We present an experimental and numerical study of three-dimensional pulsatile flow in a twisted pipe in order to show the effects of chaotic advection on mixing in this flow configuration. The numerical study is done by CFD code with a pulsatile velocity field imposed as an inlet condition. The experimental setup is composed principally of a Scotch-yoke pulsatile flow generator and a twisted duct. The twisted duct consists of six 90 degrees bends of circular cross-section; the plane of curvature of each bend is at 90 degrees to that of its neighbors. The secondary flow, generated by centrifugal force, the pulsating velocity field and also due to the change in curvature plane, leads to irregular fluid particle trajectories. Velocity measur...
Fluid mixing is a complex process consisting of a variety of physical mechanisms. This work focuses ...
Two components of pulsatile flow (i.e. steady flow and sinusoidal flow) are studied separately by pa...
This study characterizes a new mixing process based on chaotic advection for the production of water...
This work concerns the manipulation of a twisted curved-pipe flow for mixing enhancement. Previous w...
This work concerns the manipulation of a twisted curved pipe flow for mixing enhancement. Previous w...
The purpose of this study is to investigate transverse mixing enhancement by superposition of period...
AbstractAfter a review of development of studies on chaotic motion of fluid particles and fluid mixi...
AbstractAfter a review of development of studies on chaotic motion of fluid particles and fluid mixi...
The simultaneous effects of flow pulsation and geometrical perturbation on laminar mixing in curved ...
We describe in this work a numerical simulation of chaotic heat transfer by laminar flow in a twiste...
It is now well-known that chaotic advection in laminar flow significantly impacts scalar transport -...
It is now well-known that chaotic advection in laminar flow significantly impacts scalar transport -...
Two components of pulsatile flow (i.e. steady flow and sinusoidal flow) are studied separately by pa...
This thesis is motivated by the necessity to understand the flow structure of turbulent flows in ben...
This work describes an experimental study and a numerical simulation of residence time distributions...
Fluid mixing is a complex process consisting of a variety of physical mechanisms. This work focuses ...
Two components of pulsatile flow (i.e. steady flow and sinusoidal flow) are studied separately by pa...
This study characterizes a new mixing process based on chaotic advection for the production of water...
This work concerns the manipulation of a twisted curved-pipe flow for mixing enhancement. Previous w...
This work concerns the manipulation of a twisted curved pipe flow for mixing enhancement. Previous w...
The purpose of this study is to investigate transverse mixing enhancement by superposition of period...
AbstractAfter a review of development of studies on chaotic motion of fluid particles and fluid mixi...
AbstractAfter a review of development of studies on chaotic motion of fluid particles and fluid mixi...
The simultaneous effects of flow pulsation and geometrical perturbation on laminar mixing in curved ...
We describe in this work a numerical simulation of chaotic heat transfer by laminar flow in a twiste...
It is now well-known that chaotic advection in laminar flow significantly impacts scalar transport -...
It is now well-known that chaotic advection in laminar flow significantly impacts scalar transport -...
Two components of pulsatile flow (i.e. steady flow and sinusoidal flow) are studied separately by pa...
This thesis is motivated by the necessity to understand the flow structure of turbulent flows in ben...
This work describes an experimental study and a numerical simulation of residence time distributions...
Fluid mixing is a complex process consisting of a variety of physical mechanisms. This work focuses ...
Two components of pulsatile flow (i.e. steady flow and sinusoidal flow) are studied separately by pa...
This study characterizes a new mixing process based on chaotic advection for the production of water...