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dc.contributor.authorYamani, Sami
dc.contributor.authorKeshavarz, Bavand
dc.contributor.authorRaj, Yashasvi
dc.contributor.authorZaki, Tamer A
dc.contributor.authorMcKinley, Gareth H
dc.contributor.authorBischofberger, Irmgard
dc.date.accessioned2021-12-14T13:07:03Z
dc.date.available2021-12-14T13:07:03Z
dc.date.issued2021-08-13
dc.identifier.urihttps://hdl.handle.net/1721.1/138470
dc.description.abstractDissolving small amounts of polymer into a Newtonian fluid can dramatically change the dynamics of transitional and turbulent flows. We investigate the spatiotemporal dynamics of a submerged jet of dilute polymer solution entering a quiescent bath of Newtonian fluid. High-speed digital Schlieren imaging is used to quantify the evolution of Lagrangian features in the jet revealing a rich sequence of transitional and turbulent states. At high levels of viscoelasticity, we identify a new distinct transitional pathway to elastoinertial turbulence (EIT) that does not feature the conventional turbulent bursts and instead proceeds via a shear-layer instability that produces elongated filaments of polymer due to the nonlinear effects of viscoelasticity. Even though the pathways to the EIT state can be different, and within EIT the spatial details of the turbulent structures vary systematically with polymer microstructure and concentration, there is a universality in the power-law spectral decay of EIT with frequency, f^{-3}, independent of fluid rheology and flow parameters.en_US
dc.language.isoen
dc.publisherAmerican Physical Society (APS)en_US
dc.relation.isversionof10.1103/physrevlett.127.074501en_US
dc.rightsArticle is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use.en_US
dc.sourceAPSen_US
dc.titleSpectral Universality of Elastoinertial Turbulenceen_US
dc.typeArticleen_US
dc.identifier.citationYamani, Sami, Keshavarz, Bavand, Raj, Yashasvi, Zaki, Tamer A, McKinley, Gareth H et al. 2021. "Spectral Universality of Elastoinertial Turbulence." Physical Review Letters, 127 (7).
dc.relation.journalPhysical Review Lettersen_US
dc.eprint.versionFinal published versionen_US
dc.type.urihttp://purl.org/eprint/type/JournalArticleen_US
eprint.statushttp://purl.org/eprint/status/PeerRevieweden_US
dc.date.updated2021-12-14T12:57:21Z
dspace.orderedauthorsYamani, S; Keshavarz, B; Raj, Y; Zaki, TA; McKinley, GH; Bischofberger, Ien_US
dspace.date.submission2021-12-14T12:57:23Z
mit.journal.volume127en_US
mit.journal.issue7en_US
mit.licensePUBLISHER_POLICY
mit.metadata.statusAuthority Work and Publication Information Neededen_US


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