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- W2345671745 abstract "This article provides experimental analysis as well as numerical simulation of flow of liquids and suspensions through laboratory models of basic bifurcating channel geometries. Numerical results of single phase Newtonian and non-Newtonian (power law) fluid flow in 3-dimensional square channels show good agreement with experimental data. The particle-laden experiments are carried out with neutrally buoyant suspension of spherical particles for different inlet solid volume fraction and different D∥/D⊥ where D∥ is the width of the straight branch and D⊥ is the width of side branch of the channel for a range of Reynolds numbers, 0 < Re < 800; D∥ = D0, with D0 the width of the inlet branch. The focus of the multiphase flow study is on the role of the size ratio of the side channel to the primary or straight channel, and the relative size of the particle to the channel widths. The Reynolds number is defined as Re = ρD0U/η, where U is the average velocity at inlet, while ρ and η are density and viscosity of the fluid, respectively." @default.
- W2345671745 created "2016-06-24" @default.
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- W2345671745 date "2016-07-01" @default.
- W2345671745 modified "2023-09-25" @default.
- W2345671745 title "Particle transport in laboratory models of bifurcating fractures" @default.
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- W2345671745 doi "https://doi.org/10.1016/j.jngse.2016.04.008" @default.
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