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首页> 外文期刊>Journal of Sound and Vibration >A three-dimensional modal theory-based Timoshenko finite length beam model for train-track dynamic analysis
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A three-dimensional modal theory-based Timoshenko finite length beam model for train-track dynamic analysis

机译:基于三维模态理论的Timoshenko有限长度梁模型,用于火车轨道动态分析

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An efficient Timoshenko beam model of finite length is developed for train-track interaction dynamics. The rail is reduced to the present beam model and its vertical and lateral bending, shear, and torsion deformations are considered. A moving control volume attached to the train is introduced, which encloses the reduced rail, and a reference coordinate system is established in the reduced rail at the left end. The arbitrary Lagrangian-Eulerian (ALE) method and the modal superposition method (MSM) are adopted, and governing equations of the reduced rail model are derived by Lagrange's equations. Owing to the advantages of the MSM, the number of degrees of freedom of the current formulation is clearly reduced and its efficiency is greatly improved. A long non-ballasted track of finite length subjected to a constant moving load is first considered, and results from the present beam model are in good agreement with those from the traditional finite element method. A three-dimensional train-track interaction problem with consideration of a ballasted track is further studied. Results from the present beam model are compared with those from the commercial software Simpack where the MSM is used, and they are in good agreement with each other. Since the number of modes in the present beam model is much fewer than that in Simpack, the present beam model is more efficient than that in Simpack. It is found that the number of shape functions and the length of the beam model used in calculation can significantly affect the accuracy and efficiency of the present beam model, which should be taken into consideration. The current beam formulation is independent of the moving velocity of the train and can handle train-track dynamics with variable train velocities. The current beam formulation is straightforward and can be easily extended in various complex applications. It is more suitable for dealing with long-term train-track interaction dynamics. (C) 2020 Elsevier Ltd. All rights reserved.
机译:为火车轨道交互动态开发了有限长度有限长度的高效TIMOSHENKO光束模型。将轨道减小到本梁模型及其垂直和横向弯曲,剪切和扭转变形。引入附着在列车上的移动控制体积,其包围轨道,并且在左端的缩小轨道中建立参考坐标系。采用任意拉格朗日 - 欧拉(ALE)方法和模态叠加方法(MSM),并通过拉格朗日方程来源的减轨模型的控制方程。由于MSM的优点,显然减少了当前配方的自由度的数量,其效率大大提高。首先考虑经受恒定移动载荷的长度的有限长度的长的非镇流轨道,并且本光束模型的结果与传统有限元方法的结果吻合良好。进一步研究了考虑镇流器轨道的三维火车轨道相互作用问题。将本梁模型的结果与来自使用MSM的商业软件棉皮的结果进行比较,并且它们与彼此吻合良好。由于本光束模型中的模式的数量少于SIMPACK中的模式,因此本光束模型比SIMPACK更有效。结果发现,在计算中使用的光束模型的形状功能的数量和光束模型的长度可以显着地影响本梁模型的准确性和效率,这应该考虑到这一点。电流光束配方与火车的移动速度无关,可以处理具有可变列车速度的火车轨道动态。电流光束配方是简单的,并且可以在各种复杂应用中容易地延伸。更适合处理长期列车轨道交互动态。 (c)2020 elestvier有限公司保留所有权利。

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