Results from highly resolved, four‐dimensional measurements of the fine structure of the fully space‐ and time‐varying Sc≫1 conserved scalar field and the associated scalar energy dissipation rate field in a turbulent flow are presented. The resolution achieved in all three spatial dimensions and in time reaches down to the local strain‐limited molecular diffusion scale in the flow, allowing all three components of the instantaneous scalar gradient vector field ∇ζ(x,t) and their time evolution at every point in the data space to be directly evaluated. Results are presented in the form of fine structure maps of the instantaneous dissipation field loge ∇ζ⋅∇ζ(x,t) in several spatially adjacent data planes within an individual three‐dimensional...
Aims. We further characterize the structures tentatively identified on thermal and chemical grounds ...
International audienceWe investigate the mixing properties of scalars stirred by spatially smooth, d...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76624/1/AIAA-1996-1987-447.pd
This work deals with an experimental investigation of the fine scale structure of conserved scalar m...
This work deals with an experimental investigation of the fine scale structure of conserved scalar m...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77075/1/AIAA-1994-820-515.pd
A newly developed laser imaging diagnostic is presented for obtaining highly detailed, three- and fo...
Scalar imaging velocimetry is here applied to experimental turbulent flow scalar field data to yield...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76111/1/AIAA-1994-403-971.pd
In the present work, a detailed experimental analysis of geometries called dissipation elements and ...
Aims. We further characterize the structures tentatively identified on thermal and chemical grounds ...
International audienceWe investigate the mixing properties of scalars stirred by spatially smooth, d...
Aims. We further characterize the structures tentatively identified on thermal and chemical grounds ...
Aims. We further characterize the structures tentatively identified on thermal and chemical grounds ...
The physical mechanisms underlying the dynamics of the dissipation of passive scalar fluctuations wi...
Aims. We further characterize the structures tentatively identified on thermal and chemical grounds ...
International audienceWe investigate the mixing properties of scalars stirred by spatially smooth, d...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76624/1/AIAA-1996-1987-447.pd
This work deals with an experimental investigation of the fine scale structure of conserved scalar m...
This work deals with an experimental investigation of the fine scale structure of conserved scalar m...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/77075/1/AIAA-1994-820-515.pd
A newly developed laser imaging diagnostic is presented for obtaining highly detailed, three- and fo...
Scalar imaging velocimetry is here applied to experimental turbulent flow scalar field data to yield...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76111/1/AIAA-1994-403-971.pd
In the present work, a detailed experimental analysis of geometries called dissipation elements and ...
Aims. We further characterize the structures tentatively identified on thermal and chemical grounds ...
International audienceWe investigate the mixing properties of scalars stirred by spatially smooth, d...
Aims. We further characterize the structures tentatively identified on thermal and chemical grounds ...
Aims. We further characterize the structures tentatively identified on thermal and chemical grounds ...
The physical mechanisms underlying the dynamics of the dissipation of passive scalar fluctuations wi...
Aims. We further characterize the structures tentatively identified on thermal and chemical grounds ...
International audienceWe investigate the mixing properties of scalars stirred by spatially smooth, d...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76624/1/AIAA-1996-1987-447.pd