Free Ebook BookSYNER-G Typology Definition and Fragility Functions for Physical Elements at Seismic Risk Buildings Lifelines Transportation Networks and Critical ... Geological and Earthquake Engineering)

[Free.az3M] SYNER-G Typology Definition and Fragility Functions for Physical Elements at Seismic Risk Buildings Lifelines Transportation Networks and Critical ... Geological and Earthquake Engineering)



[Free.az3M] SYNER-G Typology Definition and Fragility Functions for Physical Elements at Seismic Risk Buildings Lifelines Transportation Networks and Critical ... Geological and Earthquake Engineering)

[Free.az3M] SYNER-G Typology Definition and Fragility Functions for Physical Elements at Seismic Risk Buildings Lifelines Transportation Networks and Critical ... Geological and Earthquake Engineering)

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Book Details :
Published on: 2014-01-20
Released on: 2014-01-20
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[Free.az3M] SYNER-G Typology Definition and Fragility Functions for Physical Elements at Seismic Risk Buildings Lifelines Transportation Networks and Critical ... Geological and Earthquake Engineering)

Fragility functions constitute an emerging tool for the probabilistic seismic risk assessment of buildings, infrastructures and lifeline systems. The work presented in this book is a partial product of a European Union funded research project SYNER-G (FP7 Theme 6: Environment) where existing knowledge has been reviewed in order to extract the most appropriate fragility functions for the vulnerability analysis and loss estimation of the majority of structures and civil works exposed to earthquake hazard. Results of other relevant European projects and international initiatives are also incorporated in the book. In several cases new fragility and vulnerability functions have been developed in order to better represent the specific characteristics of European elements at risk. Several European and non-European institutes and Universities collaborated efficiently to capitalize upon existing knowledge. State-of-the-art methods are described, existing fragility curves are reviewed and, where necessary, new ones are proposed for buildings, lifelines, transportation infrastructures as well as for utilities and critical facilities. Taxonomy and typology definitions are synthesized and the treatment of related uncertainties is discussed.
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