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An analytical method for evaluating highway embankment responses with consideration of dynamic wheel-pavement interactions

机译:考虑轮辋-路面相互作用的公路路堤响应分析方法

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In this paper, a more realistic vehicle-road-ground coupling model is proposed to evaluate the dynamic responses of highway embankment with consideration of dynamic wheel-pavement interactions. The vehicle is modelled as a multi-degrees-of-freedom (MDOF) system, and the pavement and embankment are treated as two elastic layers resting on a poroelastic half-space soil medium. The dynamic wheel pavement force is considered by introducing a Hertzian contact spring between the wheel and the pavement. The vehicles and the road-ground subsystem are coupled by displacement compatibility at the wheel-pavement contact area. The dynamic stiffness matrix method is developed to address the road-ground system, and priority is given to a simple formulation based on the principle of spatial Fourier transforms that are compatible with good numerical efficiency and provide quick solutions. Using a FFT (Fast Fourier Transform) algorithm, the numerical results are derived by introducing two typical vehicles. The results show that two peaks of the vertical responses can be observed with increases in the vehicle speed and the wavelength of the pavement unevenness because of resonance in the coupling system. The dynamic wheel-pavement force makes an important contribution to the responses of the embankment, and the influences of the pavement unevenness parameters and pavement rigidity on the dynamic response of the embankment are also significant. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种更现实的车-地-地面耦合模型,以考虑公路-路面-路面的相互作用来评估公路路堤的动力响应。该车辆被建模为多自由度(MDOF)系统,路面和路堤被视为两个弹性层,位于多孔弹性半空间土壤介质上。通过在车轮和路面之间引入赫兹接触弹簧来考虑动态车轮路面力。车辆和路面-地面子系统通过车轮-路面接触区域的位移兼容性而耦合。开发了动态刚度矩阵方法以解决道路地面系统,并优先考虑基于空间傅立叶变换原理的简单公式,该公式与良好的数值效率兼容并提供快速的解决方案。使用FFT(快速傅立叶变换)算法,通过引入两种典型的车辆得出数值结果。结果表明,由于耦合系统的共振,随着车速和路面不平度波长的增加,可以观察到垂直响应的两个峰值。车轮动态路面力对路堤的响应做出了重要贡献,路面不平度参数和路面刚度对路堤动力响应的影响也很大。 (C)2016 Elsevier Ltd.保留所有权利。

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