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Predicting the settlement of coarse granular materials under vertical loading

机译:预测垂直载荷下粗粒料的沉降

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摘要

Granular materials are widely used in industrial processes despite their complex and poorly understood mechanical behaviour both in static and dynamic regimes. A prototypical example is the settlement and compaction of a granular bed under vibrational loading. The elementary mechanisms of this process are still unclear and there is presently no established theory or methodology to predict the settlement and its statistical variability. By means of a parametric study, carried out on a full-scale track, and a critical analysis of density relaxation laws, we introduce a novel settlement model in coarse granular materials under cyclic loading. Our extensive experimental data indicate that the settlement process is governed by three independent parameters strongly correlated with the vibration intensity and initial packing fraction. We show that the mean settlement is well predicted by the model with its parameter values extracted from experimental data.
机译:尽管粒状材料在静态和动态状态下都具有复杂且难以理解的机械性能,但它们仍广泛用于工业过程。一个典型的例子是振动载荷下颗粒床的沉降和压实。该过程的基本机制仍不清楚,目前尚无确定的理论或方法来预测沉降及其统计差异。通过在全尺寸轨道上进行的参数研究以及对密度松弛规律的严格分析,我们引入了循环载荷下粗粒料中的新型沉降模型。我们大量的实验数据表明,沉降过程受与振动强度和初始堆积分数密切相关的三个独立参数的控制。我们表明,平均沉降可以通过模型很好地预测,并从实验数据中提取其参数值。

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