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FLUIDIZATION OF FINE POWDERS IN FLUIDIZED BEDS WITH AN UPWARD OR A DOWNWARD AIR JET

机译:流化床中细粉的流化,具有向上或向下的空气射流

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摘要

The hydrodynamic behavior of fine powders in jet-fluidized beds was studied numerically and experimentally. The starting point of numerical simulation was the generalized Navier-Stokes (N-S) equations for the gas and solids phases. The κ-ε turbulence model was used for high-speed gas jets in fluidized beds. Computation shows that a suitable turbulence model is necessary to obtain agreement between the simulation and literature experimental data for a high-speed gas jet. The model was applied to simulating the fluidization of fine powders in fluidized beds with an upward or a downward air jet. An empirical cohesion model was obtained by correlating the cohesive force between fine particles using a cohetester. The cohesion model was embedded into the two-fluid model to simulate the fluidization of fine powders in two-dimensional (2-D) beds. To study the fluidization behavior of fine and cohesive powders with a downward jet, experiments were performed in a 2-D bed. Agreement between the computed time-averaged porosity and measured data was obtained. With an upward jet in the bed center, the measured and computed porosities show a dilute central core, especially at very high jet velocities. Based on our experiments and computations, a downward jet located inside the bed is recommended to achieve better mixing and contacting of gas and solids.
机译:对细粉在喷射流化床中的水动力行为进行了数值和实验研究。数值模拟的起点是气相和固相的广义Navier-Stokes(N-S)方程。 κ-ε湍流模型用于流化床中的高速气体射流。计算表明,为了获得高速气体射流的仿真结果与文献实验数据之间的一致性,必须使用合适的湍流模型。该模型用于模拟细粉在流化床中的向上或向下空气射流的流化。通过使用cohetester关联细颗粒之间的内聚力,获得了经验内聚模型。内聚模型被嵌入到两流体模型中,以模拟二维(2-D)床中细粉的流化。为了研究向下喷射的细粉和粘性粉末的流化行为,在二维床中进行了实验。计算出的时间平均孔隙率与测得的数据之间存在一致性。在床中心向上喷射的情况下,测量和计算的孔隙度显示出稀疏的中心岩心,特别是在非常高的喷射速度下。根据我们的实验和计算,建议使用位于床内的向下射流,以实现气体和固体之间更好的混合和接触。

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