Numerical Simulations of a Centrifugal Pump With a Non-Newtonian Fluid: Influence on Performances of Different Rheological Modelling

Matteo Occari, V. Mazzanti, F. Mollica, Enrico Munari, M. Pinelli, A. Suman
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引用次数: 1

Abstract

Centrifugal pumps change their performance with respect to water when processing non-Newtonian fluids. Many aspects about pumping of non-Newtonian fluids remain to be clarified due to complexity of the matter and the scarcity of investigations. In addition to experimental tests, in recent years some CFD fluid dynamics simulations have been realized to analyze the performance of centrifugal pumps with non-Newtonian fluids. Knowledge of rheology is required to correctly simulate the fluid inside the pump and predict the performance. The aim of this work is to emphasize the criticalities in the simulation of centrifugal pumps with non-Newtonian fluids, since, starting from the same rheological data, can be deduced different rheological laws, however reliable, that produce different effects on the simulations. In this paper, the performances of a model pump were measured experimentally with pear juice and accompanied by the rheological characterization of the fluid. Subsequently, the pump was simulated using five different rheology laws, all fitted to the same experimental rheogram, that differ from each other in predicting viscosity out of shear rate range experimentally measured. The pump performances were affected by the different rheology implemented. The simulations showed that the shear rates developed inside the pump are much higher than those measured with the rheometer. Consequently is necessary to achieve higher shear rates in the experimental rheogram to make sure to correctly model the rheology for shear rates values typically present in the pump.
非牛顿流体离心泵的数值模拟:不同流变模型对泵性能的影响
当处理非牛顿流体时,离心泵改变了它们相对于水的性能。由于问题的复杂性和研究的稀缺性,关于非牛顿流体泵送的许多方面仍有待澄清。除了实验测试,近年来还实现了一些CFD流体动力学模拟来分析非牛顿流体离心泵的性能。要正确模拟泵内流体并预测其性能,需要具备流变学知识。这项工作的目的是强调非牛顿流体的离心泵模拟的重要性,因为,从相同的流变数据开始,可以推断出不同的流变规律,无论多么可靠,对模拟产生不同的影响。本文用梨汁对模型泵的性能进行了实验测量,并对流体进行了流变学表征。随后,使用五种不同的流变规律对泵进行了模拟,这些规律都适用于相同的实验流变图,它们在预测剪切速率范围之外的粘度时彼此不同。不同的流变性会影响泵的性能。模拟结果表明,泵内发生的剪切速率远高于流变仪测量的剪切速率。因此,有必要在实验流变图中实现更高的剪切速率,以确保正确地模拟通常存在于泵中的剪切速率值的流变学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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