Finite element analysis of the span structures dynamics under a moving load influence

A. Barakat
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Abstract

Introduction: Providing the span structure durability under dynamic influences is one of the main tasks in their design and construction. This task is accomplished mainly by studying the dynamic behavior of railway bridges when a train is moving. The paper considers the study of building a span structure finite element model under dynamic influences caused by a moving load on the main beam of railway bridge crossings. Methods: Construction members are designed by the finite element method in the Midas civil software package using rod finite elements. The dynamical analysis is carried out by the direct dynamic method in a linear setting. Fixed loads on the structure are transferred to the mass to meet the requirements of dynamic analysis. The rail is designed as a linear elastic Bernoulli-Euler beam of finite length, and the bridge is designed as a series of multi-span continuous Bernoulli-Euler beams. The interaction of the system (train — track — bridge) is designed by elastic elements. Results: An algorithm for calculating span structures under dynamic influences was created and a dynamic response of the structure was built. As a result of all the above, the dependences of the greatest vertical dynamic displacement and dynamic acceleration on time for different speeds were obtained. Discussion: This work made it possible to understand the principle of creating a linear mathematical model of the dynamic interaction of the system (bridge — train — railway) by the finite element method and presented an algorithm for calculating span structures under dynamic influences. The article showed the influence of train speed on the dynamic behavior of span structures, so it is necessary to take into account this influence on the parameters of the stress-strain state (vertical displacements).
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移动载荷影响下跨度结构动力学的有限元分析
简介确保跨度结构在动态影响下的耐久性是铁路桥梁设计和施工的主要任务之一。这项任务主要通过研究火车行驶时铁路桥梁的动态行为来完成。本文研究了在铁路跨线桥主梁移动荷载引起的动态影响下建立跨线桥结构有限元模型的问题。 研究方法在 Midas 土木软件包中使用杆件有限元法设计建筑构件。动态分析采用线性直接动态法。结构上的固定载荷被转移到质量上,以满足动态分析的要求。轨道设计为有限长度的线性弹性伯努利-欧拉梁,桥梁设计为一系列多跨连续伯努利-欧拉梁。系统(列车-轨道-桥梁)的相互作用由弹性元件设计。 结果:创建了动态影响下跨度结构的计算算法,并建立了结构的动态响应。综上所述,得出了不同速度下最大垂直动态位移和动态加速度与时间的关系。 讨论:这项工作使我们能够理解通过有限元方法建立系统(桥梁-火车-铁路)动态相互作用线性数学模型的原理,并提出了一种计算动态影响下跨度结构的算法。文章显示了火车速度对跨度结构动态行为的影响,因此有必要考虑这种影响对应力应变状态参数(垂直位移)的影响。
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