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Coupled CFD-PBM simulation of bubble size distribution in a 2D gas-solid bubbling fluidized bed with a bubble coalescence and breakup model

机译:耦合CFD-PBM模拟2D气体固体鼓泡流化床中的气泡尺寸分布,具有泡泡聚结和破碎模型

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A coupled model of computational fluid dynamics and population balance model (CFD-PBM) scheme was developed to simulate bubble size distribution in gas-solid bubbling fluidized beds. The bubbling gas fluidized bed was divided into a discrete bubble phase and a dense emulsion including a pseudo solids continua modeled by the kinetic theory of granular flow (KTGF). A modified bubble coalescence and breakup model was proposed and implemented in the population balance model. A pseudo bubble-emulsion drag force model was derived based on the bubble size distribution and used for simulating the gas-solid momentum exchanges between gas bubbles and the solids belong to the emulsion phase. By taking into account the effects of bubble coalescence and breakup, the coupled CFD-PBM model was capable of predicting the hydrodynamic behavior of a bubbling gas-solid fluidized bed. A benchmark simulation showed good agreements between the computation results and the literature experimental data. Particularly, the predicted time-averaged bubble local hold-up maps, bubble size distributions and their evolution agreed well with the measurement data. Grid convergence simulation results demonstrated that the present model is able to predict the major hydrodynamic behavior of a 2D bubbling fluidized bed using coarse computational grids, which makes the present model a promising tool for applications in large-scale fluidized bed reactors. (C) 2019 Elsevier Ltd. All rights reserved.
机译:开发了一种计算流体动力学和人口平衡模型(CFD-PBM)方案的耦合模型,以模拟气体固体鼓泡流化床中的气泡尺寸分布。将鼓泡气体流化床分为离散的气泡相和致密乳液,其包括由粒状流动(KTGF)的动力学理论建模的伪固体连续体。在人口平衡模型中提出并实施了改进的泡沫聚结和分离模型。基于气泡尺寸分布来衍生伪气泡乳液阻力模型,并用于模拟气泡与固体属于乳液相的气体稳定动量交换。通过考虑气泡聚结和破碎的影响,耦合的CFD-PBM模型能够预测鼓泡气体固体流化床的流体动力学行为。基准模拟显示了计算结果与文献实验数据之间的良好协议。特别地,预测的时间平均气泡本地保持映射映射,气泡尺寸分布及其演进与测量数据很好地同意。电网收敛模拟结果表明,本模型能够使用粗糙计算网格预测2D鼓泡流化床的主要流体动力学行为,这使得本模型成为大型流化床反应堆中的应用工具。 (c)2019年elestvier有限公司保留所有权利。

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