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David Tempelmann

PhD
Phone: int+46 8 790 71 61
Fax: int+46 8 796 98 50
E-mail: david@mech.kth.se
WWW: Personal Homepage
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Education

03/2007 - 12/2011: PhD student at Department of Mechanics at KTH
10/2001 - 02/2007: Mechanical engineering at RWTH Aachen University with focus on aeronautics
10/2004 - 09/2005: Erasmus year at department of aeronautics, Imperial College of London

Research and Professional Activities

Stability and receptivity of three-dimensional boundary layers.

Publications

Please note that this list might not be complete. Follow each article link for additional authors.

YearTitle
2013Stabilization of a swept-wing boundary layer by distributed roughness elements
Journal of Fluid Mechancis 718  (Published)
2012Swept-wing boundary-layer receptivity
J. Fluid Mech. 700 490-501 (Published)
2012Spatial optimal growth in three-dimensional compressible boundary layers
J. Fluid Mech. 704 251-279 (Published)
2012Swept wing boundarylayer receptivity to localized surface roughness
J. Fluid Mech. 711  516-544 (Published)
2011Numerical study of boundary-layer receptivity on a swept wing
AIAA Paper 2011-3294  (Published)
2011Modelling roughness and receptivity in three-dimensional boundary-layers
Proceedings of the 7th TSFP conference   (Published)
2011Excitation of cross-flow vortices by surface roughness on a swept wing
Proceedings CASI AERO 2011, Montreal, Canada    (Published)
2010Spatial optimal growth in three-dimensional boundary layers
J. Fluid Mech. 646 5-37 (Published)
2010Optimal Disturbances and Receptivity in Three-Dimensional Boundary Layers
Proceedings V European Conference on Computational Fluid Dynamics ECCOMAS CFD 2010   (Published)
2009Spatial Optimal Disturbances in Three-Dimensional Boundary Layers
Proc. Seventh IUTAM Symposium on Laminar-Turbulent Transition, Stockholm, Sweden, 2009  589-592 (Published)

Internal Reports

Please note that this list might not be complete.

YearTitleDocument Type
2011Receptivity of crossflow-dominated boundary layers Doctoral thesis
2009Stability and Receptivity of Three-Dimensional Boundary Layers Licentiate thesis