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Prediction of the Minimum Fluidization Velocity for Fine Particles of Various Degrees of Cohesiveness

机译:各种内聚度细颗粒的最小流化速度的预测

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摘要

Based on the well-known Ergun equation and the force balance of a particle bed under fluidization bringing into account the interparticle forces, a new correlation for prediction of the minimum fluidization velocity (u_(mf)) for fine particles of various degrees of cohesiveness has been derived. For the first time, a general correlation of the minimum fluidization voidage (ε_(mf)) versus particle size is obtained from various sets of experimental data. The newly derived u_(mf) correlation combined with the one for ε_(mf) proves to be superior to the traditional ones proposed by Leva (1959) and Wen and Yu (1966), especially for the cases where very fine or very large particles are employed in fluidization. The correlations of Leva (1959) and Wen and Yu (1966), both disregarding the cohesive-force effect and the effect of particle size on ε_(mf), result in noticeable errors in u_(mf) prediction for very fine (Geldart groups C and C/A) and very large (Geldart group D) particles, although they work satisfactorily for small-to-medium size particles (Geldart groups B and A). In contrast, the prediction with the new correlation shows good agreement with the experimental data for various types of particles ranging from Geldart group C to group D.
机译:基于众所周知的Ergun方程和流化作用下颗粒床的力平衡,并考虑了颗粒间的作用力,新的相关性用于预测各种凝聚度的细颗粒的最小流化速度(u_(mf))被派生。首次从各种实验数据集获得了最小流化空隙率(ε_(mf))与粒径的一般相关性。新推导的u_(mf)相关性与ε_(mf)的相关性相结合,被证明优于Leva(1959)和Wen and Yu(1966)提出的传统相关性,特别是对于非常细或非常大的粒子的情况用于流化。 Leva(1959)以及Wen和Yu(1966)的相关性,既不考虑内聚力效应,也不考虑粒径对ε_(mf)的影响,因此对于非常精细的(Geldart组)u_(mf)预测会产生明显的误差。 C和C / A)和非常大的粒子(Geldart组D),尽管它们对于中小尺寸的粒子(Geldart组B和A)令人满意。相比之下,具有新相关性的预测与从Geldart C组到D组的各种类型的颗粒的实验数据显示出良好的一致性。

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