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首页> 外文期刊>Rheologica Acta >Simulations of magnetorheological suspensions in Poiseuille flow
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Simulations of magnetorheological suspensions in Poiseuille flow

机译:Poiseuille流中的磁流变悬浮液的模拟

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Particle-level simulations are conducted to study magnetorheological fluids in plane Poiseuille flow. The importance of the boundary conditions for the particles at the channel walls is examined by considering two extreme cases: no friction and infinite coefficient of friction. The inclusion of friction produces Bingham fluid behavior, as commonly observed experimentally for MR suspensions. Lamellar structures, similar to those reported for electrorheological fluids in shear flow, are observed in the post-yield region for both particle boundary conditions. The formation of these lamellae is accompanied by an increase in the bulk fluid velocity. The slip boundary condition produces higher fluid velocities and thicker lamellar structures.
机译:进行了颗粒级模拟以研究平面Poiseuille流中的磁流变流体。通过考虑两种极端情况来检查通道壁处颗粒边界条件的重要性:无摩擦和无限摩擦系数。如MR悬架实验中通常观察到的那样,包含摩擦会产生宾汉流体行为。在两个颗粒边界条件的屈服后区域都观察到了类似于剪切流变流变流体报道的层状结构。这些薄片的形成伴随着整体流体速度的增加。滑动边界条件产生较高的流体速度和较厚的层状结构。

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