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Dynamic inelastic analysis of 3-D flexible pavements under moving vehicles: A unified FEM treatment

机译:运动车辆下3D柔性路面的动态非弹性分析:统一FEM处理

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The dynamic response of flexible road pavements to moving vehicles is numerically obtained by the time domain finite element method under three-dimensional conditions with the aid of the commercial program ANSYS. The pavement structure is modeled as a system of three layers With the top one (asphalt concrete) exhibiting viscoelastic or viscoplastic and the other two elastic or elastoplastic Drucker-Prager material behavior. The dimensions of the pavement domain, its degree of discretization, its kind of boundaries (rollers everywhere) and the appropriate time step are selected to provide solutions of acceptable accuracy in an efficient manner. Symmetry considerations are also taken into account. The moving with constant speed distributed loads (wheels) of the vehicle are simulated by assigning time dependent load values at all the pavement surface nodes along the vehicle path, which are activated at the time it takes for every load to travel the distance from the origin to every node's location. Comparisons of the dynamic response results in terms of deflections, stresses and strains of the above inelastic models against those corresponding to elastic material behavior under moving or static loads as well as those coming from two field experiments are made and useful practical conclusions are drawn. (C) 2016 Elsevier Ltd. All rights reserved.
机译:借助于商业程序ANSYS,在三维条件下,通过时域有限元方法以数值方式获得了柔性路面对移动车辆的动态响应。路面结构被建模为三层系统,顶层(沥青混凝土)表现出粘弹性或粘塑性,而另外两个表现出Drucker-Prager材料的弹性或弹塑性。选择路面区域的尺寸,离散程度,边界类型(到处都是滚子)和适当的时间步长,以有效的方式提供可接受的精度解决方案。还考虑对称性。通过在沿车辆路径的所有人行道表面节点上分配与时间相关的载荷值来模拟车辆在恒速分布载荷(车轮)下的运动,该值在每次载荷从原点行进一定距离时被激活到每个节点的位置。将上述非弹性模型的挠度,应力和应变与对应于在动载荷或静态载荷下的弹性材料行为的动力学响应以及来自两个现场试验的动力学响应进行了比较,并得出了有用的实用结论。 (C)2016 Elsevier Ltd.保留所有权利。

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