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Seismic Design of Concrete-Filled Circular Steel Bridge Piers

机译:圆形钢管混凝土桥墩的抗震设计

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The adequacy of the existing design provisions for concrete-filled steel pipes subjected to axial forces and flexure is reviewed by comparing the strengths predicted by the CAN/CSA-S16.1-M94, AISC LRFD 1994, and the Eurocode 4 1994 codes and standards against experimental data from a number of investigators. New proposed design equations are then developed, in a format compatible with North American practice. The new equations, based on a simple plasticity model calibrated using experimental data, are shown to provide improved correlation between predicted strength and experimental data. This paper provides information and data in support of the proposed design equations, which have already been implemented in the 2001 edition of the CSA-S16-01 "limit state design of steel structures" (CSA 2001) and in the "Recommended LRFD Guidelines for the Seismic Design of Highway Bridges" (MCEER/ATC 2003).
机译:通过比较CAN / CSA-S16.1-M94,AISC LRFD 1994和Eurocode 4 1994规范和标准所预测的强度,对现行的设计规范是否适用于承受轴向力和挠曲的钢管进行了审查。反对许多研究人员的实验数据。然后以与北美实践兼容的格式开发新提出的设计方程式。新的方程式基于使用实验数据校准的简单可塑性模型,显示出在预测强度和实验数据之间提供了改善的相关性。本文提供了支持建议的设计方程式的信息和数据,这些方程式已在2001年版的CSA-S16-01“钢结构的极限状态设计”(CSA 2001)和“建议的LRFD指南”中实施公路桥梁的抗震设计”(MCEER / ATC 2003)。

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