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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Equivalent Modulus of Geogrid-Stabilized Granular Base Back-Calculated Using Permanent Deformation
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Equivalent Modulus of Geogrid-Stabilized Granular Base Back-Calculated Using Permanent Deformation

机译:用永久变形反算土工稳定颗粒基的等效模量

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Geogrids have been increasingly used for stabilization of base courses and subgrade. In the design of the geogrid-stabilized roads, the benefit of geogrids is usually quantified by a modulus improvement factor (MIF) so that the geogrid-stabilized base course can be simplified as a nonstabilized base course with an equivalent modulus. In previous studies, the equivalent moduli of base courses were usually back-calculated by using the measured vertical stresses and/or resilient deformations of the road surface. However, these responses (i.e., stress or resilient deformation) fail to or cannot fully capture the benefits of the geogrid in reducing the permanent deformation of roads. In this study, the equivalent moduli of the geogrid-stabilized base courses were back-calculated by using the measured permanent deformations. Burmister's layered elastic solution and a modified mechanistic empirical pavement design guide (MEPDG) soil damage model were used for this back-calculation. The results show that the MIFs of the geogrid-stabilized bases determined by using the measured permanent deformations were mostly higher than those determined by using the measured vertical stresses at the interface. The equivalent modulus of the geogrid-stabilized base back-calculated by using the permanent deformation captured the benefits of the geogrid at both the loading and unloading stages.
机译:土工格栅已越来越多地用于稳定基层和路基。在土工格栅稳定的道路设计中,土工格栅的好处通常通过模量改进因子(MIF)进行量化,因此土工格栅稳定的基础路线可以简化为等效模量的非稳定基础路线。在以前的研究中,通常通过使用测得的路面垂直应力和/或弹性变形来反算基层的等效模量。但是,这些响应(即应力或弹性变形)未能或无法充分体现土工格栅在减少道路永久变形方面的优势。在这项研究中,通过使用测得的永久变形反算了土工格栅稳定基层的等效模量。反向计算使用Burmister的分层弹性解和改进的机械式经验路面设计指南(MEPDG)的土壤破坏模型。结果表明,使用实测永久变形确定的土工稳定基础的MIF大部分高于使用实测垂直界面应力确定的MIF。通过使用永久变形反算的土工格栅稳定基础的等效模量在装载和卸载阶段都获得了土工格栅的好处。

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