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Shahrokh Shams
Shahrokh Shams
Department of Aerospace Engineering, Faculty of New Science and Technologies, University of Tehran
Verified email at ut.ac.ir - Homepage
Title
Cited by
Cited by
Year
Nonlinear aeroelastic response of slender wings based on Wagner function
S Shams, MHS Lahidjani, H Haddadpour
Journal of Thin-Walled Structures 46 (11), 1192-1203, 2008
552008
Vibration analysis of cantilever pipe conveying fluid under distributed random excitation
S Sazesh, S Shams
Journal of Fluids and Structures 87, 84-101, 2019
472019
Aerodynamic performance enhancement analysis of horizontal axis wind turbines using a passive flow control method via split blade
NH Mohammad Moshfeghi, Shahrokh Shams
Journal of Wind Engineering and Industrial Aerodynamics 167, 148–159, 2017
472017
Vibration analysis of geometrically nonlinear spinning beams
SAA Hosseini, M Zamanian, S Shams, A Shooshtari
Mechanism and Machine Theory 78, 15-35, 2014
292014
An efficient method for nonlinear aeroelasticy of slender wings
S Shams, MH Sadr, H Haddadpour
Nonlinear Dynamics 67, 659-681, 2012
252012
Nonlinear aeroelastic analysis of an airfoil with control surface free-play using stochastic approach
S Sazesh, S Shams
Journal of Fluids and Structures 72, 114-126, 2017
142017
Sharp edge gust effects on aeroelastic behavior of a flexible wing with high aspect ratio
H Haddadpour, S Shams, M Kheiri
43rd AIAA Aerospace Sciences Meeting and Exhibit, 838, 2005
122005
AN ANALYTICAL METHOD IN COMPUTATIONAL AEROELASTICITY BASED ON WAGNER FUNCTION
S Shams, H Haddadpour, MHS Lahidjani, M Kheiri
25th International Congress of the Aeronautical Sciences, 2006
102006
Nonlinear aeroelastic analysis of high-aspect-ratio wings using indicial aerodynamics
M Nejati, S Shokrollahi, S Shams
Journal of the Brazilian Society of Mechanical Sciences and Engineering 40, 1-22, 2018
82018
Nonlinear aeroelastic behavior of slender wings considering a static stall model based on wagner function
D Badiei, MH Sadr, S Shams
Applied Mechanics and Materials 186, 297-304, 2012
72012
Free vibration analysis of a laminated beam using dynamic stiffness matrix method considering delamination
S Shams, AR Torabi, MF Narab, MAA Atashgah
Thin-Walled Structures 166, 107952, 2021
52021
Aeroelastic stability analysis of a wind turbine blade section with trailing edge flap using a flexible unsteady blade elements momentum theory
S Shams, R Esbati Lavasani
Journal of the Brazilian Society of Mechanical Sciences and Engineering 41, 1-16, 2019
52019
Static stall model in aeroelastic analysis of a flexible wing with geometrical nonlinearity
D Badiei, MH Sadr, S Shams
Journal of Aerospace Engineering 27 (2), 378-389, 2014
52014
The flutter speed and effect of laminate layers of composite wing carrying two powered engines
S Irani, S Shams, MR Fallah
Modares Mechanical Engineering 18 (2), 314-322, 2018
42018
Kinematic analysis of articulated flapping wings mechanisms considering nonlinear quasi-steady aerodynamic
S Shams, B Mirzavand Boroujeni, SM Mansoori, MR Kazemi
Modares Mechanical Engineering 17 (12), 87-97, 2018
42018
Torsional aeroelasticity of a flexible VAWT blade using a combined aerodynamic method by considering post-stall and local reynolds regime
S Shams, A Molaei, B Mirzavand
Journal of Applied and Computational Mechanics 6 (4), 757-776, 2020
32020
A modified indicial functions approximation for nonlinear aeroelastic analysis
M Nejati, S Shokrollahi, S Shams, R Torkaman
Scientia Iranica 27 (3), 1230-1254, 2020
32020
Developments of a semiempirical dynamic stall model for unsteady airfoils
MH Sadr, D Badiei, S Shams
Journal of the Brazilian Society of Mechanical Sciences and Engineering 41, 1-15, 2019
32019
Derivation and Aeroelastic Analysis of a Rotating Airfoil Using Unsteady Loewy Aerodynamic and Flutter Suppression by PID Controller
S Shams, R Esbati Lavasani
Modares Mechanical Engineering 19 (6), 1347-1354, 2019
32019
Performance assessment of Darrieus wind turbines with symmetric and cambered airfoils
I Paraschivoiu, S Shams, NV Dy
Transactions of the Canadian Society for Mechanical Engineering 42 (4), 382-392, 2018
32018
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