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A NEW PERFORMANCE-BASED DESIGN FOR SPIRALS IN BRIDGE COLUMNS

机译:基于性能的桥柱新型设计

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Performance-based design (PBD) is beginning to receive attention from the earthquake engineering design profession because of the versatility it offers to owners. While PBD provides considerable flexibility, there is no available widely accepted single measure of performance that can specifically correlate to quantifiable structural parameters. Among the measures have been used by researchers and engineers including displacement ductility, drift ratio, curvature ductility, concrete strain, and steel strain. Curvature ductility is a measure of local deformation in plastic hinges, and can serve as an appropriate index to signify performance under moderate and strong earthquakes. A simple confinement steel design method for spiral bridge columns was developed that proportions the spirals depending on the target curvature ductility capacity. Two quarter-scale spiral columns were constructed and tested on one of the University of Nevada, Reno Shake tables. The confinement steel in one column was designed based on existing codes and in the other using the proposed PBD. The shake table test results showed the superior performance of the latter with respect to repairable damage under moderate earthquakes and higher ductility capacity under strong earthquakes.
机译:基于性能的设计(PBD)由于其向业主提供的多功能性而开始受到地震工程设计专业的关注。尽管PBD提供了相当大的灵活性,但是没有一种可以被广泛接受的,可以与可量化的结构参数具体相关的性能的单一度量。研究人员和工程师已使用了其中的措施,包括位移延性,漂移比,曲率延性,混凝土应变和钢应变。曲率延展性是塑料铰链局部变形的量度,并且可以用作表示在中等和强烈地震下的性能的适当指标。开发了一种用于螺旋桥柱的简单约束钢设计方法,该方法根据目标曲率延性能力对螺旋进行比例分配。在内华达大学里诺·肖克(Reno Shake)台之一上构造并测试了两个四分之一刻度螺旋柱。一栏内的约束钢是根据现有规范设计的,另一栏内则采用了拟议的PBD。振动台试验结果表明,后者在中度地震下的可修复损伤方面表现出卓越的性能,在强地震下具有更高的延展能力。

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