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Numerical and experimental investigation of a fluidized bed chamber hydrodynamics with heat transfer

机译:传热流化床腔流体动力学的数值和实验研究

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摘要

The hydrodynamics and heat transfer of a gas-solid fluidized bed chamber was investigated by computational fluid dynamic (CFD) techniques. A multifluid Eulerian model incorporating the kinetic theory for solid particles was applied to simulate the unsteady state behavior of this chamber. For momentum exchange coefficients, Syamlal-O’Brien drag functions were used. A suitable numerical method that employed finite volume method was applied to discretize the equations. The simulation results also indicated that small bubbles were produced at the bottom of the bed. These bubbles collided with each other as they moved upwards forming larger bubbles. Also, the solid particle temperature effect on heat transfer and hydrodynamics was studied. Simulation results were compared with the experimental data in order to validate the CFD model. Pressure drops and mean gas temperature predicted by the simulations at different positions in the chamber were in good agreement with experimental measurements at gas velocities higher than the minimum fluidization velocity. Furthermore, this comparison showed that the model could predict hydrodynamics and heat transfer behaviors of gas solid fluidized bed reasonably well.
机译:气固流化床腔室的流体动力学和传热通过计算流体力学(CFD)技术进行了研究。结合了固体颗粒动力学理论的多流体欧拉模型被用来模拟该室的非稳态行为。对于动量交换系数,使用了Syamlal-O’Brien阻力函数。采用有限体积法的合适数值方法可以离散化方程。模拟结果还表明,在床的底部产生了小气泡。这些气泡在向上移动时会相互碰撞,形成较大的气泡。此外,研究了固体颗粒温度对传热和流体动力学的影响。将仿真结果与实验数据进行比较,以验证CFD模型。通过模拟在腔室内不同位置预测的压降和平均气体温度与在高于最小流化速度的气体速度下的实验测量结果非常吻合。此外,该比较表明该模型可以较好地预测气固流化床的流体动力学和传热性能。

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