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Seismic Microzonation and Damage Assessment of Bam City,Southeastern Iran
Authors:Ramin Motamed  Abbas Ghalandarzadeh  Ikuo Tawhata  S H Tabatabaei
Institution:1. Department of Civil Engineering , The University of Tokyo , Tokyo, Japan motamed@geot.t.u-tokyo.ac.jp;3. Department of Civil Engineering , University of Tehran , Tehran, Iran;4. Department of Civil Engineering , The University of Tokyo , Tokyo, Japan;5. Geotechnical Department , Building and Housing Research Center , Tehran, Iran
Abstract:This article aims to study the dynamic characteristics of soil in Bam, southeastern Iran. Fundamental frequency and amplification factor of soil sediment were estimated by microtremor measurement. This procedure was performed at 49 sites in the city. Two 120-second data were recorded at each site. Segmental cross spectra were applied to calculate spectrum, Nakamura's method (H/V) was used for analyzing data and fundamental frequency and amplification factor values were derived. Iso-frequency and iso-amplification maps of the city were prepared. Results show that soil type in Bam city is mainly stiff, although amplification factor is relatively large. There is a short period zone in northwest to southeast direction. Sediment depth was estimated using a correlation between fundamental frequency and sediment thickness. Results obtained from microtremors were compared to the geotechnical boreholes and it was shown that microtremors can be used for a rough estimation of sediment thickness. Damage distribution map of Bam due to the Bam earthquake on December 26, 2003 was prepared by both field and aerial investigation. Quality of buildings in Bam was evaluated, as a result a crude zoning map on the building quality was prepared. Finally, it was concluded that several factors have contributed to damage intensity variation; earthquake characteristics, local site effect, and buildings' quality. All mentioned parameters affected the damage variation.
Keywords:Microtremors  Fundamental Frequency  Amplification  Damage Variation  Bam City
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