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Determination of S-wave Site Response in Anchorage, Alaska in the 1–9 Hz Frequency Band
Authors:S K Nath  N N Biswas  M Dravinski  A S Papageorgiou
Institution:Department of Geology and Geophysics, Indian Institute of Technology, Kharagpur 721 302, West Bengal, India. E-mail: nath@gg.iitkgp.ernet.in, Formerly Visiting Scientist, Geophysical Institute, University of Alaska Fairbanks, U.S.A., US
Geophysical Institute, University of Alaska Fairbanks, AK99775-7320, U.S.A. E-mail: niren@giseis.alaska.edu, US
Department of Mechanical Engineering, University of Southern California, 3650 McClintock Ave, Room 430, Los Angeles, CA 90089-1453, U.S.A. E-mail: mdravins@mizar.usc.edu, US
State University of New York at Buffalo, Department of Civil, Structural and Environmental Engineering, Ketter Hall 222, Buffalo, NY 14260-4300, U.S.A. E-mail: papaga@eng.buffalo.edu, US
Abstract:—?Site response was estimated at 19 sites in the Anchorage basin in south-central Alaska, using 15 local earthquakes recorded with good signal-to-noise ratio by a temporary weak motion network. The receiver-function-type horizontal-to-vertical spectral ratios (HVSR) were computed at 1–9 Hz frequency band and the resulting HVSR contour maps at 1, 5 and 9 Hz are presented here. The spatial site response distribution shows considerable variation from the foothills of the Chugach Mountains in the east to the western part of Anchorage. The site response increases by a factor of 3 and 3.5 at 1 and 5 Hz, respectively, from the area of older glacial deposits in the eastern part of the city to the area occupied by the Bootlegger Cove formation, particularly in the section adjoining Knik Arm. At 9 Hz, the variation of HVSR from the east to the west is smaller, approximately by a factor of 2. Moreover, the trend of the HVSR variation at 1 and 5 Hz shows good correlation with that of the soil class obtained from surface measurements of S-wave velocity in the 0–30?m depth range and available results on ground failure susceptibility of Anchorage.
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