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A semi-resolved CFD-DEM approach for particulate flows with kernel based approximation and Hilbert curve based searching strategy

机译:基于内核的近似和基于Hilbert曲线的搜索策略的微粒流动的半解析CFD-DEM方法

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Particulate flow has a wide range of industrial applications and is frequently modeled with coupled CFD-DEM approaches. Herein, we first identified a simulation gap between the resolved CFD-DEM and unresolved CFD-DEM through a size effect study. Then we analyzed the error sources of the conventional unresolved CFD-DEM when modeling particulate flows with comparable mesh size and particle diameter. We finally developed a semi-resolved CFD-DEM model, which combines the advantages of both resolved and unresolved CFD-DEM models. The semi-resolved CFD-DEM uses a drag force model to characterize particle-fluid interaction, while the relative velocity in the drag force model is corrected through kernel-based approximations on the neighboring fluid cells rather than simply taking values in the local cell containing the concerned particle, and the void fraction in the force model is corrected as well. In order to improve the computational efficiency, a Hilbert curve based searching strategy is used to identify the fluid cells covered by the influencing area of the kernel function. A number of numerical simulations have been conducted and numerical results from different CFD-DEM approaches are compared together with experimental data. It is shown that the presented semi-resolved CFD-DEM bridges the simulation gap between the resolved CFD-DEM and unresolved CFD-DEM while it is as efficient as the conventional unresolved CFD-DEM and as accurate as the resolved CFD-DEM. (C) 2019 Elsevier Inc. All rights reserved.
机译:微粒流具有广泛的工业应用,并且经常用耦合的CFD-DEM方法进行建模。在此,我们首先通过尺寸效应研究确定了解的CFD-DEM和未解决的CFD-DEM之间的模拟差距。然后,我们在使用相当网格尺寸和粒径的颗粒流模型时分析了传统未解决的CFD-DEM的误差源。我们终于开发了一个半解析的CFD-DEM模型,它结合了解和未解决的CFD-DEM模型的优势。半分辨的CFD-DEM使用拖曳力模型来表征粒子流体相互作用,而拖曳力模型中的相对速度通过邻近流体单元上的基于内核的近似来校正,而不是在包含局部单元中的值还校正了有关颗粒,以及力模型中的空隙部分得到校正。为了提高计算效率,基于希尔伯特曲线的搜索策略用于识别由内核功能的影响区域覆盖的流体电池。已经进行了许多数值模拟,并将不同CFD-DEM方法的数值结果与实验数据进行比较。结果表明,所提出的半决面的CFD-DEM桥接了解的CFD-DEM和未解决的CFD-DEM之间的模拟间隙,而作为传统的未解决的CFD-DEM和作为已解决的CFD-DEM的准确性,它是有效的。 (c)2019 Elsevier Inc.保留所有权利。

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