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The Analysis of Vibration for High-Speed Train-Ballastless Track-Bridge base on a hybrid FE-SEA method

机译:杂交Fe-Sea法对高速火车缩进轨道桥梁振动分析

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In this study, the methods for combining statistical energy analysis (SEA) and the finite element method (FEM) for the vibration analysis of structures are studied. Using the two methods simultaneously isn't entirely extend a primarily low frequency method, the finite element method, and high frequency method, SEA, to the mid frequency region are addressed. This approach is intended to extend the frequency range for a FEM based vibration analysis. A new finite element elemental for elevated slab ballastless track is proposed in which the new model can be used for modeling the track structural constituents of elevated slab ballastless track. Using finite element method and Hamilton theory, the coupled equation of vehicle-track-bridge can be established. In calculating example, both the rail displacement induced by single four-layer beam model. Specifically, it showed that the method yields very good result and high performance in the numerical example of previous research.
机译:在该研究中,研究了用于组合统计能量分析(海)和有限元方法(FEM)的结构的方法。同时使用这两种方法并不完全扩展到主要的低频方法,有限元方法和高频方法,海,到中频区域。该方法旨在扩展基于有限元的振动分析的频率范围。提出了一种用于高升高的板坯缩回轨道的有限元元素,其中新模型可用于建模升高的板坯碴轨道的轨道结构成分。使用有限元法和汉密尔顿理论,可以建立车辆轨道桥的耦合方程。在计算示例中,由单个四层光束模型引起的轨道位移。具体而言,它表明该方法在先前研究的数值例子中产生了非常好的结果和高性能。

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