arXiv · 1908.08776
Elasto-inertial Chains in a Two-dimensional Turbulent Flow
Abstract
The interplay of inertia and elasticity is shown to have a significant impact on the transport of filamentary objects, modelled by bead-spring chains, in a two-dimensional turbulent flow. We show how elastic interactions amongst inertial beads result in a non-trivial sampling of the flow, ranging from entrapment within vortices to preferential sampling of straining regions. This behavior is quantified as a function of inertia and elasticity and is shown to be very different from free, non-interacting heavy particles, as well as inertialess chains [Picardo et al., Phys. Rev. Lett. 121, 244501 (2018)]. In addition, by considering two limiting cases, of a heavy-headed and a uniformly-inertial chain, we illustrate the critical role played by the mass distribution of such extended objects in their turbulent transport.
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Rahul Singh, Mohit Gupta, Jason R. Picardo, Dario Vincenzi, Samriddhi Sankar Ray. 2019-08-23. Elasto-inertial Chains in a Two-dimensional Turbulent Flow. https://doi.org/10.1103/physreve.101.053105
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