三相流化床反应器流体力学的CFD模拟:颗粒性质的影响

Parinya Khongprom, Waritnan Wanchan, Kongpob Kamkham, S. Limtrakul
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引用次数: 2

摘要

采用CFD模拟方法研究了颗粒特性对气液固气泡塔内流动特性的影响。采用多流体模型和颗粒流动动力学理论。研究了颗粒直径dp = 3mm、4mm和5mm,颗粒密度$\rho_{\ mathm {p}} = 2,250$ kg/m3、2,450 $ kg/m3和2,750 kg/m3。结果表明,颗粒尺寸对流体力学和径向均匀性有显著影响。对于小颗粒,流动行为非常混乱,径向均匀性较差。得到了强湍流状态。大颗粒的流动行为更加均匀。观察到低sd流动特性的过渡区。颗粒密度对流体力学和径向均匀性分布的影响较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CFD Simulation of the Hydrodynamics in Three Phase Fluidized Bed Reactor: Effect of Particle Properties
The effect of particle properties on the flow behavior in the gas-liquid-solid bubble column was investigated by means of CFD simulation. Multi-fluid model and the kinetic theory of granular flow were employed. The particle diameters dp = 3 mm, 4 mm and 5 mm and particle densities $\rho_{\mathrm{p}} = 2,250$ kg/m3, 2,450 kg/m3 and 2,750 kg/m3 were studied. The results showed that the particle size remarkably impacted on the hydrodynamic and the radial uniformity. For small particle, the flow behavior is very chaotic with less uniformity in the radial direction. The strong turbulent regime was obtained. The flow behavior becomes more uniform for large particle. The transition regime with low S.D. of flow behavior was observed. However, the particle density had less impact on the hydrodynamic and the radial uniformity distribution.
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