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Finite element modeling of environmental effects on rigid pavement deformation

机译:环境对刚性路面变形的影响的有限元模拟

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In this study, finite element (FE)-based primary pavement response models are employed for investigating the early-age deformation characteristics of jointed plain concrete pavements (JPCP) under environmental effects. The FE-based ISLAB (two-and-one-half-dimensional) and EverFE (three-dimensional) software were used to conduct the response analysis. Sensitivity analyses of input parameters used in ISLAB and EverFE were conducted based on field and laboratory test data collected from instrumented pavements on highway US-34 near Burlington, Iowa. Based on the combination of input parameters and equivalent temperatures established from preliminary studies, FE analyses were performed and compared with the field measurements. Comparisons between field measured and computed deformations showed that both FE programs could produce reasonably accurate estimates of actual slab deformations due to environmental effects using the equivalent temperature difference concept.
机译:在这项研究中,基于有限元(FE)的主要路面响应模型用于研究环境影响下的接缝普通混凝土路面(JPCP)的早期变形特征。使用基于FE的ISLAB(二维和半维)和EverFE(三维)软件进行响应分析。基于从爱荷华州伯灵顿附近的US-34高速公路的人行道上收集的现场和实验室测试数据,对ISLAB和EverFE中使用的输入参数进行了敏感性分析。基于输入参数和初步研究确定的等效温度的组合,进行了有限元分析,并与现场测量结果进行了比较。现场测量的变形与计算的变形之间的比较表明,使用等效温差概念,这两个有限元程序都可以对由于环境影响而导致的实际板坯变形产生合理准确的估计。

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