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Distribution of multi-phase gas-solid flow across identical parallel cyclones: Modeling and experimental study

机译:相同平行旋风分离器中多相气固两相流的分布:建模和实验研究

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摘要

There is evidence in the literature of mal-distribution of multi-phase flow across identical parallel branches. The distribution of gas-solid flow through identical parallel cyclones is investigated based on an analytical model which includes a semi-empirical equation from the literature for cyclone pressure drop. Using the proposed model, many steady-state gas-solid distributions are obtained. Solutions with maximum energy dissipation are considered to be unlikely. The results indicate that the non-linearity of the system can lead to non-uniform distributions for high solids loadings, whereas lower loadings result in uniform distributions, or those that are so close to being uniform that experiments will not be able to distinguish differences between the flows. Experiments were carried out for a pair of identical standard cyclones of diameter 101.6 mm to determine the distribution of dilute gas-solid flow. The results are consistent with the proposed cyclone model. Finally, it is likely that differential fouling can influence the flow distribution and make it non-uniform.
机译:在文献中有证据表明,相同的平行分支上的多相流分布不均。基于分析模型研究了通过相同的平行旋风分离器的气固流动分布,该分析模型包括文献中有关旋风分离器压降的半经验方程。使用提出的模型,可以获得许多稳态的气固分布。具有最大能量耗散的解决方案被认为是不可能的。结果表明,系统的非线性会导致高固体含量的分布不均匀,而较低的载荷会导致分布均匀,或者由于接近固体而导致实验无法区分两者之间的差异。流量。对直径为101.6 mm的一对相同的标准旋风分离器进行了实验,以确定稀薄的气固流的分布。结果与提出的旋风模型一致。最后,不同的结垢可能会影响流量分布并使其不均匀。

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