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Design Subgrade Resilient Modulus for Florida Subgrade Soils

机译:设计佛罗里达州路基土壤的路基弹性模量

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摘要

Many agencies still use empirical correlations developed to determine design subgrade resilient modulus based on California Bearing Ratio (CBR), R-Value or Soil Support Value (SSV) for pavement design projects. These relationships do not consider the stress dependency of the laboratory determined resilient modulus value. Backcalculated subgrade modulus values from Falling Weight Deflectometer (FWD) tests are also used for this purpose. This study was conducted to determine the relationships between laboratory determined subgrade resilient modulus and the results of Lime Rock Bearing Ratio (LBR) and FWD tests for certain Florida subgrade soils. Laboratory resilient modulus values were determined using subgrade soil samples collected from nine pavement sections. The resilient modulus values were computed by considering stress levels under a standard dual wheel in three typical pavement sections. The roadway sections were selected from various locations in Polk County, Florida. FWD tests were conducted along the selected roadways and LBR tests were conducted on bulk subgrade soil samples. Preliminary relationships to determine design subgrade resilient modulus equivalent to AASHTO Road Test subgrade from FWD and LBR tests were developed for considered typical pavement sections.
机译:许多机构仍然使用开发的经验相关性来确定路面设计项目中基于加利福尼亚承载比(CBR),R值或土壤支持值(SSV)的设计路基弹性模量。这些关系不考虑实验室确定的弹性模量值的应力依赖性。落锤挠度计(FWD)测试得出的反算路基模量值也用于此目的。进行这项研究是为了确定实验室确定的路基弹性模量与某些佛罗里达州路基土壤的石灰岩承压比(LBR)和FWD试验结果之间的关系。实验室弹性模量值是使用从九个路面断面采集的路基土壤样品确定的。弹性模量值是通过考虑三个典型路面中标准双轮下的应力水平来计算的。从佛罗里达州波克县的各个位置选择了道路段。沿选定的道路进行FWD测试,并在路基散装土壤样品上进行LBR测试。为确定典型的路面断面开发了初步关系,以确定与FWD和LBR试验得出的AASHTO道路测试路基相当的设计路基弹性模量。

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