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An efficient 4 way coupling CFD-DEM model for dense gas-solid particulate flows simulations

机译:有效的四向耦合CFD-DEM模型用于气密固体颗粒流动模拟

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The goal of this paper is to illustrate how some recent numerical developments enable the simulation of dense two-phase flows. A coupled Computational Fluid Dynamic and Discrete Element Method (CFD-DEM) approach has been designed for the simulation of 3D fluidized beds. DEM is employed to model the granular particle phase while classical CFD is used to simulate the fluid flow by solving the Volume Averaged Navier-Stokes (VANS) equations. A special emphasize is put on the implementation of the velocity-pressure algorithm in the context of two-phase flows. By taking into consideration all particle-particle, fluid-particle and particle-wall interactions, a complete 4 way coupling model has been derived. Three dimensional computations of a single bubble formation as well as of the bubbly regime have been conducted. The simulations point out the existence of complex structures, such as the worm-like shape one, similar to those that have already been described in the literature. (C) 2015 Published by Elsevier Ltd.
机译:本文的目的是说明最近的一些数值发展如何使稠密的两相流模拟成为可能。设计了一种耦合的计算流体动力学和离散元素方法(CFD-DEM)方法来模拟3D流化床。 DEM用于模拟颗粒相,而经典CFD用于通过求解体积平均Navier-Stokes(VANS)方程来模拟流体流动。特别强调了在两相流情况下速度-压力算法的实现。通过考虑所有粒子-粒子,流体-粒子和粒子-壁相互作用,得出了完整的四向耦合模型。已经对单个气泡形成以及气泡状态进行了三维计算。模拟指出了复杂结构的存在,例如像蠕虫一样的形状,类似于文献中已经描述的结构。 (C)2015由Elsevier Ltd.出版

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