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Evaluating pavement performance through smart monitoring - effects of soil moisture, temperature and traffic

机译:通过智能监控评估路面性能-土壤湿度,温度和交通的影响

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摘要

This paper presents the findings from a research conducted to investigate the effects of moisture and environmental conditions on the mechanical behaviour of granular pavements. Analysis was conducted on data collected from state-of-the-art instrumentation on two field pavement sites located in Sunshine Coast, Australia. The sites were monitored over three years, and daily temperature, moisture and strain values were analysed. Large tensile strains in the basecourse occurred when moisture increased and temperature decreased at the end of day. This result indicated that the change in soil pore pressure due to moisture and temperature variations was causing the strains in the pavement. Heavy traffic volume had a minor effect on basecourse strain in comparison to moisture and temperature although, it was concluded that the combined effect of soil moisture, temperature and heavy traffic loading was a cause for large vertical strains in the pavement.
机译:本文介绍了一项研究的结果,该研究旨在研究湿度和环境条件对粒状路面机械性能的影响。对从位于澳大利亚阳光海岸的两个现场铺装场地的最新仪器收集的数据进行了分析。在三年内对站点进行了监控,并对每日温度,湿度和应变值进行了分析。当一天结束时水分增加且温度降低时,基层中会出现较大的拉伸应变。该结果表明,由于湿度和温度变化引起的土壤孔隙压力的变化正在引起路面的应变。尽管结论是土壤湿度,温度和繁重的交通负荷共同作用是人行道上较大的垂直应变的原因,但繁忙的交通量对基础应变的影响不大于水分和温度。

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