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Toward life-cycle reliability-, risk- and resilience-based design and assessment of bridges and bridge networks under independent and interacting hazards: emphasis on earthquake, tsunami and corrosion

机译:基于生命周期的可靠性 - 基于风险和恢复力的设计和评估独立和互动危害:强调地震,海啸和腐蚀

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摘要

After recent large earthquakes, field investigations confirmed that several bridges were severely damaged and collapsed not only due to the earthquake, as an independent hazard, but also to the subsequent tsunami, landslide or fault displacement. In addition, long-term material deterioration might have an important impact on seismic damage to bridges. Therefore, it is important to study both independent and interacting hazards and their effects on the reliability and risk of bridges and bridge networks. Although earthquake is still a dominant hazard to bridges in many earthquake-prone countries, a life-cycle reliability and risk approach has to consider both independent and interrelated hazards causing bridge failure. Such an approach is presented in this paper. In addition, issues related to life-cycle analysis, design, risk, resilience and management of bridges under earthquake and other hazards are discussed. Finally, the concepts and methods presented are illustrated on both single bridges and bridge networks.
机译:在近来的大地震之后,现场调查证实,几座桥梁不仅因地震而受到严重损坏并坍塌,作为独立的危害,也是随后的海啸,滑坡或故障位移。此外,长期物质恶化可能对桥梁的地震损坏产生重要影响。因此,研究独立和互动危害以及对桥梁和桥网络的可靠性和风险的影响非常重要。虽然地震仍然是许多地震 - 易患的桥梁的主导危险,但生命周期可靠性和风险方法必须考虑独立和相互关联的危险,导致桥梁失败。本文提出了这种方法。此外,还讨论了与地震和其他危害下的生命周期分析,设计,风险,弹性和桥梁管理有关的问题。最后,呈现的概念和方法在单个桥梁和桥接网络上示出。

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