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Equivalent Static Analysis Method for Barge Impact-Resistant Bridge Design

机译:驳船抗冲击桥梁设计的等效静力分析方法

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In the United States, barge impact-resistant bridge design typically involves static application of code-prescribed impact loads. However, the existing static analysis procedure neglects crucial dynamic effects in the impacted bridge. Recent experimental and analytical studies have uncovered important impact-related dynamic amplification of pier member demands, primarily stemming from superstructure inertial effects. These studies have focused on the use of dynamic structural analysis as a means of accounting for dynamic amplification. Although time-domain dynamic analysis techniques are capable of accurately predicting amplified member design forces, such techniques may not be warranted during preliminary design iterations when detailed structural parameters have not yet been established. In this paper, a static analysis procedure is developed that emulates pier response modes that arise during dynamic barge impact events. The proposed method provides a simplified means of approximating dynamic amplification effects and is shown to produce conservative predictions (in relation to dynamic analysis) of both pier and foundation design forces.
机译:在美国,驳船抗冲击桥的设计通常涉及静态施加规范规定的冲击载荷。但是,现有的静态分析程序忽略了受影响桥梁的关键动态影响。最近的实验和分析研究发现,与冲击有关的墩构件需求动态放大,主要源于上部结构的惯性效应。这些研究集中于使用动态结构分析作为动态放大的一种解释方法。尽管时域动态分析技术能够准确预测放大的构件设计力,但是当尚未建立详细的结构参数时,在初步设计迭代期间可能不需要保证使用此类技术。在本文中,开发了一种静态分析程序,该程序模拟了动态驳船撞击事件期间出现的墩响应模式。所提出的方法提供了一种简化的近似动态放大效果的方法,并显示出了对墩和基础设计力的保守预测(相对于动态分析)。

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