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Personal information

Athanasia Kalpakli

M.Sc., Lic.
Phone: +46 8 790 71 39
Fax: +46 8 723 04 75
E-mail: sissy@mech.kth.se
WWW: Personal homepage


Education

Licentiate in Engineering Mechanics, 2012, KTH Mechanics, Stockholm, Sweden
University Diploma in Mechanical & Industrial Engineering 2008, University of Thessaly, Volos, Greece

Publications

Please note that this list might not be complete. Follow each article link for additional authors.
Year Title
2013 Turbulent pipe flow downstream a 90 degree pipe bend with and without superimposed swirl
Int. J. Heat and Fluid Flow  
2012 Dean vortices in turbulent flows: rocking or rolling?
Journal of Visualization 15 37-38
2012 Experimental investigation on the effect of pulsations on exhaust manifold-related flows aiming at improved engine efficiency
10th International Conference on Turbochargers and Turbocharging (iMechE), London, UK, May 15-16, 2012  377-387
2012 Experimental investigation on the secondary motion downstream a pipe bend with and without swirl
Proc 9th Int. ERCOFTAC Symposium on Engineering Turbulence Modeling and Measurements (ETMM9), Thessaloniki, Greece, Jun. 6-8 (2012)  1-6
2012 The characteristics of turbulence in curved pipes under highly pulsatile flow conditions
Progress in Turbulence V, Proc. iTi Conference in Turbulence 2012  
2011 Pulsatile turbulent flow through pipe bends at high Dean and Womersley numbers
J. Phys.: Conf. Ser. 318 092023
2011 Reynolds and swirl number effects on turbulent pipe flow in a 90 degree pipe bend
Bulletin of the American Physical Society, 64rd Annual Meeting of the APS Division of Fluid Dynamics, November 20–22, 2011, Baltimore, Maryland 56 
2011 Dancing in the pipe
APS Online Image Gallery  
2010 Experimental investigation on the effect of pulsations on turbulent flow through a 90 degrees pipe bend
3rd Int. Conf. on Jets, Wakes and Separated Flows, Sept 27-30, 2010, Cincinnati, Ohio, USA  1-6

Internal reports

Please note that this list might not be complete.
Year Title Type
2012 Experimental study of turbulent flows through pipe bends Licentiate thesis
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Last changed: 2006-08-24