An analytical solution is given to investigate the vibrations of a membrane under the effect of an incoming fluid flow perpendicular to it. The membrane is located at the stagnation point of the flow and is of finite width but infinite length. A rigid wall extends through the finite width of the membrane to infinity. The flow is considered to be a small perturbation on the two dimensional potential stagnation flow solution due to the vibrations of the membrane, and the membrane is modeled by the linear vibration equation. The resulting coupled problem is solved by a Galerkin procedure and the eigenvalue equation relating the membrane frequency to the other parameters is derived
In a recent study, we investigate the motion of waves emitted due to flutter of an elastic membrane ...
Abstract Axially moving material problems are concerned with the dynamic response, vibration and sta...
The effect of wall inertia on the self-excited oscillations in a collapsible channel flow is investi...
Despite the advantages associated with extensible membranes in biological and engineering applicatio...
Despite the advantages associated with extensible membranes in biological and engineering applicatio...
Flow-induced vibration in a collapsible tube is relevant to many biomedical applications including t...
Active control of the flow behind a bluff body is obtained by integrating a vibrating membrane. A nu...
Active control of the flow behind a bluff body is obtained by integrating a vibrating membrane. A nu...
Active control of the flow behind a bluff body is obtained by integrating a vibrating membrane. A nu...
Fluid-structure interactions of elastic membrane aerofoils are investigated at Reynolds number and l...
The aerodynamic mechanisms modifying the dynamic response of membrane structures oscillating in stil...
This thesis investigates the fluid-structure interaction (FSI) problem of elastic membrane aerofoils...
The flapping dynamics and strain energy distribution of a flexible membrane immersed in a uniform fl...
The stability of the flow of a fluid past a solid membrane of infinitesimal thickness is investigate...
The stability of the flow of a fluid past a solid membrane of infinitesimal thickness is investigate...
In a recent study, we investigate the motion of waves emitted due to flutter of an elastic membrane ...
Abstract Axially moving material problems are concerned with the dynamic response, vibration and sta...
The effect of wall inertia on the self-excited oscillations in a collapsible channel flow is investi...
Despite the advantages associated with extensible membranes in biological and engineering applicatio...
Despite the advantages associated with extensible membranes in biological and engineering applicatio...
Flow-induced vibration in a collapsible tube is relevant to many biomedical applications including t...
Active control of the flow behind a bluff body is obtained by integrating a vibrating membrane. A nu...
Active control of the flow behind a bluff body is obtained by integrating a vibrating membrane. A nu...
Active control of the flow behind a bluff body is obtained by integrating a vibrating membrane. A nu...
Fluid-structure interactions of elastic membrane aerofoils are investigated at Reynolds number and l...
The aerodynamic mechanisms modifying the dynamic response of membrane structures oscillating in stil...
This thesis investigates the fluid-structure interaction (FSI) problem of elastic membrane aerofoils...
The flapping dynamics and strain energy distribution of a flexible membrane immersed in a uniform fl...
The stability of the flow of a fluid past a solid membrane of infinitesimal thickness is investigate...
The stability of the flow of a fluid past a solid membrane of infinitesimal thickness is investigate...
In a recent study, we investigate the motion of waves emitted due to flutter of an elastic membrane ...
Abstract Axially moving material problems are concerned with the dynamic response, vibration and sta...
The effect of wall inertia on the self-excited oscillations in a collapsible channel flow is investi...