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Empirical equations for the prediction of PGA and pseudo spectral accelerations using Iranian strong
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Empirical equations for the prediction of PGA and pseudo spectral accelerations using Iranian strong-motion data H. Zafarani & Lucia Luzi & Giovanni Lanzano & M. R. Soghrat Abstract A recently compiled, comprehensive, and good-quality strong-motion database of the Iranian earthquakes has been used to develop local empirical equations for the prediction of peak ground acceleration (PGA) and 5%-damped pseudospectral accelerations (PSA) up to 4.0 s. The equations account for style of faulting and four site classes and use the horizontal distance from the surface projection of the rupture plane as a distance measure. The model predicts the geometric mean of horizontal components and the vertical-to-horizontal ratio. A total of 1551 free-field acceleration time histories recorded at distances of up to 200 km from 200 shallow earthquakes (depth < 30 km) with moment magnitudes ranging from Mw 4.0 to 7.3 are used to perform regression analysis using the random effects algorithm of Abrahamson and Youngs (Bull Seism Soc Am 82:505–510, 1992), which considers between-events as well as within-events errors. Due to the limited data used in the development of previous Iranian ground motion prediction equations (GMPEs) and strong trade-offs between different terms of GMPEs, it is likely that the previously determined models might have less precision on their coefficients in comparison to the current study. The richer database of the current study allows improving on prior works by considering additional variables that could not previously be adequately constrained. Here, a functional form used by Boore and Atkinson (Earthquake Spect 24:99– 138, 2008) and Bindi et al. (Bull Seism Soc Am 9:1899–1920, 2011) has been adopted that allows accounting for the saturation of ground motions at close distances. A regression has been also performed for the V/H in order to retrieve vertical components by scaling horizontal spectra. In order to take into account epistemic uncertainty, the new model can be used along with other appropriate GMPEs through a logic tree framework for seismic hazard assessment in Iran and Middle East region. Keywords Ground motion prediction equations . Strong motion . PSHA. V/H ratio . Iran جدیدترین رابطه کاهندگی ارائه شده برای فلات ایران توسط دکتر زعفرانی و همکاران (2017) منبع دانلود از پیوست Zafarani et al. (2017).pdf-
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مفاهیم رابطه کاهندگی و نگاهی به روابط مناسب برای انجام تحلیل خطر در ایران پادکست به مدت تقریبی سه دقیقه ارایه ای از مهندس محمدرضا سقراط به نقل از کانال تلگرام دپارتمان آموزش هیراد دانلود از پیوست @heerad_edu SGMPE.rar
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