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1
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The minimal flow unit in near-wall turbulence
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J. Jiménez and P. Moin, "The minimal flow unit in near-wall turbulence," J. Fluid Mech. 225, 213-240 (1991).
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Hierarchy of minimal flow units in the logarithmic layer
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O. Flores and J. Jiménez, "Hierarchy of minimal flow units in the logarithmic layer," Phys. Fluids 22, 071704 (2010).
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Flores, O.1
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Scaling of the velocity fluctuations in turbulent channels up to Reτ = 2003
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S. Hoyas and J. Jiménez, "Scaling of the velocity fluctuations in turbulent channels up to Reτ = 2003," Phys. Fluids 18, 011702 (2006).
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Phys. Fluids
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Hoyas, S.1
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4
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The three-dimensional structure of momentum transfer in turbulent channels
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A. Lozano-Duŕan,O. Flores, and J. Jiménez, "The three-dimensional structure of momentum transfer in turbulent channels," J. Fluid Mech. 694, 100-130 (2012).
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Lozano-Duŕan, A.1
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Large-scale and very-large-scale motions in turbulent pipe flow
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M. Guala, S. E. Hommema, and R. J. Adrian, "Large-scale and very-large-scale motions in turbulent pipe flow," J. Fluid Mech. 554, 521-542 (2006).
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Compact finite difference schemes with spectral-like resolution
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Spectral methods for the Navier-Stokes equations with one infinite and two periodic directions
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How linear is wall-bounded turbulence?
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J. Jiménez, "How linear is wall-bounded turbulence?" Phys. Fluids 25, 110814 (2013).
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Jiménez, J.1
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Spectra of the very large anisotropic scales in turbulent channels
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J. C. del Álamo and J. Jiménez, "Spectra of the very large anisotropic scales in turbulent channels," Phys. Fluids 15, L41-L44 (2003).
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del Álamo, J.C.1
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11
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Scaling of the energy spectra of turbulent channels
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J. C. del Álamo, J. Jiménez, P. Zandonade, and R. D. Moser, "Scaling of the energy spectra of turbulent channels," J. Fluid Mech. 500, 135-144 (2004).
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del Álamo, J.C.1
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12
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Reynolds-number scaling of turbulent channel flow
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M. P. Schultz and K. A. Flack, "Reynolds-number scaling of turbulent channel flow," Phys. Fluids 25, 025104 (2013).
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Schultz, M.P.1
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13
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The structure of intense vorticity in isotropic turbulence
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J. Jiménez, A. A. Wray, P. G. Saffman, and R. S. Rogallo, "The structure of intense vorticity in isotropic turbulence," J. Fluid Mech. 255, 65-90 (1993).
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Jiménez, J.1
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14
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Reynolds number dependence, scaling, and dynamics of turbulent boundary layers
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Wall-bounded turbulent flows at high Reynolds numbers: Recent advances and key issues
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I. Marusic, B. J. McKeon, P. A. Monkewitz, H. M. Nagib, A. J. Smits, and K. R. Sreenivasan, "Wall-bounded turbulent flows at high Reynolds numbers: Recent advances and key issues," Phys. Fluids 22, 065103 (2010).
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16
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High-Reynolds number wall turbulence
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A. J. Smits, B. J.McKeon, and I.Marusic, "High-Reynolds number wall turbulence," Annu. Rev. FluidMech. 43, 353-375 (2011).
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17
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Cascades in wall-bounded turbulence
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J. Jiménez, "Cascades in wall-bounded turbulence," Annu. Rev. Fluid Mech. 44, 27-45 (2012).
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Jiménez, J.1
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18
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Reynolds number effects on the Reynolds-stress budgets in turbulent channels
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S. Hoyas and J. Jiménez, "Reynolds number effects on the Reynolds-stress budgets in turbulent channels," Phys. Fluids 20, 101511 (2008).
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Hoyas, S.1
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A comparative study of near-wall turbulence in high and low Reynolds number boundary layers
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M. M. Metzger and J. C. Klewicki, "A comparative study of near-wall turbulence in high and low Reynolds number boundary layers," Phys. Fluids 13, 692-701 (2001).
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Turbulent fluctuations above the buffer layer of wall-bounded flows
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J. Jiménez and S. Hoyas, "Turbulent fluctuations above the buffer layer of wall-bounded flows," J. Fluid Mech. 611, 215-236 (2008).
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Jiménez, J.1
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22
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Turbulent pipe flow at extreme Reynolds numbers
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M. Hultmark, M. Vallikivi, S. C. C. Bailey, and A. J. Smits, "Turbulent pipe flow at extreme Reynolds numbers," Phys. Rev. Lett. 108, 094501 (2012).
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24
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Equilibrium layers and wall turbulence
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A. A. Townsend, "Equilibrium layers and wall turbulence," J. Fluid Mech. 11, 97-120 (1961).
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Townsend, A.A.1
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25
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77957157137
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Turbulent boundary layers and channels at moderate Reynolds numbers
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J. Jiménez, S. Hoyas, M. P. Simens, and Y. Mizuno, "Turbulent boundary layers and channels at moderate Reynolds numbers," J. Fluid Mech. 657, 335-360 (2010).
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J. Fluid Mech.
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Jiménez, J.1
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26
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84873659457
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On the logarithmic region in wall turbulence
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I. Marusic, J. P. Monty, M. Hultmark, and A. J. Smits, "On the logarithmic region in wall turbulence," J. Fluid Mech. 716, R3 (2013).
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The largest scales of turbulence
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(Stanford Universit)
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J. Jiménez, "The largest scales of turbulence," in CTR Annual Research Briefs (Stanford University, 1998), pp. 137-154.
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Very large-scale motion in the outer layer
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K. Kim and R. J. Adrian, "Very large-scale motion in the outer layer," Phys. Fluids 11, 417-422 (1999).
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On the role of large-scale structures in wall turbulence
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I. Marusic, "On the role of large-scale structures in wall turbulence," Phys. Fluids 13, 735-743 (2001).
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Marusic, I.1
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The large-scale dynamics of near-wall turbulence
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J. Jiménez, J. C. Del Álamo, and O. Flores, "The large-scale dynamics of near-wall turbulence," J. Fluid Mech. 505, 179-199 (2004).
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Jiménez, J.1
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Large-scale features in turbulent pipe and channel flows
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J. P. Monty, J. A. Stewart, R. C. Williams, and M. S. Chong, "Large-scale features in turbulent pipe and channel flows," J. Fluid Mech. 589, 147-156 (2007).
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Measurements of the structure of the Reynolds stress in a turbulent boundary layer
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S. S. Lu and W. W. Willmarth, "Measurements of the structure of the Reynolds stress in a turbulent boundary layer," J. Fluid Mech. 60, 481-511 (1973).
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Self-similar vortex clusters in the turbulent logarithmic region
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J. C. del Álamo, J. Jiménez, P. Zandonade, and R. D. Moser, "Self-similar vortex clusters in the turbulent logarithmic region," J. Fluid Mech. 561, 329-358 (2006).
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J. Fluid Mech
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del Álamo, J.C.1
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