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A Parametric Study of Jointed Plain Concrete Pavement Using Finite Element Modeling

机译:使用有限元建模的接合普通混凝土路面参数研究

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Concrete pavements face various types of distresses such as longitudinal, transverse, and joint cracking due to traffic loading and thermal stresses. The objective of this investigation was to develop Three-Dimensional Finite-Element Models (3D-FEM) to assess the performance of dowel in Jointed Plain Concrete Pavement (JPCP).Finite-element modeling is a powerful tool that can be used for the simulation of the structural response of pavements under the effects of different loading condition. Most of the previous studies ignored important factors, including the combined effect of dynamic axle loads and thermal gradient. Overcoming the shortcomings of the previous studies, this study investigated the pavement response under the effect of some model parameters. The result of the study was verified by a comparison with field measurements. Results also showed that the combined negative gradient and axle loads located at the transverse joint subject the top of mid-slab, to high tensile stress that may explain the initiation of top-down cracks. These stresses increase under corner loading when the slab length is increased. In general, the study presented that the developed 3D-FEM is suitable for identifying the effect of different design features including pavement geometry, material properties, thermal gradients, and axle load and configuration on the structural response of rigid pavements.
机译:混凝土路面面临各种类型的椎关系,如纵向,横向,以及由于交通负荷和热应力为接合裂缝。本研究的目的是开发三维有限元模型(3D-FEM),以评估销钉在连接普通混凝土路面(JPCP)中的性能.Finite-Element建模是一种强大的工具,可用于模拟不同负载条件影响下路面的结构响应。以前的大多数研究忽略了重要因素,包括动态轴载荷和热梯度的综合影响。克服了以前研究的缺点,本研究调查了一些模型参数的效果下的路面响应。通过与现场测量的比较验证了该研究的结果。结果还表明,位于横向关节主体的组合负梯度和轴载荷的中间板顶部,高度拉伸应力,可以解释自上而下的裂缝的启动。当平板长度增加时,这些压力在角负载下增加。通常,该研究表明,发达的3D-FEM适用于识别不同设计特征的效果,包括路面几何形状,材料特性,热梯度和轴承载荷以及刚性路面结构响应的构造。

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