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首页> 外文期刊>Journal of bridge engineering >Roebling Suspension Bridge. Ⅰ: Finite-Element Model and Free Vibration Response
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Roebling Suspension Bridge. Ⅰ: Finite-Element Model and Free Vibration Response

机译:悬索桥。 Ⅰ:有限元模型和自由振动响应

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摘要

This first part of a two-part paper on the John A. Roebling suspension bridge (1867) across the Ohio River is an analytical investigation, whereas Part Ⅱ focuses on the experimental investigation of the bridge. The primary objectives of the investigation are to assess the bridge's load-carrying capacity and compare this capacity with current standards of safety. Dynamics-based evaluation is used, which requires combining finite-element bridge analysis and field testing. A 3D finite-element model is developed to represent the bridge and to establish its deformed equilibrium configuration due to dead loading. Starting from the deformed configuration, a modal analysis is performed to provide the frequencies and mode shapes. Transverse vibration modes dominate the low-frequency response. It is demonstrated that cable stress stiffening plays an important role in both the static and dynamic responses of the bridge. Inclusion of large deflection behavior is shown to have a limited effect on the member forces and bridge deflections. Parametric studies are performed using the developed finite-element model. The outcome of the investigation is to provide structural information that will assist in the preservation of the historic John A. Roebling suspension bridge, though the developed methodology could be applied to a wide range of cable-supported bridges.
机译:横跨俄亥俄河的约翰·A·罗布林悬索桥(1867年)的两部分论文的第一部分是分析性研究,而第二部分着重于对桥梁的实验研究。调查的主要目的是评估桥梁的承载能力,并将该能力与当前的安全标准进行比较。使用基于动力学的评估,这需要结合有限元桥梁分析和现场测试。开发了一个3D有限元模型来表示桥梁并建立由于恒载引起的变形平衡构型。从变形的配置开始,执行模态分析以提供频率和模态形状。横向振动模式主导着低频响应。结果表明,缆索应力的加强在桥梁的静态和动态响应中都起着重要作用。包含大的挠曲行为对构件力和桥的挠曲影响有限。使用已开发的有限元模型进行参数研究。调查的结果是提供结构信息,这将有助于保存历史悠久的约翰·A·罗布林悬索桥,尽管开发的方法可以应用于各种斜拉桥。

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