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Derivation of design soil coefficients (S) and response spectral shapes for Eurocode 8 using the European Strong-Motion Database
Authors:Julien Rey  Ezio Faccioli  Julian J. Bommer
Affiliation:(1) Department of Structural Engineering, Politecnico Di Milano, Piazza Leonardo da Vinci 32, I–20133 Milano, Italy;(2) Department of Civil and Environmental Engineering, Imperial College, London, SW7 2BU, UK
Abstract:A revision is presently under way to upgrade the status of the `Designrecommendations for earthquake resistance of structures', commonlyreferred to as Eurocode 8 (or EC8). In order to improve the definition ofthe design elastic response spectra (ERS) as defined in the Eurocode 8 –Part 1 (Draft May 2001), the values of the soil amplification factors havebeen calculated for sites on sedimentary soils, both stiff (category B) andsoft (category C), with respect to rock sites (category A), such ascontemplated in EC8. The work was performed by a systematic study ofresponse spectra as a function of magnitude and site conditions, usingrecords from the European Strong-Motion Database.The results confirm the occurrence of systematic spectral amplification onsedimentary soils with respect to reference rock in a large set of Europeanstrong motion data. Such amplification has been quantified through ameasure derived from the Housner Spectrum Intensity definition.The values of the soil coefficients recommended in the current version ofEC 8 are shown to be realistic for category C, in the case of a moderateseismicity context. However the values for subsoil class B need to besignificantly increased both for the moderate and high seismicity context.
Keywords:acceleration response spectra  Eurocode 8  EuropeanStrong-Motion Database  local site conditions  soil coefficients  spectralshapes  spectral ratios  Housner Spectrum Intensity
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