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Development of filtered Euler-Euler two-phase model for circulating fluidised bed: High resolution simulation, formulation and a priori analyses

机译:循环流化床滤波Euler-Euler两相模型的开发:高分辨率模拟,公式化和先验分析

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摘要

Euler-Euler two-phase model simulations are usually performed with mesh sizes larger than the small-scale structure size of gas-solid flows in industrial fluidised beds because of computational resource limitation. Thus, these simulations do not fully account for the particle segregation effect at the small scale and this causes poor prediction of bed hydrodynamics. An appropriate modelling approach accounting for the influence of unresolved structures needs to be proposed for practical simulations. For this purpose, computational grids are refined to a cell size of a few particle diameters to obtain mesh-independent results requiring up to 17. million cells in a 3D periodic circulating fluidised bed. These mesh-independent results are filtered by volume averaging and used to perform a priori analyses on the filtered phase balance equations. Results show that filtered momentum equations can be used for practical simulations but must take account of a drift velocity due to the sub-grid correlation between the local fluid velocity and the local particle volume fraction, and particle sub-grid stresses due to the filtering of the non-linear convection term. This paper proposes models for sub-grid drift velocity and particle sub-grid stresses and assesses these models by a priori tests.
机译:由于计算资源的限制,通常使用大于工业流化床中气固流小规模结构尺寸的网格尺寸执行Euler-Euler两相模型仿真。因此,这些模拟不能完全说明小范围内的颗粒偏析效应,这会导致对床层流体动力学的不良预测。对于实际的模拟,需要提出一种适当的建模方法来解决未解决结构的影响。为此,将计算网格精炼为几个粒径的像元大小,以获得独立于网格的结果,在3D周期性循环流化床中需要多达1700万个像元。这些独立于网格的结果通过体积平均进行滤波,并用于对滤波后的相位平衡方程进行先验分析。结果表明,滤波后的动量方程可用于实际模拟,但必须考虑漂移速度,这是由于局部流体速度与局部颗粒体积分数之间的子网格相关性,以及由于过滤的原因而导致的子网格应力。非线性对流项。本文提出了亚网格漂移速度和颗粒亚网格应力模型,并通过先验测试对这些模型进行了评估。

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