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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Fluid Dynamics of Fluidized and Vibrofluidized Beds Operating with Geldart C Particles
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Fluid Dynamics of Fluidized and Vibrofluidized Beds Operating with Geldart C Particles

机译:用Geldart C颗粒运行的流化床和振动流化床的流体动力学

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摘要

The fluid dynamic behavior of a vibrofluidized bed operating with Geldart C particles was studied. The experiments were conducted in order to observe the influence of amplitude, frequency, and dimensionless vibration number on the minimum fluidization velocity, pressure drop, and standard deviation obtained. It was noted that the dimensionless vibration number should be used very carefully if it is to be the unique parameter to set the vibrational effect of the bed fluid dynamics. The results clearly indicate that the fluid dynamic behavior of the bed is very dependent on the different combinations of amplitude and frequency for the same dimensionless vibration number. Therefore, the use of the amplitude or frequency of vibration and the dimensionless vibration number is recommended for a better characterization of the vibrational effects on the fluid dynamic behavior of the particle bed.
机译:研究了用Geldart C颗粒运行的振动流化床的流体动力学行为。进行实验是为了观察振幅,频率和无量纲振动数对获得的最小流化速度,压降和标准偏差的影响。应当指出,如果无量纲振动数是设置床层流体动力学振动效应的唯一参数,则应非常小心地使用它。结果清楚地表明,对于相同的无量纲振动数,床的流体动力学行为非常依赖于振幅和频率的不同组合。因此,建议使用振动的幅度或频率以及无因次振动数,以更好地表征对颗粒床流体动力学行为的振动影响。

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