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Moisture Variation in Expansive Subgrade Through Field Instrumentation and Geophysical Testing

机译:膨胀路基通过现场仪器和地球物理检测的水分变化

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Seasonal climatic variations in subgrade soil affect pavement responses and can reduce pavement serviceability. In addition to causing shrinkage and swelling in expansive subgrade, variations in moisture suction may alter the material properties of soil, which ultimately affect pavement performance. The current study monitored the seasonal variation of subgrade moisture content, rainfall, and pavement deformation of a section oveT State Highway 342, in Dallas, Texas. Moisture sensors were installed at different depths up to 4.5 m. The soil was found to be highly plastic clay (CH) in the selected site. In addition to acquiring real-time moisture data from sensors, geophysical testing was also conducted on the slope of the pavement. Electrical Resistivity Imaging (ERI) was carried out at the slope of the instrumented pavement section to observe the moisture flow at the edge of the pavement. Based on the field monitoring data, moisture variation ranged from 5% to 14%, with higher moisture contents correlating with rainfall events. While moisture sensors provided point information, resistivity imaging yielded a continuous portrayal of subsurface moisture flow. Furthermore, rainfall-associated deformation of the pavement was monitored. Based on the monitored data, it was observed that pavement deformation varied with rainfall. A total deformation of 38 mm was recorded over the monitoring period.
机译:在路基土气候的季节性变化影响的路面反应,可以降低路面的适用性。除了引起的收缩和在膨胀路基肿胀,水分吸入的变化可能改变土壤的材料性质,其最终影响路面性能。目前的研究监测路基含水量,降雨和部分额在国道342路面变形的季节变化,在得克萨斯州达拉斯市。湿度传感器分别安装在不同的深度高达4.5微米。土壤被认为是在所选择的部位高塑性黏土(CH)。除了获取来自传感器的实时湿度数据,地球物理测试还对路面的斜率进行。电阻率成像(ERI)的混合物在所述仪表化路面部分以观察在路面的边缘处的湿气流的斜率进行。基于现场监测数据,水分变化范围为5%至14%,具有较高的水分含量与降雨事件相关联。而湿气传感器提供的点的信息,电阻率成像产生地下的水分流动的连续写照。此外,路面的雨量相关变形监测。基于所监控的数据,可以观察到路面变形变化与降雨。 38毫米的总变形被记录在监视周期。

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