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Coarse grid simulation of the hydrodynamics of binary gas-solid flow in CFB risers

机译:CFB立管中二元气体固体流动流体动力学的粗网模拟

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CFD simulation has become an effective way to study the mixing and segregation characteristics of gas-solid flow in CFB risers, which is important for the proper operation and design of such reactors. In this study, the numerical solution of a recently developed EMMS drag model for binary gas-solid flow which considers the effect of particle clustering structures on the interphase drag forces was first improved, it was then coupled with a multifluid model to perform extensive 3D simulations of the mixing and segregation pattern of binary gas-solid flow in CFB risers. It was shown that the experimental data of axial solid concentration profiles and radial solid mass flux distributions can be captured reasonably by the combined EMMS-multifluid model, indicating that the model is able to reproduce the hydrodynamics of complex gas-solid flow with particle size distribution.
机译:CFD仿真已成为研究CFB立管中气固流动的混合和分离特性的有效途径,这对于这种反应器的适当操作和设计是重要的。 在本研究中,首先提高了考虑粒子聚类结构对颗粒聚类结构对差异阻力力的影响的二元燃气固体流量的数值解决方案,然后与多流体模型偶联以进行广泛的3D模拟 CFB立管中二元气固流动的混合与分离模式。 结果表明,轴向固体浓度分布和径向固体磁通量分布的实验数据可以合理地通过组合的EMM-Multifiduid模型来捕获,表明该模型能够使用粒度分布复杂气体固体流动的流体动力学 。

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