将扭矩流变仪与超声波速度剖面仪联用,评估振荡剪切流中的多相流体

K. Ohie, Taiki Yoshida, Yuji Tasaka
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引用次数: 0

摘要

我们提出了一种扭矩流变仪与超声波速度剖面仪(UVP)相结合的方法,用于评估多相流体在振荡剪切流中的体积流变性。流变仪主要由宽间隙同轴圆柱体组成,外圆柱体正弦振动,内圆柱体固定在扭矩传感器上,用于测量壁面剪应力。根据柯西运动方程,从速度信息中获得剪应力的时空分布,并将壁面剪应力作为边界条件。将该流变仪应用于羧甲基纤维素水溶液,并与标准扭矩型流变仪进行了比较。评估的粘弹性能结果相互吻合,表明了所建议的流变仪的有效性。为了进一步研究流变仪对多相流体的适用性,测量了直径为 220μm 的固体球形颗粒悬浮液,其体积分数为 0.8-3.4%,超出了标准流变仪的适用范围。对于体积分数不超过 3% 的颗粒,在可用 UVP 测量的情况下,相对粘度与理论公式十分吻合。这表明该方法适用于检测多相流体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coupling a torque rheometer with an ultrasonic velocity profiler for evaluating multiphase fluids in oscillatory shear flows
We propose a torque rheometer coupled with an ultrasonic velocity profiler (UVP) for evaluating multiphase fluids as bulk rheology in oscillatory shear flows. The rheometer mainly consists of wide-gap coaxial cylinders, where the outer cylinder is sinusoidally oscillated and the inner cylinder is fixed to a torque sensor for measuring the wall shear stress. Based on Cauchy’s equation of motion, the spatiotemporal distribution of the shear stress is obtained from the velocity information and the wall shear stress as a boundary condition. This rheometer was applied to a carboxymethyl cellulose aqueous solution and compared with a standard torque-type rheometer. The results of the evaluated viscoelastic properties agreed well with each other, indicating the validity of the proposed rheometry. To further investigate the applicability of the rheometer to multiphase fluids, suspensions of solid spherical particles with a diameter of 220μm with volume fraction of 0.8–3.4% were measured, which are out of the applicable ranges of the standard rheometer. For volume fractions up to 3% where the UVP measurement is available, the relative viscosity agrees well with a theoretical formula. This indicates the applicability of the method to examine multiphase fluids.
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