Frictional fluid instabilities shaped by viscous forces

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作者
Dawang Zhang
James M. Campbell
Jon A. Eriksen
Eirik G. Flekkøy
Knut Jørgen Måløy
Christopher W. MacMinn
Bjørnar Sandnes
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[1] Swansea University,Department of Chemical Engineering
[2] University of Oslo,PoreLab, Njord Center, Department of Physics
[3] Norwegian University of Science and Technology,PoreLab, Department of Chemistry
[4] Norwegian University of Science and Technology,PoreLab, Department of Geoscience and Petroleum
[5] University of Oxford,Department of Engineering Science
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Multiphase flows involving granular materials are complex and prone to pattern formation caused by competing mechanical and hydrodynamic interactions. Here we study the interplay between granular bulldozing and the stabilising effect of viscous pressure gradients in the invading fluid. Injection of aqueous solutions into layers of dry, hydrophobic grains represent a viscously stable scenario where we observe a transition from growth of a single frictional finger to simultaneous growth of multiple fingers as viscous forces are increased. The pattern is made more compact by the internal viscous pressure gradient, ultimately resulting in a fully stabilised front of frictional fingers advancing as a radial spoke pattern.
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