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Two-Dimensional Software for Analysing Mechanical Fields in Elastic Cracked Pavements

机译:用于分析弹性破裂路面中机械场的二维软件

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This paper presents an engineering tool for the rapid analysis of the mechanical fields in cracked pavements. The pavement structure is reduced to three elastic and homogeneous equivalent layers resting on a soil. The soil is modelled by one layer, named the shear layer, connected to Winkler's springs in order to ensure the transfer of shear stresses between the pavement structure and the springs. The whole fourlayer system (three pavement layers connected to the shear layer) is modelled using a simplified model (M4-5n) developed for the analysis of delamination in composite materials. For the case of two-dimensional plane strain, a system of twelve equations is written analytically. These second order differential equations are solved by a finite difference method (Newmark). In the case of a pavement containing a vertical cracking through one layer, the half-analytical solutions are obtained in less than one second of CPU. This tool, called M4-5nW, thus allows parametric studies such as the distribution of mechanical fields (especially interface stresses) as a function of the load position more or less distant from the vertical crack. This new modelling shows its effectiveness compared to the use of a conventional finite element code.
机译:本文介绍了在破获路面机械领域的快速分析的工程工具。路面结构减少到三个弹性和均匀的等效层搁在土壤中。土是由一层建模,命名为剪切层,以确保剪切应力的路面结构和弹簧之间的传输连接到Winkler的弹簧。整个系统fourlayer(3路面层连接到剪切层)使用分层的复合材料中的分析开发出一种简化的模型(M4-5n)建模。对于二维平面应变的情况下,12个方程系统被解析写入。这些二阶微分方程是由有限差分法(纽马克)解决。在包含纵裂纹通过一层路面的情况下,在CPU的小于一秒得到半解析解。这个工具,称为M4-5nW,因此允许参数研究如机械场的分布(特别是界面应力)为从垂直裂纹负载位置或多或少遥远的函数。这种新的模型显示相比,使用的常规有限元代码的有效性。

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