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Ride comfort of high-speed trains travelling over railway bridges

机译:穿越铁路桥梁的高速列车的乘坐舒适性

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The ride comfort of high-speed trains passing over railway bridges is studied in this paper. A parametric study is carried out using a time domain model. The effects of some design parameters are investigated such as damping and stiffness of the suspension system and also ballast stiffness. The influence of the track irregularity and train speed on two comfort indicators, namely Sperling's comfort index and the maximum acceleration level are also studied. Two types of railway bridges, a simple girder and an elastically supported bridge are considered. Timoshenko beam theory is used for modelling the rail and bridge and two layers of parallel damped springs in conjunction with a layer of mass are used to model the rail-pads, sleepers and ballast. A randomly irregular vertical track profile is modelled, characterized by its power spectral density (PSD). The 'roughness' is generated for three classes of tracks. Nonlinear Hertz theory is used for modelling the wheel-rail contact. The influences of some nonlinear parameters in a carriage-track-bridge system, such as the load-stiffening characteristics of the rail-pad and the ballast and that of rubber elements in the primary and secondary suspension systems, on the comfort indicators are also studied. Based on Galerkin's method of solution, a new analytical approach is developed for the combination between the rigid and flexural mode shapes, which could be used not only for elastically supported bridges but also other beam-type structures.
机译:本文研究了高速列车通过铁路桥梁时的乘坐舒适性。使用时域模型进行参数研究。研究了一些设计参数的影响,例如悬架系统的阻尼和刚度,以及压载刚度。还研究了轨道不平顺和列车速度对两个舒适度指标,即斯珀林的舒适度指数和最大加速度水平的影响。考虑了两种类型的铁路桥梁,即简单的梁和弹性支撑的桥梁。蒂莫申科梁理论用于铁路和桥梁建模,两层平行阻尼弹簧与一层质量一起用于铁路垫板,轨枕和道ast。对随机不规则的垂直轨道轮廓进行建模,其特征在于其功率谱密度(PSD)。 “粗糙度”是针对三类轨道生成的。非线性赫兹理论用于建模轮轨接触。还研究了车厢-轨道-桥梁系统中的一些非线性参数,例如,垫块和压载物的载荷刚度特性以及一级和二级悬架系统中的橡胶元件的载荷刚度特性,对舒适性指标的影响。 。基于Galerkin的求解方法,开发了一种新的解析方法,用于刚体和挠性模态形状的组合,不仅可以用于弹性支撑的桥梁,而且可以用于其他梁型结构。

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