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Triaxial Creep Test and Particle Flow Simulation of Coarse-Grained Soil Embankment Filler

机译:粗粒土厂填料的三轴蠕变试验与颗粒流动模拟

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摘要

In order to study the creep characteristics of the coarse-grained soil as embankment filler under long-term vehicle loading, the creep test was performed on coarse-grained soil using the large scale dynamic and static triaxial instruments, and the creep process of the coarse-grained soil sample was simulated by PFC3D software, and the internal particle motion and energy change during the deformation process were studied. The research results show that the coarse-grained soil embankment filler has non-linear creep characteristics. At a low stress level, the coarse-grained soil is in the stage of elastic deformation. At a high stress level, the final creep deformation curve of the coarse-grained soil does not converge. The creep process is a process in which the particles are distorted and rotated, changing from an unstable state to a stable state. During this process, the particle energy is dissipated to the minimum, and the creep of the sample reaches a stable state. This understanding of particle motion and energy changes during the triaxial creep test of coarse-grained soil will help deepen the understanding of creep characteristics of coarse-grained soil and provide a reference for engineering practice.
机译:才能研究粗粒土的蠕变特性作为路堤填料在长期车载负荷下,蠕变试验在粗使用大规模的动态和静态三轴仪器抛光土壤,并通过PFC3D软件模拟粗粒土样品的蠕变过程,研究了变形过程中的内部粒子运动和能量变化。研究结果表明,粗粒土壤堤防填料具有非线性蠕变特性。在低应力水平下,粗粒土壤处于弹性变形的阶段。在高应力水平下,粗粒土的最终蠕变变形曲线不会收敛。蠕变过程是颗粒扭曲和旋转的过程,从不稳定状态变为稳定状态。在此过程中,颗粒能量散发至最小值,并且样品的蠕变达到稳定状态。这种了解粗粒土的三轴蠕变试验期间对粒子运动和能量变化的理解将有助于加深对粗粒土壤蠕变特性的理解,并为工程实践提供参考。

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