Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Alfredsson, P.H.
Imayama, S.
Lingwood, R.J.
Örlü, R.
and
Segalini, A.
2013.
Turbulent boundary layers over flat plates and rotating disks—The legacy of von Kármán: A Stockholm perspective.
European Journal of Mechanics - B/Fluids,
Vol. 40,
Issue. ,
p.
17.
Carroll, Nick J.
Jensen, Kaare H.
Parsa, Shima
Holbrook, N. Michele
and
Weitz, David A.
2014.
Measurement of Flow Velocity and Inference of Liquid Viscosity in a Microfluidic Channel by Fluorescence Photobleaching.
Langmuir,
Vol. 30,
Issue. 16,
p.
4868.
Trip, Renzo
and
Fransson, Jens H. M.
2014.
Boundary layer modification by means of wall suction and the effect on the wake behind a rectangular forebody.
Physics of Fluids,
Vol. 26,
Issue. 12,
Pouransari, Zeinab
Vervisch, Luc
and
Johansson, Arne V.
2014.
Reynolds Number Effects on Statistics and Structure of an Isothermal Reacting Turbulent Wall-Jet.
Flow, Turbulence and Combustion,
Vol. 92,
Issue. 4,
p.
931.
Bailey, S. C. C.
Vallikivi, M.
Hultmark, M.
and
Smits, A. J.
2014.
Estimating the value of von Kármán’s constant in turbulent pipe flow.
Journal of Fluid Mechanics,
Vol. 749,
Issue. ,
p.
79.
Segalini, Antonio
Rüedi, Jean-Daniel
and
Monkewitz, Peter A.
2015.
Systematic errors of skin-friction measurements by oil-film interferometry.
Journal of Fluid Mechanics,
Vol. 773,
Issue. ,
p.
298.
Pouransari, Z.
Biferale, L.
and
Johansson, A. V.
2015.
Statistical analysis of the velocity and scalar fields in reacting turbulent wall-jets.
Physics of Fluids,
Vol. 27,
Issue. 2,
Vallikivi, M.
Hultmark, M.
and
Smits, A. J.
2015.
Turbulent boundary layer statistics at very high Reynolds number.
Journal of Fluid Mechanics,
Vol. 779,
Issue. ,
p.
371.
Titchener, Neil
Colliss, Simon
and
Babinsky, Holger
2015.
On the calculation of boundary-layer parameters from discrete data.
Experiments in Fluids,
Vol. 56,
Issue. 8,
Vinuesa, Ricardo
Duncan, Richard D.
and
Nagib, Hassan M.
2016.
Alternative interpretation of the Superpipe data and motivation for CICLoPE: The effect of a decreasing viscous length scale.
European Journal of Mechanics - B/Fluids,
Vol. 58,
Issue. ,
p.
109.
Örlü, Ramis
Segalini, Antonio
Klewicki, Joseph
and
Alfredsson, P. Henrik
2016.
High-order generalisation of the diagnostic scaling for turbulent boundary layers.
Journal of Turbulence,
Vol. 17,
Issue. 7,
p.
664.
Zanoun, E.-S.
Öngüner, E.
and
Egbers, C.
2016.
Conventional measuring probes in the wall layer of turbulent subsonic ducted flows.
Thermophysics and Aeromechanics,
Vol. 23,
Issue. 3,
p.
329.
Baars, W. J.
Squire, D. T.
Talluru, K. M.
Abbassi, M. R.
Hutchins, N.
and
Marusic, I.
2016.
Wall-drag measurements of smooth- and rough-wall turbulent boundary layers using a floating element.
Experiments in Fluids,
Vol. 57,
Issue. 5,
Belle, A.
Brandner, P.A.
Pearce, B.W.
de Graaf, K.L.
and
Clarke, D.B.
2016.
Artificial thickening and thinning of cavitation tunnel boundary layers.
Experimental Thermal and Fluid Science,
Vol. 78,
Issue. ,
p.
75.
Vinuesa, Ricardo
and
Nagib, Hassan M.
2016.
Enhancing the accuracy of measurement techniques in high Reynolds number turbulent boundary layers for more representative comparison to their canonical representations.
European Journal of Mechanics - B/Fluids,
Vol. 55,
Issue. ,
p.
300.
Sanmiguel Vila, C.
Vinuesa, R.
Discetti, S.
Ianiro, A.
Schlatter, P.
and
Örlü, R.
2017.
On the identification of well-behaved turbulent boundary layers.
Journal of Fluid Mechanics,
Vol. 822,
Issue. ,
p.
109.
Guo, Junke
2017.
Eddy viscosity and complete log-law for turbulent pipe flow at high Reynolds numbers.
Journal of Hydraulic Research,
Vol. 55,
Issue. 1,
p.
27.
Westphal, Russell V.
Schelley, Rachael
and
Frame, Donald
2017.
Instrument for In-Flight Boundary Layer Rake Measurements.
Vinuesa, Ricardo
Bobke, Alexandra
Örlü, Ramis
and
Schlatter, Philipp
2017.
Progress in Turbulence VII.
Vol. 196,
Issue. ,
p.
73.
Vinuesa, Ricardo
Hosseini, Seyed M.
Hanifi, Ardeshir
Henningson, Dan S.
and
Schlatter, Philipp
2017.
Pressure-Gradient Turbulent Boundary Layers Developing Around a Wing Section.
Flow, Turbulence and Combustion,
Vol. 99,
Issue. 3-4,
p.
613.