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Publications

Google Scholar pages: Philipp Schlatter: https://scholar.google.se/citations?user=jk-Xg48AAAAJRamis Örlu: https://scholar.google.se/citations?user=FuNFixMAAAAJRicardo Vinuesa: https://scholar.google.se/citations?user=xxF-4YgAAAAJ

RSome selected recent publications:
* Assessment of uncertainties in hot-wire anemometry and oil-film interferometry measurements for wall-bounded turbulent flows. S Rezaeiravesh, R Vinuesa, M Liefvendahl, P Schlatter. arXiv preprint arXiv:1804.09263European Journal of Mechanics-B/Fluids 72, 57-73, 2018.
* Direct numerical simulation of flow over dissimilar, randomly distributed roughness elements: A systematic study on the effect of surface morphology on turbulence. P Forooghi, A Stroh, P Schlatter, B Frohnapfel. Physical Review Fluids 3 (4), 044605, 2018.
* Turbulence in the rotating-disk boundary layer investigated through direct numerical simulations. E Appelquist, P Schlatter, PH Alfredsson, RJ Lingwood. European Journal of Mechnics/B Fluids 70, 6-18, 2018.
* The three-dimensional structure of swirl-switching in bent pipe flow. L Hufnagel, J Canton, R Örlü, O Marin, E Merzari, P Schlatter. Journal of Fluid Mechanics 835, 86-101, 2018.
* Turbulent Duct Flow Controlled with Spanwise Wall Oscillations. S Straub, R Vinuesa, P Schlatter, B Frohnapfel, D Gatti. Flow, Turbulence and Combustion 99 (3-4), 787-806
* A. Bobke, R. Vinuesa, R. Örlü, and P. Schlatter. History effects and near equilibrium in adverse-pressure-gradient turbulent boundary layers. J. Fluid Mech., 820:667–692, 2017.
* S. M. Hosseini, R. Vinuesa, P. Schlatter, A. Hanifi, and D. S. Henningson. Direct numerical simulation of the flow around a wing section at moderate Reynolds number. Int. J. Heat Fluid Flow, 61:117–128, 2016.
* C. Sanmiguel Vila, R. Vinuesa, S. Discetti, A. Ianiro, P. Schlatter, and R. Örlü. On the identification of well-behaved turbulent boundary layers. J. Fluid Mech., 822:109–138, 2017.
* P. Schlatter and R. Örlü. Assessment of direct numerical simulation data of turbulent boundary layers. J. Fluid Mech., 659:116–126, 2010.
* R. Vinuesa, A. Bobke, R. Örlü, and P. Schlatter. On determining characteristic length scales in pressure-gradient turbulent boundary layers. Phys. Fluids, 28(055101):1–13, 2016.
* R. Vinuesa, P. S. Negi, A. Hanifi, D. S. Henningson, and P. Schlatter. High-fidelity simulations of the flow around wings at high Reynolds numbers. In Proceedings of the 10th Symposium on Turbulence and Shear Flow Phenomena, July 2017, Chicago, USA, 2017.
* R. Vinuesa, R. Örlü, C. Sanmiguel Vila, A. Ianiro, S. Discetti, and P. Schlatter. Revisiting history effects in adverse-pressure-gradient turbulent boundary layers. Flow Turbul. Combust., 2017. To appear.
* R. Vinuesa, R. Örlü, and P. Schlatter. Characteristation of backflow events over a wing section. J. Turbul., 18(2):170–185, 2017.
* R. Vinuesa, S. M. Hosseini, A. Hanifi, D. S. Henningson, and P. Schlatter. Pressure-Gradient Turbulent Boundary Layers developing around a wing section. Flow Turbul. Combust. 2017. To appear.
* R. Vinuesa and P. Schlatter. Skin-friction control of the flow around a wing section through uniform blowing. ETC-16, Stockholm, 2017.
¶ ¶ Technical reports (to download):
* Informal introduction to program structure of spectral interpolation in Nek5000 (Azad Noorani, Adam Peplinski, Philipp Schlatter, 2015): noorani_peplinski_schlatter_2015.pdf
* Spectral Simulations of Wall-bounded Flows on Massively-parallel Computers (Qiang Li, Philipp Schlatter, Dan Henningson, 2008): li_schlatter_henningson_2008.pdf
* SIMSON- A Pseudo-Spectral Solver for Incompressible Boundary Layer Flows (Mattias Chevalier, Philipp Schlatter, Anders Lundbladh, Dan Henningson): chevalier_schlatter_lundbladh_henningson_2007.pdf