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Evaluation of Resilient Modulus of Subgrade and Base Materials in Indiana and Its Implementation in MEPDG

机译:印第安纳州路基和基础材料的弹性模量评估及其在MEPDG中的实现

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摘要

In order to implement MEPDG hierarchical inputs for unbound and subgrade soil, a database containing subgrade M R, index properties, standard proctor, and laboratory M R for 140 undisturbed roadbed soil samples from six different districts in Indiana was created. The M R data were categorized in accordance with the AASHTO soil classifications and divided into several groups. Based on each group, this study develops statistical analysis and evaluation datasets to validate these models. Stress-based regression models were evaluated using a statistical tool (analysis of variance (ANOVA)) and Z-test, and pertinent material constants (k 1, k 2 and k 3) were determined for different soil types. The reasonably good correlations of material constants along with M R with routine soil properties were established. Furthermore, FWD tests were conducted on several Indiana highways in different seasons, and laboratory resilient modulus tests were performed on the subgrade soils that were collected from the falling weight deflectometer (FWD) test sites. A comparison was made of the resilient moduli obtained from the laboratory resilient modulus tests with those from the FWD tests. Correlations between the laboratory resilient modulus and the FWD modulus were developed and are discussed in this paper.
机译:为了对未结合和路基土壤实施MEPDG分层输入,创建了一个数据库,其中包含来自印第安纳州六个不同地区的140个未扰动路基土壤样品的路基M R,指标特性,标准监理员和实验室M R。根据AASHTO土壤分类对M R数据进行分类,并分为几组。基于每个组,本研究开发了统计分析和评估数据集以验证这些模型。使用统计工具(方差分析(ANOVA))和Z检验对基于应力的回归模型进行了评估,并确定了不同土壤类型的相关材料常数(k 1,k 2和k 3)。建立了材料常数和M R与常规土壤性质的合理良好相关性。此外,在不同的季节中,在印第安纳州的几条高速公路上进行了FWD测试,并且对从落锤偏折仪(FWD)测试地点收集的路基土壤进行了实验室弹性模量测试。将实验室弹性模量测试获得的弹性模量与FWD测试得到的弹性模量进行了比较。建立并讨论了实验室弹性模量与FWD模量之间的相关性。

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