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Analytical Assessment of Seismic Performance Evaluation Procedures for Bridges

机译:桥梁抗震性能评估程序的分析评估

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The multi-limit state seismic design and evaluation procedure allows structures to satisfy different performance criteria against different levels of seismic excitation. To achieve the simultaneous satisfaction of the multi-level design approach, it is essential to employ accurate analysis procedures which can be consistently applied to various levels of ground motions. In this study, several analytical evaluation procedures are compared via the application of the methods to two bridge structures. In the first application, a bridge considered typical of the inventory in the Central and Eastern United States is analyzed. Inelastic Response History Analysis (IRHA), two Capacity Spectrum Methods (CSMs), two Elastic Response History Analysis (ERHA) approaches with different stiffness approximation, and SDOF simulations are conducted. The second and more complex application, a 59-span irregular bridge crossing the Mississippi River is also analyzed in the elastic and inelastic ranges. Results from IRHA and simplified analysis procedures are compared to assess their applicability and limitations. It is concluded that the approximate methods have limited applicability, which depends on several parameters including intensity of ground motions and characteristics of bridge structures. The importance of inelastic and dynamic analysis in seismic assessment is emphasized, while cases where the simplified procedures yield acceptable response are presented.
机译:多极限状态地震设计和评估程序使结构能够针对不同级别的地震激励满足不同的性能标准。为了同时满足多层次设计方法的要求,必须采用准确的分析程序,该程序可以始终如一地应用于各种水平的地面运动。在这项研究中,通过将方法应用于两个桥梁结构,比较了几种分析评估程序。在第一个应用程序中,分析了美国中部和东部地区典型的库存桥梁。进行了非弹性响应历史分析(IRHA),两种能力谱方法(CSM),两种具有不同刚度近似值的弹性响应历史分析(ERHA)方法和SDOF仿真。第二个也是更复杂的应用是在弹性和非弹性范围内分析了横跨密西西比河的59跨度不规则桥梁。将IRHA的结果和简化的分析程序进行比较,以评估其适用性和局限性。结论是,近似方法的适用性有限,这取决于几个参数,包括地震动的强度和桥梁结构的特性。强调了非弹性和动力分析在地震评估中的重要性,同时介绍了简化程序产生可接受响应的情况。

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