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STUDIES ON VIBRATION SERVICEABILITY ASSESSMENT OF ALUMINUM PEDESTRIAN BRIDGES

机译:铝行人桥梁振动可用性评估研究

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Vibration serviceability is often the governing design factor for slender, lightweight footbridges. However, there is currently a large gap that exists between our understanding from a modeling perspective and their actual vibration behaviour. Recent experimental tests conducted at the University of Waterloo have underscored these discrepancies and have provided an unique opportunity to not only validate many of the models currently in use, but also to propose new modifications to better align with experimental test results. Specifically, issues such as how to design for lateral vibrations and crowd-induced loading and calibration of load factors, will be addressed in this presentation. Recent results obtained by the pedestrian bridge research group at the University of Waterloo through their extensive crowd-testing program on a full-scale aluminum pedestrian bridge located at the university will aim to address both of these issues. The ultimate objectives of this experimental program are to validate or extrapolate existing analytical frameworks, and to develop new, practical models that can be used in a design guideline to better account for lateral vibrations and crowd-induced loading.
机译:振动可用性往往是纤细,轻质脚底织机的控制设计因素。然而,目前我们从建模角度和实际振动行为之间的理解之间存在的巨大差距。在Waterloo大学进行的最新实验测试强调了这些差异,并且提供了独特的机会,不仅可以验证目前正在使用的许多模型,还提供了新的修改,以便更好地与实验测试结果对齐。具体而言,将在本演示文稿中解决如何为横向振动和横向振动和人群诱导的装载和校准等问题。 Waterloo大学步行桥梁研究组获得最近的结果,通过他们广泛的人群测试程序,位于大学的全面铝业步行桥上将旨在解决这两个问题。该实验计划的最终目标是验证或推断现有的分析框架,并开发可用于设计指南的新实用模型,以更好地占横向振动和人群诱导的装载。

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