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We use linear modal analysis to generate a small-deformation displacement basis, then couple the modes together using nonlinear thin-shell forces.
This suggests the application of experimental modal analysis to investigate fluid dynamics in hydraulic pipeline systems.
The superposition technique represents the extension of modal analysis to weakly non-linear vibration systems.
Optimal location and size of SVC are defined using bifurcation and modal analysis to satisfy its primary application.
This paper presents an alternative to modal analysis to extract stiffness and damping parameters from thin vibrating plates.
By relating the insights from modal analysis to system theory, necessary and sufficient conditions are derived for linear mechanical systems to have the DTM property.
Similar(41)
The necessity of applying multi-modal analysis to the intermittent contact problem is demonstrated.
Analytical and low-order-correlation-based measures of the transfer entropy were formed and compared to common modal analysis methods to assess their ability to detect linear dynamical changes in structures.
We calculated modal analysis up to the first 120 modes of vibration to summarize scores of total participating mass higher than the 85% in the X and Y directions and higher than 70% in the Z direction.
The method utilizes modal pushover analysis to determine modal yield force and ductility factor of an equivalent single-degree-of-freedom system.
The first modal analysis, adapted to dissipation characterization, is made on a partially covered suspended plate.
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