Abstract
In this paper, we analyze the seismograms of a local earthquake (M W ∈=∈5.8) and find a clear surface wave excitation at the northern edge of the Kanto Basin, Japan. To conduct three-dimensional (3-D) finite difference method simulations for this observation, we investigate the characteristics of the S wave velocity in the Kanto Basin and construct a realistic sedimentary structure model. The S wave velocities derived from the vertical seismic profiling measurements in the Kanto Basin show smooth depth gradients rather than step-like increases and can be successfully modeled by an exponential asymptotically bounded velocity function. Our simulation using the modified Japan integrated velocity structure model by incorporating a sedimentary layer with S wave velocity-depth gradients well reproduces the excitation and dispersion of the observed surface waves. This result indicates that realistic modeling of the impedance contrast at the sediment-bedrock interface is indispensable for the precise evaluation of surface wave excitation at the basin edge. © 2014 Yoshimoto and Takemura; licensee Springer.
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CITATION STYLE
Yoshimoto, K., & Takemura, S. (2014). Surface wave excitation at the northern edge of the Kanto Basin, Japan. Earth, Planets and Space, 66(1). https://doi.org/10.1186/1880-5981-66-16
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