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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >A multiphase meshfree particle method for continuum-based modeling of dry and submerged granular flows
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A multiphase meshfree particle method for continuum-based modeling of dry and submerged granular flows

机译:一种用于连续基于干燥和浸没颗粒流量建模的多相网格非粒子法

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摘要

We develop and fully characterize a meshfree Lagrangian (particle) model for continuum-based numerical modeling of dry and submerged granular flows. The multiphase system of the granular material and the ambient fluid is treated as a multi-density multi-viscosity system in which the viscous behavior of the granular phase is predicted using a regularized viscoplastic rheological model with a pressure-dependent yield criterion. The numerical technique is based on the Weakly-Compressible Moving Particle Semi-implicit (WC-MPS) method. The required algorithms for approximation of the effective viscosity, effective pressure, and shear stress divergence are introduced. The capability of the model in dealing with the viscoplasticity is validated for the viscoplastic Poiseuille flow between parallel plates. The model is then applied and fully characterized (in respect to the various rheological and numerical parameters) for dry and submerged granular collapses with different aspect ratios. The numerical results are evaluated in comparison with the available experimental measurement from the literature as well as some complementary experimental measurements, performed in this study. The results show the capabilities of the presented model and its potential to deal with a broad range of dry and submerged granular flows. They also reveal the impotent role of the regularization, effective pressure, and shear stress divergence calculation methods on the accuracy of the results. For the case of the granular collapse the results characterize the shape, evolution, and flow regimes of granular deposit, as well as the important effect of the ambient fluid. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们开发并充分地描述了一种基于连续的干燥和浸没颗粒流量的基于连续数值模拟的网格免费拉格朗日(粒子)模型。粒状材料和环境流体的多相系统被处理为多密度多粘度系统,其中使用具有压力依赖性产量标准的正则化粘塑流变学模型来预测颗粒相的粘性行为。数值技术基于弱可压缩的移动粒子半隐式(WC-MPS)方法。介绍了用于近似有效粘度,有效压力和剪切应力发散的所需算法。在处理粘胶塑料的情况下,验证了平行板之间的粘塑性Poiseuille流动的模型的能力。然后将该模型应用并完全表征(关于各种流变学和数值参数),用于具有不同纵横比的干燥和浸没的颗粒塌陷。与本研究中的文献中的可用实验测量以及一些互补实验测量相比,评价数值结果。结果表明,所提出的模型的能力及其处理广泛的干燥和浸没颗粒流动的潜力。它们还揭示了正则化,有效压力和剪切应力分配计算方法对结果的准确性的无能作用。对于粒状塌陷的情况,结果表征了粒状沉积物的形状,进化和流动制度,以及环境流体的重要效果。 (c)2018 Elsevier B.v.保留所有权利。

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