Yayınlanmış 1 Ocak 2018 | Sürüm v1
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Exploration of S-wave velocity profiles at strong motion stations in Eskisehir, Turkey, using microtremor phase velocity and S-wave amplification

  • 1. Tokyo Inst Technol, Dept Architecture & Bldg Engn, Midori Ku, 4259 Nagatsuta, Yokohama, Kanagawa 2268503, Japan
  • 2. Prime Minist Disaster & Emergency Management Auth, Dumlupinar Bulvari 159, Ankara, Turkey
  • 3. Anadolu Univ, Satellite & Space Sci Res Inst, Iki Eylul Campus, TR-26470 Eskisehir, Turkey
  • 4. Istanbul Univ, Engn Fac, Dept Geophys, Avcilar Campus, TR-34320 Istanbul, Turkey

Açıklama

We have explored 1D S-wave velocity profiles of shallow and deep soil layers over a basement at strong motion stations in Eskisehir Province, Turkey. Microtremor array explorations were conducted at eight strong motion stations in the area to know shallow 1D S-wave velocity models. Rayleigh wave phase velocity at a frequency range from 3 to 30 Hz was estimated with the spatial autocorrelation analysis of array records of vertical microtremors at each station. Individual phase velocity was inverted to a shallow S-wave velocity profile. Low-velocity layers were identified at the stations in the basin. Site amplification factors from S-wave parts of earthquake records that had been estimated at the strong motion stations by Yamanaka et al. (2017) were inverted to the S-wave velocities and Q-values of the sedimentary layers. The depths to the basement with an S-wave velocity of 2.2 km/s are about 1 km in the central part of the basin, while the basement becomes shallow as 0.3 km in the marginal part of the basin. We finally discussed the effects of the shallow and deep sedimentary layers on the 1D S-wave amplification characteristics using the revealed profiles. It is found that the shallow soil layers have no significant effects in the amplification at a frequency range lower than 3 Hz in the area.

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