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首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Simulations of an elastic particle in Newtonian and viscoelastic fluids subjected to confined shear flow
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Simulations of an elastic particle in Newtonian and viscoelastic fluids subjected to confined shear flow

机译:牛顿流体和粘弹性流体在有限剪切流作用下的弹性颗粒模拟

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摘要

The deformation and cross-streamline migration of an initially spherical neo-Hookean elastic particle suspended in confined shear flow of Newtonian and Giesekus viscoelastic fluids is studied through 3D arbitrary Lagrangian Eulerian finite element method numerical simulations. In both a Newtonian and a Giesekus liquid, when suspended in a symmetric position with respect to the walls of the flow cell, the particle deforms until reaching a steady ellipsoid-like shape, with a fixed orientation with respect to the flow direction. The dependences of such deformation and orientation on the flow strength, the geometric confinement, and the rheological properties of the suspending liquid are investigated. If the particle is initially closer to a wall of the channel than to the other, it also migrates transversally to the flow direction. In a Newtonian liquid, migration is always towards the center plane of the channel. In a Giesekus viscoelastic liquid, the migration direction depends on the competition between the elastic and the viscous forces arising in the suspending fluid; in a certain range of constitutive parameters, an 'equilibrium vertical position' in between the mid plane and the (upper/lower) wall of the channel is found, which acts as an attractor for particle migration.
机译:通过3D任意拉格朗日欧拉有限元方法数值模拟研究了悬浮在牛顿和吉塞库斯粘弹性流体有限剪切流中的球形新霍克弹性颗粒的变形和跨流线迁移。在牛顿液体和Giesekus液体中,当悬浮在相对于流通池壁对称的位置时,粒子都会变形,直到达到稳定的椭球状形状(相对于流动方向的方向是固定的)。研究了这种变形和取向对悬浮液的流动强度,几何限制和流变性的依赖性。如果粒子最初比其他粒子更靠近通道壁,则它也将横向移动到流向。在牛顿液体中,迁移总是朝着通道的中心平面进行。在Giesekus粘弹性液体中,迁移方向取决于悬浮液中产生的弹性力和粘性力之间的竞争。在一定的本构参数范围内,在通道的中平面和(上/下)壁之间存在一个“平衡垂直位置”,它充当粒子迁移的吸引子。

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