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Active Darcy’s Law

Ryan R. Keogh, Timofey Kozhukhov, Kristian Thijssen, Tyler N. Shendruk

2024Physical Review Letters10 citationsDOIOpen Access PDF

Abstract

While bacterial swarms can exhibit active turbulence in vacant spaces, they naturally inhabit crowded environments. We numerically show that driving disorderly active fluids through porous media enhances Darcy's law. While purely active flows average to zero flux, hybrid active/driven flows display greater drift than purely pressure-driven flows. This enhancement is nonmonotonic with activity, leading to an optimal activity to maximize flow rate. We incorporate the active contribution into an active Darcy's law, which may serve to help understand anomalous transport of swarming in porous media.

Topics & Concepts

Porous mediumDarcy's lawMechanicsTurbulenceActive matterSwarming (honey bee)PhysicsPorosityGeologyGeotechnical engineeringCell biologyBiologyBotanyMicro and Nano RoboticsMicrofluidic and Bio-sensing TechnologiesPickering emulsions and particle stabilization
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