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Coupled 3-D CFD-DDPM Numerical Simulation of Turbulent Swirling Gas-Particle Flow within Cyclone Suspension Preheater of Cement Kilns

机译:耦合3-D CFD-DDPM湍流旋转气体颗粒流动旋风悬架预热器中的湍流旋转气体粒子的数值模拟

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The paper presents a three-dimensional (3-D), time-dependent Euler-Lagrange multiphase approach for high-fidelity numerical simulation of strongly swirling, turbulent, heavy dust-laden flows within large-sized cyclone separators, as components of the state-of-art suspension preheaters (SPH) of cement kilns. The case study evaluates the predictive performance of the coupled hybrid 3-D computational fluid dynamics-dense discrete phase model (CFD-DDPM) approach implemented into the commercial general purpose code ANSYS-Fluent R16.2, when applied to industrial cyclone collectors used to separate particles from gaseous streams. The gas (flue gases) flow is addressed numerically by using the traditional CFD methods to solve finite volume unsteady Reynolds-averaged Navier-Stokes (FV-URANS) equations. The multiphase turbulence is modeled by using an option of Reynolds stress model (RSM), namely dispersed turbulence model. The motion of the discrete (granular) phase is captured by DDPM methodology. The twin cyclones of SPH top-most stage have been analyzed extensively both for the overall pressure drop and global collection efficiency, and for the very complex multiphase flow patterns established inside this equipment. The numerical simulation results have been verified and partially validated against an available set of typical industrial measurements collected during a heat and mass balance (H&MB) of the cement kiln.
机译:本文介绍了一种三维(3-D),时间依赖的欧拉拉格朗兰多相多相多相多相多相方法,用于大型旋风,湍流,大型粉末流动的高保真数值模拟,在大型旋风分离器内,作为状态的组成部分 - 艺术悬浮液预热器(SPH)水泥窑。案例研究评估了在商业通用代码ANSYS-FLUENT R16.2中实现的耦合混合3-D计算流体动力相模型(CFD-DDPM)方法的预测性能,当应用于用于工业飓风收集器来自气流的单独的颗粒。通过使用传统的CFD方法来解决有限体积不稳定雷诺平均的Navier-Stokes(FV-URANS)方程来数控地解决气体(烟道气)流量。通过使用Reynolds应力模型(RSM)的选项来建模多相湍流,即分散的湍流模型。通过DDPM方法捕获离散(粒状)阶段的运动。 SPH顶部的双旋风器是全部压降和全球收集效率的广泛分析,以及在该设备内建立的非常复杂的多相流动模式。根据在水泥窑的热量和质量平衡(H&MB)期间收集的可用典型的工业测量结果已经验证和部分验证了数值模拟结果。

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