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Seasonal Variation of Subgrade Modulus in Different Subgrade Soils for Pavement Rehabilitation for Non Freeze-Thaw Climates

机译:非冻融气候路面康复路面康复不同路基土壤季节变化

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Subgrade soil modulus is a required parameter for the AASHTO method of flexible pavement design and an indirect input parameter for rigid pavement design. Falling Weight Deflectometer (FWD) testing often performed to determine the insitu subgrade modulus of in-service pavement structures for pavement rehabilitation. Seasonal variations of subgrade modulus often complicate the pavement design process and hence the 1993 AASHTO flexible pavement design guide introduced an effective subgrade modulus concept to estimate the effect of seasonal variation of subgrade modulus on pavement performance. This study was conducted to determine the seasonal variation of subgrade modulus values with three types of subgrade soils; clayey sand, silty sand and poorly graded sand. Long Term Pavement Performance (LTPP) program under the Strategic Highway Research Program (SHRP) provides a substantial data source to evaluate the seasonal variation of subgrade modulus values. FWD deflection data were back calculated using DAPS back calculation program and evaluated with different subgrade soil types. This evaluation provides a better insight for future research to estimate an effective subgrade modulus ratio for different subgrade soil types.
机译:Droprade土壤模量是柔性路面设计的AASHTO方法的必要参数和刚性路面设计的间接输入参数。通常进行的重量偏转仪(FWD)测试,以确定用于路面康复的服务中的役路面结构的Insitu路基模量。路基模量的季节性变化通常使人行道设计过程复杂化,因此1993年AASHTO柔性路面设计指南推出了一种有效的路基模量概念,以估算路基模量对路面性能的季节变化的影响。进行该研究以确定具有三种类型的路基土壤的路基模量值的季节变化; Clayey Sand,粉状沙子和较差的沙子。战略公路研究计划(SHRP)下的长期路面性能(LTPP)计划提供了大量数据源来评估路基模量值的季节变化。使用DAPS背部计算程序计算FWD偏转数据,并使用不同的路基土壤类型进行评估。该评估为未来的研究提供了更好的洞察力,以估算不同路基类型的有效路基模量比。

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