Geometrical and Experimental Conditions for the Homogeneous and Inhomogeneous Flows of the Polyethylene Oxide Solution in the Cylinder of Couette

Ngargoto Ngarmoundou, El Hadji Oumar Gueye, M. Barka, A. Beye
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Abstract

A simple method for characterizing the flow curve of a polymer solution (PEO) in shear in Couette geometry is developed. It consists in considering a priori the fluid in Newtonian flow with the assumptions related to the influence of the rheological and geometrical parameters, then to evaluate the shearing speed characteristic of this partially and/or totally sheared material. The results obtained by the numerical simulations in 2D and in 3D in this flow configuration allow to find a heterogeneity of rheological behavior related to the properties of the fluid on the one hand and on the other hand, to size the Couette geometry while fixing explicitly the experimental conditions according to whether the fluid is Newtonian or not Newtonian.
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聚氧乙烯溶液在Couette圆筒内均匀和不均匀流动的几何和实验条件
提出了一种用Couette几何方法表征聚合物溶液(PEO)剪切流动曲线的简单方法。它包括先验地考虑流体在牛顿流动中与流变和几何参数的影响有关的假设,然后评估这种部分和/或完全剪切材料的剪切速度特性。通过二维和三维的数值模拟得到的结果,一方面可以发现与流体性质相关的流变行为的非均质性,另一方面可以根据流体是否为牛顿性明确确定实验条件,从而确定Couette几何的大小。
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