Stability analysis of the wake-induced vibration of tandem circular and square cylinders
From MaRDI portal
Publication:785277
DOI10.1007/s11071-018-4547-9zbMath1439.76031OpenAlexW2891567319WikidataQ129225618 ScholiaQ129225618MaRDI QIDQ785277
Publication date: 6 August 2020
Published in: Nonlinear Dynamics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11071-018-4547-9
Cites Work
- Transient fluid-structure interaction with non-matching spatial and temporal discretizations
- Two-level discretizations of nonlinear closure models for proper orthogonal decomposition
- Proper orthogonal decomposition closure models for turbulent flows: a numerical comparison
- Lattice Boltzmann simulations of 2D laminar flows past two tandem cylinders
- A stable second-order partitioned iterative scheme for freely vibrating low-mass bluff bodies in a uniform flow
- Mechanism of frequency lock-in in vortex-induced vibrations at low Reynolds numbers
- Dynamic mode decomposition of numerical and experimental data
- On the wake-induced vibration of tandem circular cylinders: the vortex interaction excitation mechanism
- An asymptotic expansion for the vortex-induced vibrations of a circular cylinder
- Feedback shear layer control for bluff body drag reduction
- An eigensystem realization algorithm for modal parameter identification and model reduction
- Three-dimensional Floquet stability analysis of the wake of a circular cylinder
- A hierarchy of low-dimensional models for the transient and post-transient cylinder wake
- Model reduction and mechanism for the vortex-induced vibrations of bluff bodies
- Feedback control of unstable flow and vortex-induced vibration using the eigensystem realization algorithm
- Structural sensitivity of the first instability of the cylinder wake
- Recursive dynamic mode decomposition of transient and post-transient wake flows
- The role of wake stiffness on the wake-induced vibration of the downstream cylinder of a tandem pair
- V<scp>ORTEX</scp>-I<scp>NDUCED</scp> V<scp>IBRATIONS</scp>
This page was built for publication: Stability analysis of the wake-induced vibration of tandem circular and square cylinders