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Microscopic Picture of Erosion and Sedimentation Processes in Dense Granular Flows

机译:密集粒状流动侵蚀和沉降过程的微观图

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摘要

Gravity-driven flows of granular matter are involved in a wide variety of situations, ranging from industrial processes to geophysical phenomena, such as avalanches or landslides. These flows are characterized by the coexistence of solid and fluid phases, whose stability is directly related to the erosion and sedimentation occurring at the solid-fluid interface. To describe these mechanisms, we build a microscopic model involving friction, geometry, and a nonlocal cooperativity emerging from the propagation of collisions. This new picture enables us to obtain a detailed description of the exchanges between the fluid and solid phases. The model predicts a phase diagram including the limits of erosion and sedimentation, in quantitative agreement with experiments and discrete-element-method simulations.
机译:粒状物质的重力驱动的流动涉及各种情况,从工业过程到地球物理现象,例如雪崩或山体滑坡。这些流动的特征在于固体和流体相的共存,其稳定性与固体流体界面处发生的侵蚀和沉降直接相关。为了描述这些机制,我们构建涉及摩擦,几何形状和从碰撞传播中出现的非识别合作的微观模型。这款新图片使我们能够获得流体和固相之间交换的详细描述。该模型预测了一种相提数,包括侵蚀和沉降的限制,与实验和离散元素方法模拟的定量协议。

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  • 来源
    《Physical review letters》 |2020年第20期|208002.1-208002.6|共6页
  • 作者单位

    Univ Mons Lab Interfaces & Fluides Complexes 20 Pl Parc B-7000 Mons Belgium;

    PSL Res Univ UMR CNRS Gulliver 7083 ESPCI Paris F-75005 Paris France;

    Univ Bordeaux CNRS LOMA UMR 5798 F-33405 Talence France|Hokkaido Univ Global Stn Soft Matter Global Inst Collaborat Res & Educ Sapporo Hokkaido 0600808 Japan;

    PSL Res Univ UMR CNRS Gulliver 7083 ESPCI Paris F-75005 Paris France;

    Univ Mons Lab Interfaces & Fluides Complexes 20 Pl Parc B-7000 Mons Belgium;

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