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Coupled dynamics of flow, microstructure, and conductivity in sheared suspensions

机译:剪切悬浮液中流动,微观结构和电导率的耦合动力学

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摘要

We propose a model for the evolution of the conductivity tensor for a flowing suspension of electrically conductive particles. We use discrete particle numerical simulations together with a continuum physical framework to construct an evolution law for the suspension microstructure during flow. This model is then coupled with a relationship between the microstructure and the electrical conductivity tensor. Certain parameters of the joint model are fit experimentally using rheo-electrical conductivity measurements of carbon black suspensions under flow over a range of shear rates. The model is applied to the case of steady shearing as well as time-varying conductivity of unsteady flow experiments. We find that the model prediction agrees closely with the measured experimental data in all cases.
机译:我们提出了一个用于导电颗粒流动悬浮液的电导率张量演化的模型。我们使用离散粒子数值模拟以及连续物理框架来构造流动过程中悬浮微结构的演化规律。然后将该模型与微观结构和电导率张量之间的关系耦合。接头模型的某些参数通过在一定剪切速率范围内流动的炭黑悬浮液的流变电导率测量值进行了实验拟合。该模型适用于稳态剪切以及非稳态流动实验的时变电导率的情况。我们发现,在所有情况下,模型预测都与实测数据非常吻合。

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