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The Role Of Vibration Analysis In The Design Of The Pedestrian Walkway Extension Of The Principe Umberto Bridge In Legnago, Italy

机译:振动分析在意大利莱格纳戈普林西比翁贝托桥人行道扩展设计中的作用

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This paper describes the design and construction of a new pedestrian walkway extension to the Principe Umberto bridge in Legnago (Italy), testing of vibration, and work carried out to improve its performance in serviceability condition.rnThis walkway showed a marked responsiveness to repetitive horizontal forces, which tended to excite transversal and torsional vibration around the longitudinal axis of the structure. To overcome this problem a new static condition was created.rnThis was based on analysing the response of the structure to human-induced dynamic loading by pedestrian movement (walking, running or jumping). Vibrations derived from such human-induced loads can cause disturbance to pedestrians (the serviceability problem) or, in more severe cases, resonance of the structure. According to technical literature and various design codes, there are two factors to be considered in overcoming these phenomena: the natural frequencies of the structure must be made to fall outside the range of human-pacing frequencies, and the .maximum acceleration at any point of the structure must be not greater than a threshold value. On that basis, both modal and dynamic analyses were performed on the Legnago Bridge and the results made it possible to identify the cause of the excessive deformability. These analyses were then used to develop a design solution and to re-verify the structural project, which consisted of a variation to the static design.
机译:本文介绍了一条新的人行道延伸至意大利Legnago的Principe Umberto桥的设计和施工,振动测试以及在可使用性条件下为改善其性能所做的工作.rn该人行道显示出对重复水平力的显着响应,这往往会激发围绕结构纵轴的横向和扭转振动。为了克服这个问题,创建了一个新的静态条件。这是基于分析结构对行人运动(步行,奔跑或跳跃)对人为动态载荷的响应。由此类人为负载引起的振动会导致对行人的干扰(可使用性问题),或者在更严重的情况下会引起结构共振。根据技术文献和各种设计规范,在克服这些现象时要考虑两个因素:必须使结构的固有频率落在人体起搏频率范围之外;以及在任何位置处的最大加速度。该结构必须不大于阈值。在此基础上,对Legnago桥进行了模态分析和动态分析,结果使查明过度变形的原因成为可能。然后将这些分析用于开发设计解决方案并重新验证结构项目,其中包括对静态设计的更改。

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