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Numerical simulation of gas-solid flow characteristic of particles in fibrous media using OpenFOAM

机译:用Oppfoam纤维介质中粒子气固特征的数值模拟

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Euler-Lagrangian numerical simulation framework of gas-solid two-phase flow was used to simulate the gas-solid flow characteristic in fibrous media using OpenFOAM in this study. The simulation results were compared with the empirical model and CFD-DEM method. In addition, the deposition morphology of particles, pressure differential and filtration efficiency in unsteady stage and simulation cost were also analysed with OpenFOAM. The results show that OpenFOAM can simulate the process of gas-solid two-phase flow in the fibrous media, and the particles are agglomerated on the surface of fibrous media and form a dendritic structure similar to the experimental observation. The pressure differential in unsteady stage would increase with the mass per unit area. The filtration efficiency would increase with a corresponding increase in the amount of deposition, but the growth rate would decline gradually. Compared with CFD-DEM method, the simulation accuracy with OpenFOAM is slightly lower, especially in the case of large the Stokes number, but the simulation cost is low, too. Therefore, it is necessary to choose one of the two methods according to the actual situation.
机译:欧拉拉格朗县气固两相流的数值模拟框架用于在本研究中使用OpenFoam模拟纤维培养基中的气体固体流动特性。将仿真结果与经验模型和CFD-DEM方法进行了比较。此外,还通过OpenFoam分析了不稳定阶段和模拟成​​本中的颗粒,压差和过滤效率的沉积形态。结果表明,OpenFoam可以模拟纤维介质中的气体固体两相流的过程,并且颗粒在纤维介质表面上凝聚,形成类似于实验观察的树突结构。不稳定阶段的压差会随着每单位面积的质量而增加。过滤效率随着沉积量的相应增加而增加,但增长率会逐渐下降。与CFD-DEM方法相比,OpenFoam的仿真精度略低,特别是在大型斯托克斯号的情况下,但模拟成本也很低。因此,必须根据实际情况选择两种方法中的一种。

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