3D Response analysis of an instrumented hill at Matsuzaki, Japan, by a spectral method |
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Authors: | Roberto Paolucci Ezio Faccioli Fabio Maggio |
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Affiliation: | (1) Department of Structural Engineering, Politecnico di Milano, P.za Leonardo da Vinci 32, I–20133 Milano, Italy;(2) CRS4 (Centro Ricerche e Studi Superiori in Sardegna), v. Sauro 10, I–09123 Cagliari, Italy |
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Abstract: | Strong ground motion observed at an instrumented hill site is first analysed through the standard (SSR) and the horizontal-to-vertical (HVSR) spectral ratio techniques. A reasonable agreement is found between these approaches. The observations are then compared with 3D numerical simulations, performed with a highly efficient numerical code based on a spectral method, that allowed for reasonable computer times also on a PC. The observed amplification is significantly higher than that computed with a 3D homogeneous model of the mountain, suggesting that local response is governed by large-scale and small-scale soil heterogeneities rather than by topographic site effects. The introduction of a local near-surface inclusion of nonhomogeneous soil material under one of the recording stations has not significantly improved the numerical results. The observed data are also compared with the results of simplified simulations, either using 2D homogeneous models or coupling the 3D response with a 1D local soil profile. The results of such simplified approaches are discussed and their usefulness is emphasised. |
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Keywords: | 3D seismic wave propagation dense accelerograph array parallel computing spectral method strong ground motion topographic site effects |
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