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Settling of spherical particles in unbounded and confined surfactant-based shear thinning viscoelastic fluids: An experimental study

机译:在无边界和受限的基于表面活性剂的剪切稀化粘弹性流体中球形颗粒的沉降:一项实验研究

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An experimental study is performed to understand and quantify settling velocity of spherical particles in unbounded and confined surfactant-based shear thinning viscoelastic fluids. Experimental data is presented to show that elastic effects can increase or decrease the settling velocity of particles, even in the creeping flow regime. Experimental data shows that a significant drag reduction occurs with increase in Weissenberg number. This is followed by a transition to increasing drag at higher Weissenberg numbers. A new correlation is presented for the sphere settling velocity in unbounded viscoelastic fluids as a function of the fluid rheology and the proppant properties.The wall factors for sphere settling velocities in viscoelastic fluids confined between solid parallel plates are calculated from experimental measurements made on these fluids over a range of Weissenberg numbers. Results indicate that elasticity reduces the effect of the confining walls and this reduction is more pronounced at higher ratios of the particle diameter to spacing between the walls. Shear thinning behavior of fluids is observed to reduce the retardation effect of the confining walls. A new empirical correlation for wall factors for spheres settling in a viscoelastic fluid confined between two parallel walls is presented.
机译:进行了一项实验研究,以了解和量化无边界和受限的基于表面活性剂的剪切稀化粘弹性流体中球形颗粒的沉降速度。实验数据表明,即使在蠕变流动状态下,弹性效应也可以增加或减小颗粒的沉降速度。实验数据表明,随着魏森伯格数的增加,阻力明显减小。接下来是向较高Weissenberg数增加阻力的过渡。根据流体流变学和支撑剂性能,提出了一种新的相关关系,即无边界粘弹性流体中的球沉降速度。通过对这些流体进行的实验测量,计算了限制在固体平行板之间的粘弹性流体中球沉降速度的壁因子。在一系列魏森伯格数上。结果表明,弹性降低了限制壁的作用,并且这种降低在较高的粒径与壁之间的间距之比时更加明显。观察到流体的剪切稀化行为降低了围壁的阻滞作用。提出了一种新的经验公式,用于确定球体在两个平行壁之间限定的粘弹性流体中沉降的壁因子。

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