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Numerical modelling of flexible pavement incorporating cross-anisotropic material properties: Part Ⅰ: Surface circular loading

机译:包含各向异性材料特性的柔性路面的数值模拟:第一部分:表面圆形荷载

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摘要

Accurate numerical modelling of the behaviour of road pavement layers is an important requirement for the design and evaluation of road pavements. This modelling includes the prediction of pavement performance under the action of traffic loading and environmental factors. Depending on the complexity of the models, properties of pavement layers that may be considered are wide-ranging - from linear or nonlinear elastic to cross-anisotropic through to linear visco-elasto-plastic. Some properties, such as cross-anisotropic, are not only related to placement and compaction of the pavement layers, but are also inherent to the materials used. Other properties, such as linear visco-elasto-plastic, are specific to asphalt concrete and depend on the speed and magnitude of traffic loading, as well as the environment (temperature) in which the road is located. This paper presents basic theoretical derivation of numerical modelling of a flexible pavement considering cross-anisotropic material properties (with isotropic properties as a special case). The solutions derived in this paper are based on Hankel transformation of Navier's equations. The accuracy and validity of the solutions are verified through comparisons with a proprietary finite element method (FEM) package. For this purpose, a pavement structure composed of five main layers constituted by isotropic and cross-anisotropic (also known as transversely isotropic) material properties is analysed. In order to vary some of the layer properties with depth, the main layers were sub-layered, resulting in a 17-layer pavement system.
机译:精确的道路路面层数值模拟是道路路面设计和评估的重要要求。该模型包括在交通负荷和环境因素的作用下对路面性能的预测。取决于模型的复杂性,可以考虑的路面层的特性范围很广-从线性或非线性弹性到各向异性各向异性再到线性粘弹塑性。诸如交叉各向异性的某些特性不仅与铺装层的放置和压实有关,而且还与所用材料固有。其他特性(例如线性粘弹塑性)特定于沥青混凝土,并取决于交通负荷的速度和大小以及道路所在的环境(温度)。本文介绍了考虑了各向异性材料特性(以各向同性特性为特例)的柔性路面数值模型的基本理论推导。本文得出的解决方案基于Navier方程的Hankel变换。通过与专有的有限元方法(FEM)包进行比较,可以验证解决方案的准确性和有效性。为此目的,分析了由五个主要层组成的路面结构,这些主要层由各向同性和横各向异性(也称为横向各向同性)材料特性构成。为了随深度改变某些图层属性,将主图层细分为亚图层,从而形成17层的路面系统。

著录项

  • 来源
    《Civil Engineering》 |2017年第6appa期|22-27|共6页
  • 作者

    J W Maina; F Kawana; K Matsui;

  • 作者单位

    Department of Civil Engineering University of Pretoria Private Bag X20 Hatfield 0028 South Africa;

    Department of Bioproduction and Environment Engineering Faculty of Regional Environment Science Tokyo University of Agriculture 1-1-1 Sakuragaoka Setagaya-ku Tokyo, 156-8505 Japan;

    Department of Civil and Environmental Engineering Tokyo Denki University Hatoyama Hiki Satama, 350-0394 Japan;

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pavement; linear-elastic analysis; transversely isotropic; cross-anisotropy; isotropic; circular loading;

    机译:路面;线弹性分析;横向各向同性交叉各向异性各向同性循环加载;

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