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Dynamics of a beam on a bilinear elastic foundation under harmonic moving load

机译:谐波移动负荷下双线性弹性基础梁的动态

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摘要

The present paper is concerned with the numerical modelization of the transient dynamic response of a simply supported Euler-Bernoulli elastic beam resting on a Winkler-type foundation, under the action of a transverse concentrated load, moving at a constant velocity along the beam, displaying an harmonic-varying magnitude in time. The elastic foundation, assumed as homogeneous in space, behaves according to a bilinear constitutive law, characterized by two different stiffness coefficients in compression and in tension. A finite element method approach coupled with a direct integration algorithm is developed for efficiently tracing the nonlinear dynamic response of the beam-foundation system. An original automated procedure is set, as being apt to resolve all required space/time discretization issues. Extensive parametric numerical analyses are performed to investigate how the frequency of the harmonic moving load amplitude and the ratio between the foundation's moduli in compression and in tension affect the so-called critical velocities of the moving load, leading to high transverse beam deflections. Analytical interpolating expressions are proposed and fitted for the achieved two-branch critical velocity trends. The present outcomes shall reveal potential practical implications in scenarios of contemporary railway engineering, especially in terms of lowering down the admissible high-speed train velocities, as for structural requirement or preventing potential passenger discomfort.
机译:本文涉及在横向浓缩负载的动作下搁置在Winkler型基础上的简单支持的Euler-Bernoulli弹性梁的瞬态动力响应的数值建模,在横向集中载荷的作用下,沿着梁的恒定速度移动,显示谐波不同的幅度。假设在空间中具有均匀的弹性基础根据双线性本构规定的行为,其特征在于,压缩和张力的两个不同的刚度系数。开发了一种与直接集成算法耦合的有限元方法,以有效地跟踪光束基础系统的非线性动态响应。设置了原始自动化程序,因为易于解决所有所需的空间/时间离散化问题。进行广泛的参数数值分析以研究谐波移动负载幅度的频率和基础的压缩中的模型与张力之间的比率如何影响移动负载的所谓的临界速度,导致高横梁偏转。提出分析内插表达式,并为实现的双分支临界速度趋势拟合。本结果应揭示当代铁路工程方案中的潜在实际影响,特别是在降低可接受的高速列车速度方面,用于结构要求或防止潜在的乘客不适。

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  • 来源
    《Acta Mechanica》 |2018年第10期|共25页
  • 作者单位

    Univ Bergamo Dept Engn &

    Appl Sci Viale G Marconi 5 I-24044 Dalmine BG Italy;

    Univ Bergamo Dept Engn &

    Appl Sci Viale G Marconi 5 I-24044 Dalmine BG Italy;

    Univ Lisbon Inst Super Tecn CERIS Ave Rovisco Pais P-1049001 Lisbon Portugal;

    Univ Lisbon Inst Super Tecn CERIS Ave Rovisco Pais P-1049001 Lisbon Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 力学;
  • 关键词

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