Stochastic Strong Ground Motion Simulations

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Details

Assessment of potential ground motions in seismically active regions is essential for purposes of seismic design and analysis. In regions of sparse or no strong ground motion records, ground motion simulations provide physics-based synthetic records. These simulations provide not only the earthquake engineering parameters but also give insight into the mechanisms of the earthquakes. This book presents strong ground motion simulations in three regions of intense seismic activity, namely Düzce, L'Aquila and Erzincan. In this study, stochastic finite-fault simulation methodology is utilized to determine regional seismic source, propagation and site parameters through validation of the simulations against the records. The limitations of the method are also investigated. Furthermore, a parametric sensitivity study is performed to observe the variations in results to small perturbations in input parameters. Results of this study confirm that stochastic finite-fault simulation method is an effective technique for generating realistic synthetic records of large earthquakes in near field regions. It is possible to use the results in seismic response analyses of engineering structures.

Autorentext

Ugurhan, B.: Currently a Ph.D. student at Stanford University, CA. Recipient of the International Fulbright Science and Technology Award. Askan G., A.: Obtained Ph.D. degree in civil engineering at Carnegie Mellon University. Currently an associate professor at Middle East Technical University.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783639347951
    • Sprache Englisch
    • Genre Allgemeines & Lexika
    • Größe H6mm x B220mm x T150mm
    • Jahr 2011
    • EAN 9783639347951
    • Format Kartonierter Einband (Kt)
    • ISBN 978-3-639-34795-1
    • Titel Stochastic Strong Ground Motion Simulations
    • Autor Beliz Ugurhan , Aysegul Askan Gundogan
    • Untertitel Validation, Limitation and Sensitivity Analyses
    • Gewicht 176g
    • Herausgeber VDM Verlag
    • Anzahl Seiten 120

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