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Samir chawdhury
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Numerical simulations of aeroelastic instabilities to optimize the performance of flutter-based electromagnetic energy harvesters
S Chawdhury, G Morgenthal
Journal of Intelligent Material Systems and Structures 29 (4), 479-495, 2018
202018
Flow reproduction using vortex particle methods for simulating wake buffeting response of bluff structures
S Chawdhury, G Morgenthal
Journal of Wind Engineering and Industrial Aerodynamics 151, 122-136, 2016
142016
Modeling of pulsating incoming flow using vortex particle methods to investigate the performance of flutter-based energy harvesters
S Chawdhury, D Milani, G Morgenthal
Computers & Structures 209, 130-149, 2018
92018
A partitioned solver to simulate large-displacement fluid–structure interaction of thin plate systems for vibration energy harvesting
S Chawdhury, G Morgenthal
Computers & Structures 224, 106110, 2019
82019
An extension of pseudo-3D vortex particle methods for aeroelastic interactions of thin-walled structures
S Chawdhury, G Morgenthal
Journal of Wind Engineering and Industrial Aerodynamics 208, 104391, 2021
42021
Simulation of Aeroelastic Instabilities to Evaluate the Power Output of Flutter-based Electromagnetic Energy Harvesters
S Chawdhury, G Morgenthal
IABSE Conference: Bridges and Structures Sustainability-Seeking Intelligent …, 2016
12016
Partitioned Algorithms Using Vortex Particle Methods for Fluid-Structure Interaction of Thin-walled Flexible Structures
S Chawdhury
Bauhaus-Universitätsverlag Weimar als Imprint von arts+ science weimar GmbH, 2021
2021
Numerical investigation of flexible beams for electromagnetic energy harvesting under the wakes from upstream cylinder
S Chawdhury, G Morgenthal
CIMNE, 2017
2017
A Novel Partitioned Numerical Coupling between Vortex Particle Method-Structure-Smoothed Particle Hydrodynamics Models
V Vîlceanu, S Chawdhury, G Morgenthal
Available at SSRN 4687916, 0
A PSEUDO THREE-DIMENSIONAL MULTI-SLICE NUMERICAL MODEL TO SIMULATE WIND-INDUCED VIBRATION OF THIN-WALLED ROOF SYSTEMS
S Chawdhury, G Morgenthal
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Articles 1–10