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Dynamic Response of a Rigid Pavement Plate Based on an Inertial Soil

机译:基于惯性土的刚性路面板的动力响应

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摘要

This work presents the dynamic response of a pavement plate resting on a soil whose inertia is taken into account in the design of pavements by rational methods. Thus, the pavement is modeled as a thin plate with finite dimensions, supported longitudinally by dowels and laterally by tie bars. The subgrade is modeled via Pasternak-Vlasov type (three-parameter type) foundation models and the moving traffic load is expressed as a concentrated dynamic load of harmonically varying magnitude, moving straight along the plate with a constant acceleration. The governing equation of the problem is solved using the modified Bolotin method for determining the natural frequencies and the wavenumbers of the system. The orthogonal properties of eigenfunctions are used to find the general solution of the problem. Considering the load over the center of the plate, the results showed that the deflections of the plate are maximum about the middle of the plate but are not null at its edges. It is therefore observed that the deflection decreased 18.33 percent when the inertia of the soil is taken into account. This result shows the possible economic gain when taking into account the inertia of soil in pavement dynamic design.
机译:这项工作提出了一种靠在土壤上的路面板的动力响应,在通过合理方法设计路面时要考虑惯性。因此,人行道被建模为具有有限尺寸的薄板,并由销钉纵向支撑,并由拉杆横向支撑。通过Pasternak-Vlasov型(三参数型)基础模型对路基进行建模,移动的交通负荷表示为谐波大小变化的集中动态负荷,以恒定的加速度沿板块直线移动。该问题的控制方程使用改进的Bolotin方法求解,以确定系统的固有频率和波数。本征函数的正交特性用于找到问题的一般解。考虑到板中心的载荷,结果表明板的挠度在板的中部附近最大,但在板的边缘不为零。因此观察到,当考虑到土壤的惯性时,挠度减小了18.33%。该结果表明在路面动力设计中考虑土壤惯性时可能获得经济收益。

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