Decoding the complexity of turbulence at its origin

Project Period: 2013-06-01 – 2017-12-31
Externally Funded
Acronym
TURBOFLOW
Principal Investigator
Björn Hof
Department(s)
Hof Group
Grant Number
306589
Funding Organisation
FP7_ERC

15 Publications

2018 | Journal Article | IST-REx-ID: 328   OA
Exceeding the asymptotic limit of polymer drag reduction
G.H. Choueiri, J.M. Lopez Alonso, B. Hof, Physical Review Letters 120 (2018) 124501.
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2013 | Journal Article | IST-REx-ID: 2829   OA
Scale invariance at the onset of turbulence in couette flow
L. Shi, M. Avila, B. Hof, Physical Review Letters 110 (2013).
View | DOI | Download (ext.) | arXiv
 
2018 | Journal Article | IST-REx-ID: 461   OA
Destabilizing turbulence in pipe flow
J. Kühnen, B. Song, D. Scarselli, N.B. Budanur, M. Riedl, A. Willis, M. Avila, B. Hof, Nature Physics 14 (2018) 386–390.
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2017 | Journal Article | IST-REx-ID: 745   OA
Transition to turbulence in pulsating pipe flow
D. Xu, S. Warnecke, B. Song, X. Ma, B. Hof, Journal of Fluid Mechanics 831 (2017) 418–432.
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2017 | Journal Article | IST-REx-ID: 1087   OA
Speed and structure of turbulent fronts in pipe flow
B. Song, D. Barkley, B. Hof, M. Avila, Journal of Fluid Mechanics 813 (2017) 1045–1059.
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2015 | Journal Article | IST-REx-ID: 1664   OA
The rise of fully turbulent flow
D. Barkley, B. Song, M. Vasudevan, G.M. Lemoult, M. Avila, B. Hof, Nature 526 (2015) 550–553.
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2019 | Journal Article | IST-REx-ID: 6486   OA
Relaminarization of pipe flow by means of 3D-printed shaped honeycombs
J. Kühnen, D. Scarselli, B. Hof, Journal of Fluids Engineering 141 (2019) 111105.
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2015 | Journal Article | IST-REx-ID: 1837
Subcritical versus supercritical transition to turbulence in curved pipes
J. Kühnen, P. Braunshier, M. Schwegel, H. Kuhlmann, B. Hof, Journal of Fluid Mechanics 770 (2015).
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2013 | Journal Article | IST-REx-ID: 2811   OA
Nature of laminar-turbulence intermittency in shear flows
M. Avila, B. Hof, Physical Review E 87 (2013).
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2018 | Journal Article | IST-REx-ID: 422   OA
Relaminarization by steady modification of the streamwise velocity profile in a pipe
J. Kühnen, D. Scarselli, M. Schaner, B. Hof, Flow Turbulence and Combustion 100 (2018) 919–942.
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2016 | Journal Article | IST-REx-ID: 1494
Directed percolation phase transition to sustained turbulence in Couette flow
G.M. Lemoult, L. Shi, K. Avila, S.V. Jalikop, M. Avila, B. Hof, Nature Physics 12 (2016) 254–258.
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2013 | Journal Article | IST-REx-ID: 2834   OA
Streamwise-localized solutions at the onset of turbulence in pipe flow
M. Avila, F. Mellibovsky, N. Roland, B. Hof, Physical Review Letters 110 (2013).
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2018 | Journal Article | IST-REx-ID: 5996   OA
The critical point of the transition to turbulence in pipe flow
M. Vasudevan, B. Hof, Journal of Fluid Mechanics 839 (2018) 76–94.
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2019 | Journal Article | IST-REx-ID: 6228   OA
Relaminarising pipe flow by wall movement
D. Scarselli, J. Kühnen, B. Hof, Journal of Fluid Mechanics 867 (2019) 934–948.
View | Files available | DOI | Download (ext.) | arXiv
 
2017 | Journal Article | IST-REx-ID: 661   OA
Friction forces position the neural anlage
M. Smutny, Z. Ákos, S. Grigolon, S. Shamipour, V. Ruprecht, D. Capek, M. Behrndt, E. Papusheva, M. Tada, B. Hof, T. Vicsek, G. Salbreux, C.-P.J. Heisenberg, Nature Cell Biology 19 (2017) 306–317.
View | Files available | DOI | Download (ext.) | PubMed | Europe PMC