OutiLab
@OutiLab
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Associate professor at @KTHuniversity. Complex fluids, two-phase flows, flow instability and control. @ERC_Research grantee.
Joined October 2018
🚨New in @JFluidMech ( https://t.co/dYsdH70YEV): We show that #flow and #polymeric #stresses can be predicted in the buffer region using wall data in #viscoelastic #turbulent channel flows. 🌟Towards non-intrusive sensing of VE flows! Great support from: @ricardovinuesa, @OutiLab
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🚀 Thrilled to announce our paper "Numerical Study of Particle Suspensions in Duct Flow of Elastoviscoplastic Fluids" is out in @JFluidMech (Vol 1007)! 🎉 💫Open access! https://t.co/UBnWOvrKuC Thanks to my supervisor @OutiLab, and funding support from @YieldgapITN and #ERC.
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Happy to share that our figure from @JFluidMech article "Bursting bubble in an elastoviscoplastic medium" was chosen as the cover for Vol. 1001! Article: https://t.co/bxBXaBMPoR Cover: https://t.co/te78WeosJy Thanks to my collab: @VatsalSanjay @maziyarj @ricardovinuesa @OutiLab!
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Congratulations @Arivazhagan_GB on behalf of @OutiLab!!
📝Just published in the Journal of Fluid Mechanics! We investigate how the rheological properties of elasto-viscoplastic liquid govern the bubble-bursting phenomenon. 🔗Read the open-access paper: https://t.co/bxBXaBMhzj Collab:@VatsalSanjay @maziyarj @ricardovinuesa @OutiLab
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Congratulations to Daniel Bonn, Antoine Deblais, Tess Heeremans and Sander Woutersen! They won an Ig Nobel prize for their research in which they investigate the behaviour of drunk worms as a particular form of active matter.
iop.uva.nl
Daniel Bonn, Antoine Deblais, Tess Heeremans and Sander Woutersen have won an Ig Nobel prize for their research in which they investigate the behaviour of drunk worms as a particular form of active...
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Nice to see KTH highlighting this work led by Selim Tanrıverdi, where our @YieldgapITN students Shahriar Habibi and Kasra Amini participated https://t.co/IlatSmdOnO
kth.se
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Excited to release our latest work, led by @CBrowneSciClown: https://t.co/5KA62kERbG! Here, we introduce a simple, robust, versatile, & predictive way to mix fluids in porous media—where slow diffusion in laminar flows typically limits mixing. 🌪️💧 Tweetorial follows... [1/6]
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Interested in #particles and #viscoelastic #fluids or #microfluidics? Check out the fruits of our latest collaboration with @scilifelab. With @Shabibi1994, Kasra Amini, Selim Tanriverdi, Aman Russom et al. https://t.co/rda6PgPpdn
nature.com
Microsystems & Nanoengineering - Elasto-inertial focusing and particle migration in high aspect ratio microchannels for high-throughput separation
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Interested in #porousmedia #flow #rheology or #elasticturbulence? Check out our newest article on elastoviscoplastic flows through random porous media at higher Bingham! With @EChaparian and S. Parvar. https://t.co/VH5m8fXKbA
link.springer.com
Theoretical and Computational Fluid Dynamics - A numerical study of yield-stress fluids flowing in porous media is presented. The porous media is randomly constructed by non-overlapping...
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🚨New #Job Alert!! Interested in applying #MachineLearning (#ML) for insight into #NonNewtonian #turbulence? #ComplexFluids group at @KTH has a PhD pos. together with #VinuesaLab in the SCALE #Doctoral #Network with #deadline 15th Jan.: https://t.co/aMf8n4Zcoe RT appreciated!
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Interested in flow-structure interaction? Check out the work of our postdoc Vishal on modelling fibres with large deformations coupled with flow: https://t.co/Y6H0z3A6Do
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I have Two Postdoc openings in my group: Computational Hydrodynamics of Active Matter: https://t.co/McBaNtabtA Experimental Biophysics: https://t.co/ey6NjfzL6M
#TheoBiophysicsPosition #ScienceJobs RT is much appreciated 🙏🏼
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The next seminar in the "Fluid Mechanics Webinar Series" is coming up: Title: Spreading of yield stress fluids Speaker: Jean-François Joanny Time: Fri 1600 (GMT) 1100 (EDT) on October 06 More info and RSVP via Cassyni
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We have two assistant professor positions open in fluid mechanics at FLOW center @KTHuniversity! https://t.co/YnAErD5uCz
https://t.co/jgv4IYFxH7
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In a new study, @SamiYamani4 et al. shows that submerged planar jets of viscoelastic fluid generates a state of elasto-inertial turbulence (EIT) with drastic different features to their Newtonian counterpart. See their striking experiments and analysis @ https://t.co/6dfETy7HEi
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