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A Comparison of Concrete Pavement Responses Using Finite Element Method with Foundation Springs and 3-D Solid Elements

机译:基于基础弹簧和3-D固体元素的有限元法的混凝土路面响应比较

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The mechanistic analysis of rigid pavements is based on either closed-form solutions developed by Westergaard or numerical solutions based on the finite element (FE) modeling. Since most FE models consider that the concrete slabs are supported by a bed of spring elements, they may not accurately model the supporting layers and are limited in their ability to predict pavement responses with depth within the pavement foundation structure. A 3-D FE modeling tool developed at The University of Texas at El Paso can be used to analyze the response of jointed concrete pavements (JCPs) comprehensively under different geometric configurations, foundation models, temperature profiles, and traffic loads. The behavior of the underlying layers can be modeled either as a Winkler foundation, as a Vlasov foundation, or as a 3-D FE solid elastic foundation. This study presents an analysis of the behavior of rigid pavements as well as a comparison between the Winkler and 3-D Foundation models. In an effort to determine what model can simulate pavement behaviors more accurately, the results were compared with TxDOT's FPS21 stress analysis tool. The 3-D FE model provided an assessment of the critical stresses and strains for all pavement layers. Moreover, it was determined that 3-D FE method can be a useful tool to optimize pavement structures, in terms of layer material properties and PCC thickness, that handle maximum vehicle loading.
机译:刚性路面的机械分析基于基于有限元(FE)造型的Westergaard或数值溶液开发的任一闭合溶液。由于大多数FE模型认为混凝土板被弹簧元件的床支撑,因此它们可能无法准确地模拟支撑层,并且有限地预测路面基础结构内的深度的路面响应。在El Paso大学开发的3D FE模型工具,可用于在不同的几何配置,基础模型,温度曲线和交通负荷下全面分析连接混凝土路面(JCPS)的响应。底层的行为可以作为Winkler基础建模,作为vlasov基础,或作为3-D Fe固体弹性基础。本研究提出了对刚性路面的行为的分析以及Winkler和3-D基础模型之间的比较。为了确定模型可以更准确地模拟路面行为的努力,将结果与TXDOT的FPS21应力分析工具进行比较。 3-D FE模型提供了对所有路面层的临界应力和菌株的评估。此外,确定三维Fe方法可以是优化路面结构的有用工具,以处理最大车辆载荷的层材料性能和PCC厚度。

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