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PARTICLE EFFECTS ON GAS-LIQUID-SOLID FLOWS

机译:气固两相流的颗粒效应

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A numerical simulation is carried out to study the role of particles in gas-liquid-solid flows in bubble columns. An Eulerian-Lagrangian model is used and the liquid flow is modeled using a volume-averaged system of governing equations, while motions of bubbles and particles are evaluated using Lagrangian trajectory analysis. It is assumed that the bubbles remain spherical. The interactions between bubble-liquid and particle-liquid are included in the study. The discrete phase equations include drag, lift, buoyancy, and virtual mass forces. Particle-particle interactions and bubble-bubble interactions are accounted for by the hard sphere model approach. The bubble coalescence is also included in the model. Neutrally buoyant particles are used in the study. A parcel approach is used and a parcel represents a certain number of particles of same size, velocity, and other properties. Variation of particle loading is modeled by changing the corresponding number of particles in every parcel. In a previous work, the predicted results were compared with the experimental data, and good agreement was obtained. The transient flow characteristics of the three-phase flow are studied and the effects of particle loading on flow characteristics are discussed. The simulations show that the transient characteristics of the three-phase flow in a column are dominated by time-dependent vortices. The particle loading can affect the characteristics of the three-phase flows and flows with high particle loading evolve faster.
机译:进行了数值模拟,以研究颗粒在鼓泡塔气液固流中的作用。使用欧拉-拉格朗日模型,并使用体积平均的控制方程系统对液体流动进行建模,同时使用拉格朗日轨迹分析评估气泡和颗粒的运动。假设气泡保持球形。研究中包括了气泡-液体和颗粒-液体之间的相互作用。离散相位方程包括阻力,升力,浮力和虚拟质量力。硬球模型方法解释了粒子间的相互作用和气泡间的相互作用。气泡合并也包括在模型中。在研究中使用了中性浮力颗粒。使用宗地方法,宗地表示一定数量的具有相同大小,速度和其他属性的粒子。通过更改每个包裹中相应的粒子数量,可以模拟粒子负载的变化。在先前的工作中,将预测结果与实验数据进行了比较,并获得了良好的一致性。研究了三相流的瞬态流动特性,并讨论了颗粒载荷对流动特性的影响。仿真表明,柱中三相流的瞬态特性主要取决于时间相关的涡流。颗粒负荷会影响三相流的特性,并且具有较高颗粒负荷的流会更快地演化。

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