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Modelling vortex-induced fluid-structure interaction
Haym Benaroya
, Rene D. Gabbai
School of Engineering, Mechanical & Aerospace Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
16
Scopus citations
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Keyphrases
Fluid-structure Interaction
100%
Oscillator Model
100%
Vortex-induced
100%
Order Reduction
60%
Analytical Model
40%
Variational Approach
40%
Equations of Motion
40%
Governing Equation
40%
Model-driven Development
20%
Analytical Skills
20%
Mechanical Model
20%
First-principles
20%
Physics-based
20%
Multi-degree-of-freedom (multi-DOF)
20%
Hamilton's Principle
20%
Experimental Capability
20%
Principles-based
20%
Navier-Stokes Equations
20%
Offshore Structures
20%
Generalized Equation
20%
Energy Equation
20%
Semi-analytical
20%
Variational Framework
20%
Variational Formulation
20%
Three-dimensional Problems
20%
Structural Motion
20%
Modeling Paradigms
20%
Single-particle Energy
20%
Physical-based
20%
Oscillator Equation
20%
Fluid Behavior
20%
Analytical Function
20%
Nonlinear Oscillator
20%
Mechanical Oscillators
20%
Structural Oscillation
20%
Nonlinear Fluid-structure Interaction
20%
Engineering
Vortex
100%
Fluid-Structure Interaction
100%
Oscillator
100%
Analytical Model
22%
Mechanical Model
11%
Early Work
11%
Degree of Freedom
11%
Dimensional Problem
11%
Hamilton's Principle
11%
Generalized Equation
11%
Energy Equation
11%
Analytical Function
11%
So Framework
11%
Navier-Stokes Equation
11%
Offshore Structure
11%