink Journals - AutoHoldings
subjects Acceleration
Analysis
Building codes
Contours
Design
Earth and Environmental Science
Earth Sciences
Geological hazards
Ground motion
Hazard assessment
Hazards
Islands
Probability theory
Response spectra
Seismic activity
Seismic hazard
Seismology
Space Exploration and Astronautics
Space Sciences (including Extraterrestrial Physics
Spectra
Structural design
Structural engineering
Studies
Tectonics
Three dimensional models
title Proposed seismic hazard maps of Sumatra and Java islands and microzonation study of Jakarta city, Indonesia
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