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DEM study on the development of the earth pressure of granular materials subjected to lateral cyclic loading

机译:DEM研究横向循环载荷粒状物质的地球压力发展研究

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The discrete element method (DEM) is adopted to study the development of the lateral earth pressure of granular materials subjected to lateral strain-controlled cyclic loading, which is imposed by integral abutments due to temperature variation. Clumped particles are used to simulate the nonspherical granular particles. The simulation results show that there is continuing buildup of lateral stresses with cycling for both loose and dense samples, while the loose sample experiences a substantial decrease in volume and the dense sample shows slight dilation. The simulated macro-response is qualitatively consistent with the laboratory observations. The micro response is further investigated, and a unique relationship is revealed between the deviator stress ratio on the macro-scale and the deviator fabric of strong contacts on the micro-scale, which is not influenced by the initial porosity, vertical stress, or loading path. Although the cyclic lateral strain is small, a number of cycles can result in a certain micro-structure that can support large lateral stresses, which can also be achieved by lateral monotonic loading to large strains. The influence of the particle shape on the macroand micro-responses of an assembly is highlighted by performing lateral cyclic loading test on a sample with spherical particles.
机译:采用离散元素法(DEM)研究了经受横向应变控制循环载荷的粒状材料的横向接地压力的发展,其由于温度变化而通过整体基台施加。聚集颗粒用于模拟非球颗粒颗粒。仿真结果表明,对于松散和致密的样品,循环横向应力的横向应力继续积聚,而松散的样品经历的体积大幅下降,致密样品显示出轻微的扩张。模拟的宏观响应与实验室观察定义符合。进一步研究了微响应,并且在微尺度上的宏观尺度和强烈触点的偏差织物上的偏差应力比之间揭示了独特的关系,这不受初始孔隙率,垂直应力或装载的影响小路。尽管循环横向菌株较小,但是一些循环可以导致某种微结构,其可以支持大的横向应力,这也可以通过横向单调负载到大菌株来实现。通过在具有球形颗粒的样品上进行横向循环加载试验,突出显示颗粒形状对组件的微量响应的影响。

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