Schlieren flow visualization methods are an important part of high speed wind tunnel testing, being a fast and reliable method of graphically presenting complex dynamic phenomena that occur in high subsonic, transonic and supersonic regimes. Images can be processed and effects of configuration changes can be understood faster. Quantitative variations of the Schlieren method enable CFD simulations to use real data, resulting in greater precision and thus help improve efficiency of the re-design phase for the aerodynamic object. A modification of the classic Schlieren system is proposed, that would enable extraction of such data with minimal cost
This study describes three-dimensional (3D) quantitative visualization of density field in a superso...
This paper describes the implementation of a13; novel technique called Background Oriented Schlieren...
Background oriented schlieren (BOS) is a quantitative optical technique which exploits light deflect...
Optical flow visualization techniques such as schlieren and shadowgraph photography are essential to...
This paper presents a review of modern-day schlieren optics system and its application. Schlieren im...
Research in aerodynamics and flow physics often require visual experiments in order to understand th...
The Background Oriented Schlieren using Celestial Objects series of flights was undertaken in the sp...
Research in aerodynamics and flow physics often require visual experiments in order to understand th...
Research in aerodynamics and flow physics often require visual experiments in order to understand th...
Visualisation of supersonic compressible flows using the Background Oriented Schlieren (BOS) techniq...
To visualize the flow in the test section of an indraft supersonic wind tunnel in the University of ...
Optical density variation in fluids and transparent solids can often be studied by examining the eff...
This article deals with a new approach to the investigation of unsteady transonic flow fields around...
This work introduces a semi-quantitative schlieren (SQS) method which is used to qualitatively and q...
Background Oriented Schlieren (BOS) is a derivative of the classical schlieren technology, which is ...
This study describes three-dimensional (3D) quantitative visualization of density field in a superso...
This paper describes the implementation of a13; novel technique called Background Oriented Schlieren...
Background oriented schlieren (BOS) is a quantitative optical technique which exploits light deflect...
Optical flow visualization techniques such as schlieren and shadowgraph photography are essential to...
This paper presents a review of modern-day schlieren optics system and its application. Schlieren im...
Research in aerodynamics and flow physics often require visual experiments in order to understand th...
The Background Oriented Schlieren using Celestial Objects series of flights was undertaken in the sp...
Research in aerodynamics and flow physics often require visual experiments in order to understand th...
Research in aerodynamics and flow physics often require visual experiments in order to understand th...
Visualisation of supersonic compressible flows using the Background Oriented Schlieren (BOS) techniq...
To visualize the flow in the test section of an indraft supersonic wind tunnel in the University of ...
Optical density variation in fluids and transparent solids can often be studied by examining the eff...
This article deals with a new approach to the investigation of unsteady transonic flow fields around...
This work introduces a semi-quantitative schlieren (SQS) method which is used to qualitatively and q...
Background Oriented Schlieren (BOS) is a derivative of the classical schlieren technology, which is ...
This study describes three-dimensional (3D) quantitative visualization of density field in a superso...
This paper describes the implementation of a13; novel technique called Background Oriented Schlieren...
Background oriented schlieren (BOS) is a quantitative optical technique which exploits light deflect...