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首页> 外文期刊>Journal of Fluid Mechanics >Immersed granular collapse: from viscous to free-fall unsteady granular flows
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Immersed granular collapse: from viscous to free-fall unsteady granular flows

机译:浸入的颗粒崩溃:从粘性到自由落下的不稳定颗粒流动

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摘要

The collapse of a granular column in a liquid is investigated using numerical simulations. From previous experimental studies, it has been established that the dynamics of the collapse is mostly influenced by the Stokes number St, comparing grain inertia and viscous fluid dissipation, and the initial volume fraction of the granular column phi(i). However, the full characterization of the collapse in the (St, phi(i)) plane is still missing, restricting its modelling as a physical process for geophysical applications. Only numerical tools can allow the variation over the parameter space (St, phi(i)) that is hardly reachable in experiments as well as a full description of the granular phase that plays a major role in dense granular flows. For this purpose, a dedicated numerical model is used including a discrete element method to resolve the granular phase. The specific objectives of the paper are then twofold: (i) the characterization of the dynamics of the collapse and its final deposit with respect to (St, phi(i)) to complement available experimental data, and (ii) the description of the granular rheology according to these two dimensionless numbers including dilatancy effects. A simple predictive model stems from the obtained results, allowing one to explain the evolution of the final deposit with (St, phi(i)).
机译:采用数值模拟方法研究了颗粒柱在液体中的坍塌。根据之前的实验研究,已经确定崩塌动力学主要受斯托克斯数St的影响,比较了颗粒惯性和粘性流体耗散,以及颗粒柱的初始体积分数phi(i)。然而,(St,phi(i))平面内崩塌的完整特征仍然缺失,这限制了其作为地球物理应用物理过程的建模。只有数值工具才能允许在实验中难以达到的参数空间(St,φ(i))上的变化,以及对在稠密颗粒流中起主要作用的颗粒相的完整描述。为此,使用了一个专用的数值模型,包括离散单元法来解析颗粒相。论文的具体目标有两个:(i)描述崩塌及其最终沉积的动力学(St,phi(i))以补充现有的实验数据,以及(ii)根据这两个无量纲数描述颗粒流变学,包括扩容效应。一个简单的预测模型源于获得的结果,可以用(St,phi(i))解释最终矿床的演化。

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