The holographic recording of the time history of a flow feature in three dimensions is discussed. The use of diffuse illumination holographic interferometry or the three dimensional visualization of flow features such as shock waves and turbulent eddies is described. The double-exposure and time-average methods are compared using the characteristic function and the results from a flow simulator. A time history requires a large hologram recording rate. Results of holographic cinematography of the shock waves in a flutter cascade are presented as an example. Future directions of this effort, including the availability and development of suitable lasers, are discussed
Digital holographic interferometry and computed tomography for studying turbulent flows are develope...
Optical flow diagnostics are non-intrusive and therHore suitable for investigating perturbation sens...
A dual reference beam, plane wave, digital holographic interferometric system has been developed. It...
Laser holographic interferometry is being applied to many different types of aerodynamics problems. ...
Four advanced optical models are reviewed for the measurement of visualization of flow and structura...
A holographic-interferometry technique for flow visualization and analysis that produces real-time m...
This report discusses heterodyne holographic interferometry and time-average holography with a frequ...
Holographic interferometry offers the potential for quantitative, whole-field analysis of three-dime...
An account is made of some of the applications of holographic interferometry to the visualization of...
A holographic system used for flow visualization at the Langley Expansion Tube is described. A ruby ...
Components and system designs of holographic flow visualization techniques are reviewed. Recording m...
Optical flow diagnostics are non-intrusive and therefore suitable for investigating perturbation sen...
A holographic system has been developed to visualize a three-dimensional fluid flow. The system con...
Digital holographic interferometry is an optical measurement technique based on the work by Powell a...
The use of holographic interferometry to measure two and threedimensional flows and the interpretati...
Digital holographic interferometry and computed tomography for studying turbulent flows are develope...
Optical flow diagnostics are non-intrusive and therHore suitable for investigating perturbation sens...
A dual reference beam, plane wave, digital holographic interferometric system has been developed. It...
Laser holographic interferometry is being applied to many different types of aerodynamics problems. ...
Four advanced optical models are reviewed for the measurement of visualization of flow and structura...
A holographic-interferometry technique for flow visualization and analysis that produces real-time m...
This report discusses heterodyne holographic interferometry and time-average holography with a frequ...
Holographic interferometry offers the potential for quantitative, whole-field analysis of three-dime...
An account is made of some of the applications of holographic interferometry to the visualization of...
A holographic system used for flow visualization at the Langley Expansion Tube is described. A ruby ...
Components and system designs of holographic flow visualization techniques are reviewed. Recording m...
Optical flow diagnostics are non-intrusive and therefore suitable for investigating perturbation sen...
A holographic system has been developed to visualize a three-dimensional fluid flow. The system con...
Digital holographic interferometry is an optical measurement technique based on the work by Powell a...
The use of holographic interferometry to measure two and threedimensional flows and the interpretati...
Digital holographic interferometry and computed tomography for studying turbulent flows are develope...
Optical flow diagnostics are non-intrusive and therHore suitable for investigating perturbation sens...
A dual reference beam, plane wave, digital holographic interferometric system has been developed. It...