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- W2894462451 abstract "We develop a model for the microstructure and the stress, in dense suspensions of non-Brownian, perfectly smooth spheres at vanishing particle Reynolds number. These quantities are defined in terms of the second-order moment $mathbit{a}$ of the distribution function of the orientation unit vector between hydrodynamically interacting particles. We show, from first principles, that the evolution equation of $mathbit{a}$ contains a source term that accounts for the association and the dissociation of interacting particle pairs. This term provides a microscopic explanation for typical non-Newtonian behavior, observed in experiments in the literature, including normal stress differences in steady shear flow, as well as time-dependent stress after abruptly reversed shear flow and during oscillating shear flow." @default.
- W2894462451 created "2018-10-05" @default.
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- W2894462451 date "2018-09-27" @default.
- W2894462451 modified "2023-09-27" @default.
- W2894462451 title "Modeling sphere suspension microstructure and stress" @default.
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- W2894462451 doi "https://doi.org/10.1103/physreve.98.033119" @default.
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