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Study on dynamic compaction characteristics of gravelly soils with crushing effect

机译:碎抗效应砾石土的动态压实特性研究

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摘要

The dynamic compaction method is one of the most optimal technics in gravelly soil backfill projects. However, the basic mechanical characteristics of gravelly soils and mechanisms of dynamic compaction have not yet been precisely determined. In this study, by taking the advantage of large-scale triaxial tests, it could be seen that gravelly soils did not present strain-hardening phenomenon like other conventional soils. Additionally, the particular behaviors of gravelly soils, i.e., increase in cohesion and decrease in the internal friction angle, were determined from grain crushing tests and large-scale direct shear tests. On this basis, a modified constitutive model was established and programmed in FLAC3D under the framework of the Mohr-Coulomb criterion. Compared to a similarity simulation test, a more accurate constitutive model considering the kinematic hardening effect was developed. Finally, a 3D model was built, where the proposed modified constitutive model and numerical parameters led to a satisfactory optimized analysis of gravelly soil projects.
机译:动态压实方法是砾石土水回填项目中最优的技术之一。然而,尚未精确地确定砾石土的基本机械特性和动态压实机制。在这项研究中,通过采取大规模三轴试验的优势,可以看出,砾石土壤并未像其他常规土壤一样存在应变硬化现象。另外,从晶粒压碎试验和大规模的直接剪切试验确定了砾石土壤,即内聚力和内部摩擦角度的降低的特定行为。在此基础上,在MoHR-Coulomb标准的框架下建立并在FLAC3D中建立和编程了修改的本组型模型。与相似性仿真试验相比,考虑了考虑运动化硬化效果的更准确的本构模型。最后,建立了一个3D模型,其中建议的修改的本构模型和数值参数导致了对砾石土项目的令人满意的优化分析。

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