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Titlebook: SYNER-G: Typology Definition and Fragility Functions for Physical Elements at Seismic Risk; Buildings, Lifelines K. Pitilakis,H. Crowley,A.

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發(fā)表于 2025-3-21 18:54:45 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱SYNER-G: Typology Definition and Fragility Functions for Physical Elements at Seismic Risk
副標題Buildings, Lifelines
編輯K. Pitilakis,H. Crowley,A.M. Kaynia
視頻videohttp://file.papertrans.cn/861/860391/860391.mp4
概述Collection and review of fragility curves for buildings, lifelines, infrastructures, critical facilities.Typology/damage states for buildings, lifelines, infrastructures, critical facilities.Fragility
叢書名稱Geotechnical, Geological and Earthquake Engineering
圖書封面Titlebook: SYNER-G: Typology Definition and Fragility Functions for Physical Elements at Seismic Risk; Buildings, Lifelines K. Pitilakis,H. Crowley,A.
描述.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
出版日期Book 2014
關(guān)鍵詞Buildings; Fragility Curves; Lifelines; Seismic Vulnerability and Risk; Uncertainties
版次1
doihttps://doi.org/10.1007/978-94-007-7872-6
isbn_softcover978-94-024-0690-0
isbn_ebook978-94-007-7872-6Series ISSN 1573-6059 Series E-ISSN 1872-4671
issn_series 1573-6059
copyrightSpringer Science+Business Media Dordrecht 2014
The information of publication is updating

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Modeling and Propagation of Uncertainties,he vector of the structural response variables on which the state of the system, and ultimately Y, depend. This passage involves consideration of the variability of the action, in the form of different samples of ground motion together with all the uncertainties inherent in the numerical determinati
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Fragility Functions of Highway and Railway Infrastructure,lytical fragility curves that was followed in SYNER-G is described. This approach takes into account the effect of structure geometry, ground motion characteristics, soil conditions and associated uncertainties. New fragility curves are presented for tunnels in soil, embankments, cuttings and bridge
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Book 2014 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
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Alessio Lupoi,Francesco Cavalieri,Paolo Franchinl genetics, as a whole. Moreover, development of innovative and emergent technologies to analyze? interphase nuclei are closely associated with application of these techniques in clinical, diagnostic and resear978-1-4614-6558-4
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resent three experiments that show the impact of HMI on stress, capacity to achieve a task and on cognitive load. The first pilot study shown that a “heavy to use” HMI generated stress and difficulty to achieve the task with healthy adults. The second pilot study revealed that VMT-2 is judged modera
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