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Simulation of early-age Jointed Plain Concrete Pavement deformation under environmental loading using the Finite Element method

机译:有限元法模拟环境荷载作用下早缝节理混凝土路面的变形

摘要

The objective of this study was to quantify the early-age Portland Cement Concrete (PCC) slab deformations due to pure environmental loading at critical periods immediately following construction. A newly constructed Jointed Plain Concrete Pavement (JPCP) section on highway US-30 near Marshalltown, Iowa, USA was instrumented to monitor the pavement response to variations in temperature and moisture during the first seven days after construction in the summer of 2005. Temperature and humidity sensors installed within the test sections monitored the variations in temperature and moisture. The PCC slab deformations were measured using the Linear Variable Differential Transducers (LVDTs) installed at corner, edge, and center of the PCC slab. The surface profiles were measured along the diagonal and transverse directions of the slab using an inclinometer-profiler. The measurements revealed the zero-gradient temperature deformation in the form of slab curling due to built-in temperature difference. Two-dimensional (2-D) and three-dimensional (3-D) Finite Element (FE) models were employed to characterize the zero-gradient temperature deformation. Comparisons between the field-measured and the FE-computed slab deformations are presented in this paper.
机译:这项研究的目的是量化在施工后紧随关键时期纯净环境载荷引起的早期波特兰水泥混凝土(PCC)楼板变形。在美国爱荷华州马绍尔敦附近的US-30高速公路上新建的节理普通混凝土路面(JPCP)部分被用来监测2005年夏季施工后的前7天路面对温度和湿度变化的响应。温度和湿度安装在测试区域内的湿度传感器监测温度和湿度的变化。使用安装在PCC平板拐角,边缘和中心的线性可变差动传感器(LVDT)测量PCC平板的变形。使用倾斜仪-轮廓仪沿着平板的对角线和横向方向测量表面轮廓。测量结果显示由于内置温差导致的板坯卷曲形式的零梯度温度变形。二维(2-D)和三维(3-D)有限元(FE)模型用于表征零梯度温度变形。本文介绍了现场测量和有限元计算的平板变形之间的比较。

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