论文标题

颗粒柱的沉积形态崩溃

Deposition Morphology of Granular Column Collapses

论文作者

Man, Teng, Huppert, Herbert E., Li, Ling, Galindo-Torres, Sergio Andres

论文摘要

颗粒柱崩溃导致一系列流动现象和沉积形态,对哪种自然和工程系统中研究颗粒流的见解。在实验的指导下,我们使用离散元素方法(DEM)进行了计算研究,以识别颗粒尺度行为与颗粒柱的微尺度特性之间的基本联系。发现了基于物理学的非二维数字,结合了列的粒子和块状特性,即$α_ {\ textrm {eff}} $,可以确定三个倒塌方案(准静态,惯性和类似液体),揭示了在不同条件下流动方案和沉积形态的普遍趋势。这个非二维数在物理上代表了控制颗粒柱崩溃的行为的竞争性惯性和摩擦效应,包括能量转化和耗散。该发现对于定量理解颗粒材料及其沉积物的流程很重要。

Granular column collapses result in an array of flow phenomena and deposition morphologies, the understanding of which brings insights into studying granular flows in both natural and engineering systems. Guided by experiments, we carried out computational studies with the discrete element method (DEM) to identify fundamental links between the macro-scale behavior and micro-scale properties of granular columns. A physics-based non-dimensional number combining particle and bulk properties of the column, $α_{\textrm{eff}}$, was found to determinate three collapse regimes (quasi-static, inertial, and liquid-like), revealing universal trends of flow regimes and deposition morphologies under different conditions. This non-dimensional number represents physically the competing inertial and frictional effects that govern the behavior of the granular column collapse, including energy conversion and dissipation. The finding is important for understanding quantitatively the flow of granular materials and their deposits.

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