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Investigating polydisperse suspensions involving fibres of very different aspect ratio: from direct numerical simulations to Folgar Tucker modelling

机译:调查涉及非常不同的纵横比的纤维的多分散悬浮液:从直接数值模拟到叶果和Tucker建模

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Even though significant progress has been made in the modelling and simulation of short fibre suspensions involved in reinforced polymers, recent industrial practice mixes fibres of very different aspect ratio and no existing model has been validated in such circumstances when the concentration is large enough. In absence of fibre-fibre interactions, each fibre population associated to a particular aspect ratio can be modelled by means of the Jeffery equation at the microscopic scale or its macroscopic counterpart involving the moments of the orientation distribution function (e.g. the second-orientation tensor). Direct numerical simulations (DNS) showed that both descriptions are almost equivalent in unconfined flows. When fibre-fibre interactions are considered. we also showed in our former works that macroscopic approaches based on the Folgar & Tucker model offer a reasonable accuracy as well when compared with DNS predictions in unconfined flows. However, all these developments were carried out for mono-disperse suspensions, i.e. suspensions with a unique fibre aspect ratio. For a slight poly-dispersity about a given fibre aspect ratio, macroscopic predictions based on the Folgar & Tucker model remain reasonably accurate. In this work, we address a totally different scenario involving two populations with two very different aspect ratios, one of a few tens, thus approaching the configuration of rods, whereas the other is close to one, i.e. approaching the spherical shape. The validity of macroscopic models will be analyzed by means of appropriate direct numerical simulations.
机译:尽管在增强聚合物中涉及的短纤维悬浮液的建模和模拟中进行了显着进展,但最近的工业实践混合了非常不同的纵横比的纤维,并且在这种情况下没有现有的模型已经验证了浓度足够大。在没有纤维 - 纤维相互作用的情况下,可以通过在涉及取向分布函数的瞬间(例如二取向张量)的微观尺度或其宏观对应物的jeffery方程来建模与特定宽高比相关的每个纤维群。 。直接数值模拟(DNS)表明,两个描述几乎相当于不合适的流量。考虑光纤相互作用时。我们在我们的前工作中展示了基于FOLGAR和TUCKER模型的宏观方法提供了合理的准确性,并且与无粉流量的DNS预测相比,也可以提供合理的准确性。然而,所有这些发展都是用于单分散悬浮液,即具有独特纤维纵横比的悬浮液。对于对给定光纤纵横比的微小多分散性,基于FOLGAR和TUCKER模型的宏观预测仍然合理准确。在这项工作中,我们解决了一个完全不同的场景,涉及两个具有两个非常不同的纵横比的群体,其中几十个,从而接近杆的构造,而另一个是接近一个,即接近球形。将通过适当的直接数值模拟分析宏观模型的有效性。

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