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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >A model for decoding the life cycle of granular avalanches in a rotating drum
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A model for decoding the life cycle of granular avalanches in a rotating drum

机译:一种用于解码旋转鼓中粒状雪崩的寿命周期的模型

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摘要

Granular materials can behave as harmless sand dunes or as devastating landslides. A granular avalanche marks the transition between these distinct solid-like and fluid-like states. The solid-like state is typically described using plasticity models from critical state theory. In the fluid regime, granular flow is commonly captured using a visco-plastic model. However, due to our limited understanding of the mechanism governing the solid-fluid-like transition, characterizing the material behavior throughout the life cycle of an avalanche remains an open challenge. Here, we employ laboratory experiments of transient avalanches spontaneously generated by a rotating drum. We report measurements of dilatancy and grain kinematics before, during, and after each avalanche. Those measurements are directly incorporated into a rate-dependent plasticity model that quantitatively predicts the granular flow measured in experiments. Furthermore, we find that dilatancy in the solid-like state controls the triggering of granular avalanches and therefore plays a key role in the solid-fluid-like transition. With the proposed approach, we demonstrate that the life cycle of a laboratory avalanche, from triggering to run out, can be fully explained. Our results represent an important step toward a unified understanding of the physical phenomena associated with transitional behavior in granular media.
机译:颗粒材料可以表现为无害的沙丘或破坏性山体滑坡。粒状雪崩标记这些不同的固体和流体状状态之间的过渡。通常使用来自临界状态理论的可塑性模型来描述固相同的状态。在流体状态下,通常使用粘塑料模型捕获粒状。然而,由于我们对控制固体流体样过渡的机制的有限理解,表征在雪崩的整个生命周期中的材料行为仍然是开放的挑战。在这里,我们采用由旋转鼓自发产生的瞬态雪崩的实验室实验。我们在每次雪崩之前,期间和之后报告膨胀和谷物运动学的测量。这些测量被直接掺入速率依赖性塑性模型中,其定量地预测实验中测量的粒状流动。此外,我们发现固体状状态的膨胀控制粒状雪崩的触发,因此在固体流体状转变中起着关键作用。通过提出的方法,我们证明了实验室雪崩的生命周期,可以充分解释触发触发。我们的结果代表了朝着与粒状介质中的过渡行为相关的物理现象统一理解的重要一步。

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