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首页> 外文期刊>Computers & Structures >SR5 Lake Washington Ship Canal Bridge Pushover analysis
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SR5 Lake Washington Ship Canal Bridge Pushover analysis

机译:SR5华盛顿湖船运河桥推覆分析

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摘要

In this paper the results of SC Solutions' performance-based evaluation of the as-built Unit 10 frame of the SR5 Lake Washington Ship Canal Bridge are presented. This unit is a three-span frame, located between bridge piers 24 and 27 on the north approach to the bridge and extends approximately 329 ft between expansion joints. A three dimensional model of the Unit 10 frame was developed using the computer program ADINA (ADINA User Interface Command Reference Manual, Volume 1: ADINA Model Definition, ADINA R&D, Inc., September 1997) and ADINA's moment-curvature beam element. This paper discusses the method of evaluation of this frame, the material and member properties used for the `pushover' analysis, properties of the as-built structure, and the results of capacity analysis of the as-built Unit 10 assembly. Several pushover analysis were performed, consisting of mass proportional and mode shape lateral load profiles. One of the mass proportional lateral load analyses was selected for presentation in this paper. This load pattern resulted in maximum shear forces in the frame columns. Following the pushover analysis, a nonlinear dynamic time-history ADINA analysis was conducted to estimate maximum displacements and to evaluate the performance of the bridge during a simulated earthquake ground motion.
机译:本文介绍了SC Solutions对SR5华盛顿湖船运河大桥竣工的10单元框架进行性能评估的结果。该单元为三跨框架,位于北向桥梁的桥墩24和27之间,并在伸缩缝之间延伸约329英尺。使用计算机程序ADINA(ADINA用户界面命令参考手册,第1卷:ADINA模型定义,ADINA R&D,Inc.,1997年9月)和ADINA的弯矩梁元件开发了10号单元框架的三维模型。本文讨论了该框架的评估方法,用于“推覆”分析的材料和构件特性,竣工结构的特性以及竣工的Unit 10组件的能力分析结果。进行了几次推覆分析,包括质量比例和振型横向载荷分布。本文选择了一种质量比例侧向载荷分析方法。这种负载模式导致了框架柱中最大的剪切力。在进行推覆分析之后,进行了非线性动态时程ADINA分析,以估计最大位移并评估桥梁在模拟地震地面运动过程中的性能。

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