模数
刚度
剪切模量
路基
有限元法
岩土工程
杨氏模量
比模量
加州承载比
材料科学
土工试验
弹性模量
结构工程
复合材料
环境科学
地质学
工程类
土壤水分
土壤科学
作者
Binanda Khungur Narzary,Kamal Uddin Ahamad
标识
DOI:10.1061/jpeodx.0000246
摘要
Resilient modulus of subgrade represents soil stiffness with regard to in-situ stress in a controlled laboratory environment that can be measured from repeated load triaxial test. However, the expensive and time-consuming procedure involved in its measurements induces various researchers to develop a methodology to estimate parameters analogous to the resilient modulus. Recently, the California bearing ratio (CBR) test was used to estimate equivalent modulus as the soil stiffness using a repeated load approach. The present paper proposed a rational methodology to estimate the equivalent modulus of soil (Me) using a numerical approach. The mechanical characterization of a soil sample was investigated by conducting a CBR test, repeated load CBR (RLCBR) test, and direct shear test. Modeling of the RLCBR test was done using the MC soil model to estimate the equivalent modulus of a CBR sample that was then converted to Me under half-space boundary conditions using a finite element model (FEM). The comparison of Me with resilient modulus Mr obtained from a soaked CBR sample indicated strong agreement with a coefficient of determination of 0.96, indicating that the proposed methodology provides an equivalent modulus of soil as a resilient modulus with acceptable accuracy.
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