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首页> 外文期刊>Journal of Sound and Vibration >A theoretical investigation on influences of slab tracks on vertical dynamic responses of railway viaducts
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A theoretical investigation on influences of slab tracks on vertical dynamic responses of railway viaducts

机译:平板轨道对铁路高架桥竖向动力响应影响的理论研究

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A railway viaduct model consisting of infinite spans of elastically-supported girders carrying a slab track of infinite length is established to investigate the influence of the slabs on the vertical dynamic response of the viaduct, when a moving harmonic point load or a moving sprung wheel is applied. The infinite rail, the discontinuous slabs and girders of identical span lengths are idealized as Euler-Bernoulli beams. The rail fasteners, the cushion layer beneath the slab and the elastic bearings at the girder supports are represented by discretely distributed springs of hysteretic damping. Due to the repetitive nature of the girders, the model can be divided into periodic three-beam units by the span length of the girder, and then solved analytically in the frequency domain using the property of periodic structure. Besides the first natural frequency of the girder with elastic bearings, it is found that the resonance frequency of the slab on the cushion layer has a significant influence on the dynamic response of the track and the girder. Parametric excitations due to the moving wheel periodically passing the discontinuous slabs contribute significantly to the wheel/rail interactions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:建立了包含无限跨度的无限跨度承载板条轨道的弹性支撑大梁的铁路高架桥模型,以研究当移动谐波点载荷或移动的弹力轮作用时,平板对高架桥垂直动力响应的影响。应用。无限长的钢轨,不连续的楼板和相同跨距的大梁理想化为Euler-Bernoulli梁。轨道紧固件,平板下方的缓冲层以及大梁支撑处的弹性轴承由离散分布的滞回阻尼弹簧表示。由于大梁的重复性,可以通过大梁的跨度将模型划分为周期性三梁单元,然后利用周期性结构的性质在频域中进行解析求解。除了具有弹性轴承的梁的第一固有频率外,还发现板在缓冲层上的共振频率对轨道和梁的动力响应具有重要影响。由于动轮周期性地经过不连续的平板而引起的参量激励极大地促进了轮/轨的相互作用。 (C)2016 Elsevier Ltd.保留所有权利。

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