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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Flow above and within granular media composed of spherical and non-spherical particles - using a 3D numerical model
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Flow above and within granular media composed of spherical and non-spherical particles - using a 3D numerical model

机译:使用3D数值模型在由球形和非球形粒子组成的粒状介质上方和内部流动

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摘要

The entrainment of single grains and, hence, their erosion characteristics are dependent on fluid forcing, grain size and density, but also shape variations. To quantitatively describe and capture the hydrodynamic conditions around individual grains, researchers commonly use empirical approaches such as laboratory flume tanks. Nonetheless, it is difficult with such physical experiments to measure the flow velocities in the direct vicinity or within the pore spaces of sediments, at a sufficient resolution and in a non-invasive way. As a result, the hydrodynamic conditions in the water column, at the fluid-porous interface and within pore spaces of a granular medium of various grain shapes is not yet fully understood. For that reason, there is a strong need for numerical models, since these are capable of quantifying fluid speeds within a granular medium.
机译:单个晶粒的夹带及其因此的侵蚀特性取决于流体的强迫,晶粒尺寸和密度,还取决于形状的变化。为了定量描述和捕获单个谷物周围的水动力条件,研究人员通常使用经验方法,例如实验室水槽。但是,利用这样的物理实验很难以足够的分辨率和非侵入性的方式来测量沉积物的直接附近或孔隙空间内的流速。结果,尚未完全理解水柱中,流体-多孔界面处以及各种颗粒形状的粒状介质的孔空间内的流体力学条件。因此,迫切需要数值模型,因为它们能够量化颗粒状介质中的流体速度。

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