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A field-oriented chain of dipolar particles in elongational flow

机译:伸长流中偶极粒子的场定向链

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We study the behavior of an isolated field-oriented chain of dipolar particles in elongational fluid flow. Our main goal is to emphasize the effect of dipolar interactions on the chain's contribution to the pressure tensor and to the viscosities of a dilute suspension of these linear aggregates. In our model, despite the overall rigid appearance of the chain at rest, the constituent beads may move slightly relative to one another, conferring a certain degree of flexibility to the chain. This flexibility is quantified in terms of a dimensionless parameter, #lambda#~(-1), comparing thermal and dipolar energies. We perform an expansion in #lambda#~(-1), and obtain the first correction to the rigid chain contribution to the Kramers' pressure tensor for different flow geometries. The interplay of the elongational flow field and the field-induced chain orientation gives rise to a rich variety of scenarios. We compute the elongational, shear, and rotational viscosities in some representative situations.
机译:我们研究了伸长的流体流动中偶极粒子的孤立的场定向链的行为。我们的主要目标是强调偶极相互作用对链对压力张量和这些线性聚集体的稀悬浮液粘度的影响。在我们的模型中,尽管静止时链条总体呈刚性状态,但组成的珠子可能会相对彼此稍微移动,从而为链条提供一定程度的柔韧性。通过比较热能和偶极能的无量纲参数#lambda#〜(-1)来量化这种灵活性。我们在#lambda#〜(-1)中执行扩展,并获得了针对不同流动几何形状的刚性链对Kramers压力张量的首次修正。伸长流场与场致链取向的相互作用导致了各种各样的情况。在某些代表性情况下,我们计算伸长,剪切和旋转粘度。

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