Fluidic oscillators which can generate periodic excitations are very promising for active flow control applications, due to their reliability and robustness, as their internal flow oscillation is totally self-induced and self-sustained. The main objective of this work is to identify the underlying mechanisms controlling the dynamics of this kind of fluidic oscillator and to propose guiding lines for the design of oscillators. Experimental analysis of several oscillator prototypes and associated numerical simulations have permitted to explain that the jet switching in this kind of oscillator is controlled by pressure gradients in two critical parts of the device. From these analyses, a simple function has been proposed to estimate the oscill...
The control of flow separation on aerodynamic surfaces remains a fundamental goal for future air tra...
The main purpose of this study is to analyze the different types of flow regimes that can be found o...
The present paper describes a microfluidic oscillator based on facing impinging jets and operating i...
Fluidic oscillators which can generate periodic excitations are very promising for active flow contr...
International audienceThe study of actuators for active flow control has been in rapid expansion in ...
International audienceA series of new bi-stable fluidic oscillators which can generate discrete puls...
International audienceA series of new bi-stable fluidic oscillators which can generate discrete puls...
International audienceA series of new bi-stable fluidic oscillators which can generate discrete puls...
One of the main advantages of fluidic oscillators is that they do not have moving parts, which bring...
This work is comprised of two key accomplishments: the study and design of fluidic oscillators for f...
When studying active flow control applications, it is already stated that activating the boundary la...
One of the main advantages of fluidic oscillators is that they do not have moving parts, which bring...
This thesis starts with a study of aerodynamic flow control conditions by arrays of pulsed fluidic v...
This current study was performed to investigate the effect of geometric variation on the frequency b...
The purpose of this thesis is to find a way to decouple the amplitude and the frequency of the oscil...
The control of flow separation on aerodynamic surfaces remains a fundamental goal for future air tra...
The main purpose of this study is to analyze the different types of flow regimes that can be found o...
The present paper describes a microfluidic oscillator based on facing impinging jets and operating i...
Fluidic oscillators which can generate periodic excitations are very promising for active flow contr...
International audienceThe study of actuators for active flow control has been in rapid expansion in ...
International audienceA series of new bi-stable fluidic oscillators which can generate discrete puls...
International audienceA series of new bi-stable fluidic oscillators which can generate discrete puls...
International audienceA series of new bi-stable fluidic oscillators which can generate discrete puls...
One of the main advantages of fluidic oscillators is that they do not have moving parts, which bring...
This work is comprised of two key accomplishments: the study and design of fluidic oscillators for f...
When studying active flow control applications, it is already stated that activating the boundary la...
One of the main advantages of fluidic oscillators is that they do not have moving parts, which bring...
This thesis starts with a study of aerodynamic flow control conditions by arrays of pulsed fluidic v...
This current study was performed to investigate the effect of geometric variation on the frequency b...
The purpose of this thesis is to find a way to decouple the amplitude and the frequency of the oscil...
The control of flow separation on aerodynamic surfaces remains a fundamental goal for future air tra...
The main purpose of this study is to analyze the different types of flow regimes that can be found o...
The present paper describes a microfluidic oscillator based on facing impinging jets and operating i...