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</script>Dense mixture of granules and liquid often shows a sever shear thickening and is called a dilatant fluid. We construct a fluid dynamics model for the dilatant fluid by introducing a phenomenological state variable for a local state of dispersed particles. With simple assumptions for an equation of the state variable, we demonstrate that the model can describe basic features of the dilatant fluid such as the stress-shear rate curve that represents discontinuous severe shear thickening, hysteresis upon changing shear rate, instantaneous hardening upon external impact. Analysis of the model reveals that the shear thickening fluid shows an instability in a shear flow for some regime and exhibits {\it the shear thickening oscillation}, i.e. the oscillatory shear flow alternating between the thickened and the relaxed states. Results of numerical simulations are presented for one and two-dimensional systems.
12 pages, 17 figures
Models, Molecular, Models, Chemical, Microfluidics, Soft Condensed Matter (cond-mat.soft), FOS: Physical sciences, Computer Simulation, Colloids, Condensed Matter - Soft Condensed Matter, Complex Mixtures
Models, Molecular, Models, Chemical, Microfluidics, Soft Condensed Matter (cond-mat.soft), FOS: Physical sciences, Computer Simulation, Colloids, Condensed Matter - Soft Condensed Matter, Complex Mixtures
| citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | 50 | |
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| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Top 10% | |
| impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network. | Top 10% |
