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Influence of meso-scale structures on drag in gas-solid fluidized beds

机译:中尺度结构对气固流化床阻力的影响

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Meso-scale structures lead to heterogeneity of gas-solid flows which cannot be properly modeled by homogeneous drag models. Heterogeneous drag models have been developed, but there are still some problems with these heterogeneous drag models. The present work identifies the key reasons why predictions of the QL-EMMS drag model do not match those of the experimentally based O-S model and then aims to improve the QL-EMMS model. Since the meso-scale structures are the key reason for the heterogeneities in the two-phase flows, the influence of the cluster characteristics on the drag force needs to be further understood. The present work investigates the effects of both the cluster size and the cluster density on the drag function by sensitivity analyses. Both influences are analyzed to show that the cluster density has a greater effect on the drag force. Thus, the inaccuracy of the drag model is due to the inaccuracy of the cluster density model with the essential reasons being the basic concepts in EMMS theory. Then the characteristics of cluster density are further investigated to show that the cluster density curve tends to coincide with the homogeneous 45 degrees line in the extreme dilute and dense extremes, and then tends to the heterogeneous state around a local solid volume fraction epsilon(s) = 0.1. A mathematical model was then developed to complement EMMS theory. (C) 2015 Elsevier B.V. All rights reserved.
机译:中尺度结构导致气固两相流的非均质性,而均质阻力模型无法对其进行正确建模。已经开发了异构阻力模型,但是这些异构阻力模型仍然存在一些问题。本工作确定了为什么QL-EMMS阻力模型的预测与基于实验的O-S模型的预测不匹配的关键原因,然后旨在改进QL-EMMS模型。由于中尺度结构是两相流中非均质性的关键原因,因此需要进一步了解团簇特性对阻力的影响。本工作通过敏感性分析研究了簇大小和簇密度对拖曳功能的影响。分析这两种影响,以表明簇密度对拖曳力的影响更大。因此,阻力模型的不准确性是由于簇密度模型的不准确性所致,其根本原因是EMMS理论中的基本概念。然后进一步研究了团簇密度的特性,表明团簇密度曲线在极端稀疏和稠密的极端情况下趋于与均匀的45度线重合,然后在局部固体体积分数ε附近趋于非均质状态。 = 0.1。然后开发了数学模型以补充EMMS理论。 (C)2015 Elsevier B.V.保留所有权利。

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