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Particle fluctuations and dispersion in three-phase fluidized beds with viscous and low surface tension media

机译:具有粘性和低表面张力介质的三相流化床中的颗粒波动和分散

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Particle fluctuations and dispersion were investigated in a three-phase (gas-liquid-solid) fluidized bed with an inside diameter of 0.102m and height of 2.5m. Effects of gas and liquid velocities, particle size (0.5-3.0mm), viscosity (1.0-38×10~(-3)Pas) and surface tension (52-72×10~(-3)N/m) of continuous liquid media on the fluctuating frequency and dispersion coefficient of fluidized particles were examined, by adopting the relaxation method base on the stochastic model. The fluctuations and dispersion of fluidized solid particles were successfully analyzed by means of the pressure drop variation with time, which was chosen as a state variable, based on the stochastic model. The fluctuating frequency and dispersion coefficient of particles increased with increasing gas velocity, due to the increase of bubbling phenomena and bed porosity in which particles could move, fluctuate and travel. The frequency and dispersion coefficient of particles showed local maximum values with a variation of liquid velocity. The two values of fluctuating frequency and dispersion coefficient of particles increased with increase in particle size, but decreased with increase in liquid viscosity due to the restricted movement and motion of particles in the viscous liquid medium. Both fluctuating frequency and dispersion coefficient of particles increased with decrease in surface tension of liquid phase, due to the increase of bubbling phenomena with decrease in σL. The values of obtained particle dispersion coefficient were well correlated in terms of dimensionless groups as well as operating variables.
机译:在内径为0.102m且高度为2.5m的三相(气-液-固)流化床中研究了颗粒波动和分散。气液速度,连续粒径(0.5-3.0mm),粘度(1.0-38×10〜(-3)Pas)和表面张力(52-72×10〜(-3)N / m)的影响通过采用基于随机模型的松弛方法,研究了液体介质对流化颗粒波动频率和分散系数的影响。通过基于随机模型的压降随时间的变化成功地分析了流化固体颗粒的波动和分散,该压降随时间的变化被选择为状态变量。颗粒的起伏频率和分散系数随着气体流速的增加而增加,这是由于起泡现象和床层孔隙度的增加所引起的,在这些现象中颗粒可以移动,波动和移动。颗粒的频率和弥散系数随液体速度的变化显示出局部最大值。颗粒的波动频率和分散系数这两个值随颗粒尺寸的增加而增加,但由于液体在粘性液体介质中的受限运动和运动而随液体粘度的增加而减小。液相的表面张力降低,粒子的起伏频率和分散系数都增加,这是由于气泡现象随σL的降低而增加。所获得的粒子弥散系数的值在无因次组以及操作变量方面具有很好的相关性。

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