Haym Benaroya

Affiliations: 
Rutgers University, New Brunswick, New Brunswick, NJ, United States 
Area:
Mechanical Engineering
Google:
"Haym Benaroya"
BETA: Related publications

Publications

You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect.

Li Q, Sanchez J, Benaroya H, et al. (2019) Free Vibration Analysis of Moderately Thick Coupled Plates with Elastic Boundary Conditions and Point Supports International Journal of Structural Stability and Dynamics. 19: 1950150
Mottaghi S, Benaroya H. (2016) Reduced-order modeling of fluid–structure interaction and vortex-induced vibration systems using an extension of Jourdain׳s principle Journal of Sound and Vibration. 382: 193-212
Mottaghi S, Benaroya H. (2015) Design of a Lunar Surface Structure. II: Seismic Structural Analysis Journal of Aerospace Engineering. 28: 04014053
Sanchez J, Benaroya H. (2014) Review of force reconstruction techniques Journal of Sound and Vibration. 333: 2999-3018
Borenstein E, Benaroya H. (2013) Loading and structural response models of circular plates subjected to near field explosions Journal of Sound and Vibration. 332: 1725-1753
Borenstein E, Benaroya H. (2009) Sensitivity analysis of blast loading parameters and their trends as uncertainty increases Journal of Sound and Vibration. 321: 762-785
Benaroya H, Gabbai RD. (2008) Modelling vortex-induced fluid-structure interaction. Philosophical Transactions. Series a, Mathematical, Physical, and Engineering Sciences. 366: 1231-74
Ramakrishnan S, Gulak Y, Benaroya H. (2008) Dynamics of a Duffing nanomechanical resonator coupled to a single-electron transistor: A master equation approach Physical Review B. 78
Voorhees A, Dong P, Atsavapranee P, et al. (2008) Beating of a circular cylinder mounted as an inverted pendulum Journal of Fluid Mechanics. 610: 217-247
Gabbai R, Benaroya H. (2008) A first-principles derivation procedure for wake-body models in vortex-induced vibration: Proof-of-concept Journal of Sound and Vibration. 312: 19-38
See more...