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Calculation of the dynamic response of a viscoelastic railway structure based on a quasi-stationary approach

机译:基于准平稳方法的粘弹性铁路结构动力响应计算

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A semi-analytical method has been developed for computing the dynamic response of railways composed of viscoelastic layers under moving loads. One of the aims of this new approach is to be able to simulate railways incorporating asphalt materials. These materials are increasingly used or highly considered for construction projects. We have modeled the mechanical behavior of bituminous mixes with the Huet– Sayegh thermo-sensitive viscoelastic law that is specifically intended for such materials. This method, implemented in a numerical program, is based on a quasi-stationary approach, so that time is not a specific factor in the solution. The required calculation time is therefore small, for the convenience of parametric studies. The capability of this method is proved with a numerical example that provides several validation points and illustrates at the same time the temperature effect on the response of a railway including an asphalt layer.
机译:已经开发出一种半分析方法来计算在移动载荷下由粘弹性层组成的铁路的动力响应。这种新方法的目的之一是能够模拟包含沥青材料的铁路。这些材料在建筑项目中越来越多地被使用或被高度考虑。我们使用专门针对此类材料的Huet-Sayegh热敏粘弹性定律对沥青混合料的力学行为进行了建模。此方法在数值程序中实现,基于准平稳方法,因此时间不是解决方案中的特定因素。因此,为方便参数研究,所需的计算时间很小。数值示例证明了该方法的功能,该示例提供了多个验证点,并同时说明了温度对包括沥青层的铁路响应的影响。

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