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Dynamic response of bridges to moving trains: A study on effects of random track irregularities and bridge skewness

机译:桥梁对移动列车的动力响应:随机轨道不平顺和桥梁偏斜的影响研究

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This paper describes research undertaken to consider the dynamic responses of an existing railway bridge subjected to moving trains. The study investigated dynamic effects produced by different service trains, as well as the influence of random track irregularities and bridge skewness. This research was carried out using the dynamic bridge-train interaction (DBTI) model developed and previously verified by the authors. Generally, dynamic amplification of displacements was found to be moderate and compared favourably with recommendations of current design codes. The use of complex numerical models for bridge-train dynamics produced detailed dynamic responses; such results may be quite beneficial to bridge owners in the assessment of existing bridges which exhibit excessive dynamic responses. Random track irregularities were found to have minor effects on the dynamic amplification factors and bridge accelerations; however, lateral responses of the bridge were considerably affected by irregularities. Effects of irregularities were more pronounced in train responses; generally, the train responses increased with decreasing track profile quality. Bridge skewness was found to increase fundamental natural frequency of the bridge; this leads to a shift in the dynamic amplification factor towards higher speeds and alterations of its magnitude. Three-dimensional models were found necessary for accurate predicting of this response.
机译:本文介绍了为考虑现有列车在行驶中的铁路桥梁的动力响应而进行的研究。该研究调查了不同服务列车产生的动力效应,以及随机轨道不平顺和桥梁偏斜的影响。这项研究是使用作者先前开发并验证的动态桥-火车相互作用(DBTI)模型进行的。通常,发现位移的动态放大是适度的,可以与当前设计规范的建议相比较。使用复杂的数值模型进行桥梁列车动力学可以产生详细的动力响应。这样的结果对于桥梁所有者在评估表现出过多动态响应的现有桥梁时可能是非常有益的。发现随机轨道不规则对动态放大因子和桥梁加速度影响不大。但是,桥梁的横向响应受不规则性的影响很大。火车反应中不规则的影响更加明显。通常,列车响应随着轨道轮廓质量的降低而增加。发现桥梁偏斜会增加桥梁的基本固有频率。这导致动态放大系数向更高的速度转移,并改变其幅度。发现了精确预测此反应所必需的三维模型。

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