The inability to measure the three-dimensional velocity field and the nine-component velocity gradient field is one of the greatest obstacles blocking the experimental study of turbulent flows. Scalar imaging velocimetry (SIV) overcomes this obstacle by measuring all three velocity and all nine velocity gradient components in four-dimensional spatio-temporal volumes. Relying on four-dimensional turbulent scalar field measurements, this technique determines the velocity field by inverting the scalar transport equation from measured scalar field data. Previous work has shown that SIV yields accurate results if the scalar fields are fully resolved; however, this limits the technique to small volume sizes and low Reynolds number turbulent flows...
The present study has developed the first highly-resolved dual-plane stereo particle image velocimet...
A newly developed laser imaging diagnostic is presented for obtaining highly detailed, three- and fo...
The present study has developed the first highly-resolved dual-plane stereo particle image velocimet...
The inability to measure the three-dimensional velocity field and the nine-component velocity gradie...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76111/1/AIAA-1994-403-971.pd
This paper presents an experimental technique for obtaining fully resolved measurements of the vecto...
The concept of flow field velocimetry based on scalar imaging measurements [Phys. Fluids A 4, 2191 (...
Scalar image velocimetry (SIV) is the technique to extract velocity vectors from scalar field measur...
Scalar imaging velocimetry is here applied to experimental turbulent flow scalar field data to yield...
Scalar image velocimetry (SIV) is the technique to extract velocity vectors from scalar field measur...
Scalar image velocimetry (SIV) is the technique to extract velocity vectors from scalar field measur...
Approved for Public.Release; distribution is unlimited 13. ABSTRACT lMzaximum: 200 words) The first ...
Our knowledge of the quasi-universal intermediate and small scales of turbulent shear flows is incom...
Experimental methods and results are presented for fully-resolved, three- and four-dimensional, spat...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76624/1/AIAA-1996-1987-447.pd
The present study has developed the first highly-resolved dual-plane stereo particle image velocimet...
A newly developed laser imaging diagnostic is presented for obtaining highly detailed, three- and fo...
The present study has developed the first highly-resolved dual-plane stereo particle image velocimet...
The inability to measure the three-dimensional velocity field and the nine-component velocity gradie...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76111/1/AIAA-1994-403-971.pd
This paper presents an experimental technique for obtaining fully resolved measurements of the vecto...
The concept of flow field velocimetry based on scalar imaging measurements [Phys. Fluids A 4, 2191 (...
Scalar image velocimetry (SIV) is the technique to extract velocity vectors from scalar field measur...
Scalar imaging velocimetry is here applied to experimental turbulent flow scalar field data to yield...
Scalar image velocimetry (SIV) is the technique to extract velocity vectors from scalar field measur...
Scalar image velocimetry (SIV) is the technique to extract velocity vectors from scalar field measur...
Approved for Public.Release; distribution is unlimited 13. ABSTRACT lMzaximum: 200 words) The first ...
Our knowledge of the quasi-universal intermediate and small scales of turbulent shear flows is incom...
Experimental methods and results are presented for fully-resolved, three- and four-dimensional, spat...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76624/1/AIAA-1996-1987-447.pd
The present study has developed the first highly-resolved dual-plane stereo particle image velocimet...
A newly developed laser imaging diagnostic is presented for obtaining highly detailed, three- and fo...
The present study has developed the first highly-resolved dual-plane stereo particle image velocimet...