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首页> 外文期刊>The international journal of pavement engineering >Multi-scale computational model for design of flexible pavement - part III: two-way coupled multi-scaling
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Multi-scale computational model for design of flexible pavement - part III: two-way coupled multi-scaling

机译:柔性路面设计的多尺度计算模型-第三部分:双向耦合多尺度

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摘要

A computational multi-scale procedure for designing flexible roadways is developed in this part, the third of a three-part series. In this study, a two-way coupled multi-scale algorithm was developed and utilised to predict the effects on pavement performance caused by variations in local and global design variables. The model is constructed by utilising the finite element method at two simultaneous and two-way coupled length scales, thereby creating a multi-scale algorithm that is capable of accounting for the effects of variations in design parameters on both length scales. Energy dissipation mechanisms such as viscoelasticity in the asphalt mastic, plasticity in the base layer and crack propagation in the asphalt concrete are incorporated within the model for the purpose of predicting permanent deformations in typical roadways subjected to cyclic tyre loadings. The algorithm is briefly described herein, including the experimental properties required to deploy the computational scheme for the purpose of pavement design. The algorithm is subsequently utilised to predict the effects on pavement performance of variations in design variables on the global length scale (metres) such as asphalt concrete layer thickness and base layer yield point as well as design variables on the local length scale (centimetres) such as aggregate volume fraction and asphalt mastic fracture toughness. These demonstrative examples elucidate the power of this new technology for the purpose of designing more sustainable roadways.
机译:这是一个由三部分组成的系列中的第三部分,开发了用于设计柔性道路的计算多尺度程序。在这项研究中,开发了一种双向耦合多尺度算法,并用于预测局部和全局设计变量的变化对路面性能的影响。通过在两个同时和双向耦合的长度尺度上利用有限元方法构建模型,从而创建了一种多尺度算法,该算法能够解决两个长度尺度上的设计参数变化的影响。为了预测典型轮胎在承受周期性轮胎载荷的情况下的永久变形,模型中包含了能量耗散机制,例如沥青胶泥中的粘弹性,基层的可塑性和沥青混凝土中的裂纹扩展。本文简要介绍了该算法,包括为铺装设计目的部署计算方案所需的实验属性。该算法随后被用来预测诸如沥青混凝土层厚度和基础层屈服点之类的设计变量在全球长度尺度(米)上的变化对路面性能的影响,以及诸如局部长度尺度(厘米)之类的设计变量。作为骨料的体积分数和沥青胶泥的断裂韧性。这些示范性例子阐明了这项新技术在设计更具可持续性的道路方面的强大功能。

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