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首页> 外文期刊>Journal of Colloid and Interface Science >CFD simulation of shear-induced aggregation and breakage in turbulent Taylor-Couette flow
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CFD simulation of shear-induced aggregation and breakage in turbulent Taylor-Couette flow

机译:湍流泰勒-库埃特流中剪切诱导的聚集和破裂的CFD模拟

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摘要

An experimental and computational investigation of the effects of local fluid shear rate on the aggregation and breakage of similar to 10 mu m latex spheres suspended in an aqueous solution undergoing turbulent Taylor-Couette flow was carried out. First, computational fluid dynamics (CFD) simulations were performed and the flow field predictions were validated with data from particle image velocimetry experiments. Subsequently, the quadrature method of moments (QMOM) was implemented into the CFD code to obtain predictions for mean particle size that account for the effects of local shear rate on the aggregation and breakage. These predictions were then compared with experimental data for latex sphere aggregates (using an in situ optical imaging method). Excellent agreement between the CFD-QMOM and experimental results was observed for two Reynolds numbers in the turbulent-flow regime. (c) 2004 Elsevier Inc. All rights reserved.
机译:实验和计算研究了局部流体剪切速率对悬浮在经历湍流泰勒-库埃特(Taylor-Couette)流动的水溶液中的类似10微米乳胶球的聚集和破裂的影响。首先,进行了计算流体动力学(CFD)模拟,并使用了来自粒子图像测速实验的数据验证了流场预测。随后,在CFD代码中实现了矩量矩量法(QMOM),以获得对平均粒径的预测,该预测考虑了局部剪切速率对聚集和断裂的影响。然后将这些预测与乳胶球聚集体的实验数据进行比较(使用原位光学成像方法)。在湍流状态下,对于两个雷诺数,CFD-QMOM与实验结果之间具有极好的一致性。 (c)2004 Elsevier Inc.保留所有权利。

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