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首页> 外文期刊>International Journal for Numerical and Analytical Methods in Geomechanics >A numerical model for flexible pavements rut depth evolution with time
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A numerical model for flexible pavements rut depth evolution with time

机译:柔性路面车辙深度随时间变化的数值模型

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A simplified method has been developed for the finite elements modelling of flexible pavements rut depth evolution with time. This method is based on the shakedown theory established by Zarka for metallic structures. The yield surface of Drucker-Prager and the plastic potential of Von Mises have been used. The simplified method determines straightforwardly the purely elastic state or the elastic shakedown state or the plastic shakedown state. The calibration of the simplified method with two unbound granular materials for roads under repeated loads triaxial tests, is explained. Then, a finite elements modelling of a flexible pavement has been carried out. Calculations of 2D and 3D have been performed and rut depth evolutions with time are shown, which underline the capabilities of the model to take into account the accumulation of plastic strains along the loading cycles.
机译:已经开发出一种简化的方法来对柔性路面车辙深度随时间变化的有限元建模。此方法基于Zarka为金属结构建立的组合理论。已经使用了Drucker-Prager的屈服面和Von Mises的可塑性。简化方法直接确定纯弹性状态或弹性减震状态或塑性减震状态。解释了在反复荷载三轴试验中使用两种未结合的粒状材料对道路进行简化方法的校准。然后,进行了柔性路面的有限元建模。已经执行了2D和3D的计算,并显示了车辙深度随时间的变化,这强调了模型考虑沿加载周期累积的塑性应变的能力。

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