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Dynamic Stress Responses of Rough Pavement Resting on Layered Poroelastic Half-Space under Moving Traffic Load

机译:移动交通负荷下粗糙路面粗糙路面的动态应力响应

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To investigate the influence of pavement roughness on the dynamic stresses under traffic vehicles, a pavement resting on a layered poroelastic half-space is studied. The shape of pavement roughness is treated as a sine function of irregularity while the vehicle is modeled as a quarter-vehicle vibration system with two degrees of freedom (DOF). Based on the Biot's dynamic poroelastic theory, the time domain solutions of the homogeneous poroelastic half-space are obtained by Fourier transforms and inverse Fourier transforms. The time domain solutions of the layered poroelastic half-space are then presented using the transfer-matrix method. By regarding the top layer as a thin-plate and using the Kirchhoff s hypotheses, the vertical displacement and stress of the thin plate are calculated. The time domain solutions of the rigid pavement-layered poroelastic ground system are obtained based on the compatibility condition at the interface of the pavement-ground system. The dynamic effects of the load velocity, the wave length and the thickness of the plate are discussed, respectively. It is found that the roughness of the top plate significantly affects the dynamic stress response in the poroelastic layers when the vehicle velocity is below a critical value. In addition, the dynamic impact coefficient depends on the wave length of die roughness as well as the amplitude. The dynamic stress response caused by the roughness of pavement is evident and different from the dynamic stress response caused by vehicle weight. This study is intended to provide potential guidance for the design of a rigid pavement system.
机译:为了调查路面粗糙度对交通车辆动态应力对动态应力的影响,研究了搁置在层状孔弹性半空间上的路面。路面粗糙度的形状被视为不规则的正弦函数,而车辆被建模为具有两度自由度(DOF)的四分之一车辆振动系统。基于BIOS的动态多孔塑化理论,通过傅里叶变换和逆傅里叶变换获得均匀孔弹性半空间的时域解。然后使用转移矩阵方法呈现层状孔弹性半空间的时域溶液。通过将顶层作为薄板并使用Kirchhoff S假设,计算薄板的垂直位移和应力。基于路面接地系统的界面处的兼容性条件获得刚性路面层叠孔弹性接地系统的时域溶液。讨论了负载速度,波长和板的厚度的动态效果。发现当车辆速度低于临界值时,顶板的粗糙度显着地影响了多孔弹性层中的动态应力响应。另外,动态冲击系数取决于模具粗糙度以及幅度的波长。路面粗糙度引起的动态应力响应是明显的,与车辆重量引起的动态应力反应不同。本研究旨在为设计刚性路面系统的设计提供潜在的指导。

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