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首页> 外文期刊>Drying technology: An International Journal >Numerical investigation of droplet-droplet collisions in a water and milk spray with coupled heat and mass transfer
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Numerical investigation of droplet-droplet collisions in a water and milk spray with coupled heat and mass transfer

机译:耦合热量和传质水和牛奶喷雾中液滴碰撞的数值研究

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摘要

Large scale simulation models can aid in improving the design of spray dryers. In this work an Eulerian-Lagrangian model with coupled gas phase and droplet heat and mass transfer balances is used to study airflow dynamics, temperature and humidity profiles at different positions in the spray. The turbulent gas flow is solved using large eddy simulation (LES). A turbulent dispersion model accounts for the stochastic subgrid fluid velocity fluctuations along the droplet trajectory. The dispersed phase is treated with Lagrangian transport of droplets, and collisions between droplets which are detected with a stochastic Direct Simulation Monte Carlo (DSMC) method. The outcome of a binary collision is described by collision boundary models for water and milk concentrates. The drying of droplets is modeled by the reaction engineering approach (REA). The effect of the inlet air conditions and of droplet viscosity on the temperature and humidity distributions are analyzed. Most of the heat and mass transfer occurs in the first 10-20 cm from the nozzle where the slip velocities and temperature and humidity driving forces are higher. The droplets size increases, both in the axial and radial direction, because of the dominance of coalescence over separation in the droplet spray studied here. Because the spray domain considered in this work is relatively small, the droplet residence time is small, and consequently the amount of evaporation is still low. The droplet size distributions of milk concentrates are affected by the predominance of coalescence over separation events. The coalescence dominated regime increases when the droplet viscosity is higher.
机译:大型仿真模型可以帮助改善喷雾干燥器的设计。在这项工作中,具有耦合气相和液滴热量和传质余量的Eulerian-Lagrangian模型用于研究喷雾中不同位置的气流动力学,温度和湿度剖面。使用大涡模拟(LES)解决了湍流气流。湍流色散模型占沿液滴轨迹的随机底图流体速度波动。分散的相位用拉格朗日的液滴运输处理,并用随机直接模拟蒙特卡罗(DSMC)方法检测液滴之间的碰撞。二元碰撞的结果由水和牛奶浓缩物的碰撞边界模型描述。液滴的干燥由反应工程方法(Rea)建模。分析了入口空气条件和液滴粘度对温度和湿度分布的影响。大多数热量和传质发生在来自喷嘴的第一10-20cm中,其中滑动速度和温度和湿度驱动力较高。由于在此处研究的液滴喷雾中,液滴尺寸均在轴向和径向方向上增加。因为在该工作中考虑的喷雾结构域相对较小,所以液滴停留时间很小,因此蒸发量仍然很低。牛奶浓缩物的液滴尺寸分布受到聚结在分离事件上的主要影响的影响。当液滴粘度较高时,聚结导的调节度增加。

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