Flow-induced vibration in a collapsible tube is relevant to many biomedical applications including the human respiratory system. This paper presents a linear analysis of the coupling between Poiseuille flow and a tensioned membrane of finite length using an eigenvalue approach. The undisturbed state of the channel flow is perfectly parallel. To some extent, this configuration bridges the gap between two types of theoretical models: one for the travelling-wave flutter in an infinite, flexible channel, and the other for the self-induced oscillation of a collapsing section of a Starling-resistor tube. In our study, we focus on the parameter range where the wall-to-fluid mass ratio is high (100), and the Reynolds number based on the maximum flo...
We consider laminar high-Reynolds-number flow through a finite-length planar channel, where a portio...
We consider laminar high-Reynolds-number flow through a long finite-length planar channel, where a s...
High-Reynolds-number asymptotics and numerical simulations are used to describe two-dimensional, uns...
We examine the linear stability of two-dimensional Poiseuille flow in a long channel confined by a r...
We examine the linear stability of two-dimensional Poiseuille flow in a long channel confined by a r...
The effect of wall inertia on the self-excited oscillations in a collapsible channel flow is investi...
An analytical solution is given to investigate the vibrations of a membrane under the effect of an i...
Despite the advantages associated with extensible membranes in biological and engineering applicatio...
We develop a new computational model of the linear fluid-structure interaction of a cantilevered fle...
This paper is concerned with the collapse and subsequent self-excited oscillation of compliant tubes...
Despite the advantages associated with extensible membranes in biological and engineering applicatio...
We consider laminar high-Reynolds-number flow through a finite-length planar channel, where a portio...
We consider laminar high-Reynolds-number flow through a long finite-length planar channel, where a s...
In this thesis, we study the energetics of two-dimensional flow through a flexible-walled channel, w...
In this thesis, we study the energetics of two-dimensional flow through a flexible-walled channel, w...
We consider laminar high-Reynolds-number flow through a finite-length planar channel, where a portio...
We consider laminar high-Reynolds-number flow through a long finite-length planar channel, where a s...
High-Reynolds-number asymptotics and numerical simulations are used to describe two-dimensional, uns...
We examine the linear stability of two-dimensional Poiseuille flow in a long channel confined by a r...
We examine the linear stability of two-dimensional Poiseuille flow in a long channel confined by a r...
The effect of wall inertia on the self-excited oscillations in a collapsible channel flow is investi...
An analytical solution is given to investigate the vibrations of a membrane under the effect of an i...
Despite the advantages associated with extensible membranes in biological and engineering applicatio...
We develop a new computational model of the linear fluid-structure interaction of a cantilevered fle...
This paper is concerned with the collapse and subsequent self-excited oscillation of compliant tubes...
Despite the advantages associated with extensible membranes in biological and engineering applicatio...
We consider laminar high-Reynolds-number flow through a finite-length planar channel, where a portio...
We consider laminar high-Reynolds-number flow through a long finite-length planar channel, where a s...
In this thesis, we study the energetics of two-dimensional flow through a flexible-walled channel, w...
In this thesis, we study the energetics of two-dimensional flow through a flexible-walled channel, w...
We consider laminar high-Reynolds-number flow through a finite-length planar channel, where a portio...
We consider laminar high-Reynolds-number flow through a long finite-length planar channel, where a s...
High-Reynolds-number asymptotics and numerical simulations are used to describe two-dimensional, uns...