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Development of a bridge-specific fragility methodology to improve the seismic resilience of bridges

机译:开发桥梁特异性脆弱方法,以提高桥梁的地震性弹性

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This article details a bridge-specific fragility method developed to enhance the seismic design and resilience of bridges. Current seismic design processes provide guidance for the design of a bridge that will not collapse during a design hazard event. However, they do not provide performance information of the bridge at different hazard levels or due to design changes. Therefore, there is a need for a supplement to this design process that will provide statistical information on the performance of a bridge, beyond traditional emphases on collapse prevention. This article proposes a bridge-specific parameterized fragility method to enable efficient estimation of various levels of damage probability for alternative bridge design parameters. A multi-parameter demand model is developed to incorporate bridge design details directly in the fragility estimation. Monte Carlo simulation and Logistic regression are used to determine the fragility of the bridge or bridge component. The resulting parameterized fragility model offers a basis for a bridge-specific design tool to explore the influence of design parameter variation on the expected performance of a bridge. When used as part of the design process, these tools can help to transform a prescriptive approach into a more performance-based approach, efficiently providing probabilistic performance information about a new bridge design. An example of the method and resulting fragility estimation is presented.
机译:本文详细介绍了一种桥接特定的脆弱方法,以增强桥梁的地震设计和抵御能力。目前的地震设计工艺为设计危险事件的设计提供了不会崩溃的桥梁的指导。然而,它们不提供不同危险水平或由于设计变化的桥梁的性能信息。因此,需要补充到这种设计过程,这些过程将提供关于桥梁性能的统计信息,超越传统的重点在于崩溃预防。本文提出了一种桥梁特定的参数化脆弱方法,以实现替代桥梁设计参数的各种损伤概率的有效估计。开发了一种多参数需求模型,以直接在脆弱性估算中结合桥梁设计细节。 Monte Carlo仿真和逻辑回归用于确定桥梁或桥梁组件的脆弱性。由此产生的参数化脆性模型为桥梁特定的设计工具提供了基础,以探索设计参数变化对桥梁预期性能的影响。当用作设计过程的一部分时,这些工具可以帮助将规范方法转换为更为基于性能的方法,有效地提供有关新桥梁设计的概率性能信息。提出了该方法和得到的脆弱性估计的示例。

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