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Erschienen in: Experiments in Fluids 4/2006

01.10.2006 | Research Article

Measurement of the gradient field of a turbulent free surface

verfasst von: Ralph Savelsberg, Ad Holten, Willem van de Water

Erschienen in: Experiments in Fluids | Ausgabe 4/2006

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Abstract

We study the free surface above a turbulent channel flow. We describe a laser scanning technique that can be used to measure the space–time turbulent surface gradient field along a line. A harmonically swiveling laser beam is focused on the surface and its angle of refraction is measured using a position sensing device. The registered signals can be converted easily to the desired gradient field, and spectra and correlations can be measured. Examples of measured spectra and correlation functions of the surface above a turbulent channel flow (Reynolds number R λ ≈ 250) demonstrate the viability of the technique. We further assess the validity of Taylor’s frozen turbulence hypothesis that implies that time-dependent signals measured along a line that is oriented perpendicularly to the mean channel velocity can be interpreted as 2D measurements of the surface slope. While Taylor’s hypothesis works for a turbulent velocity field, it does not work for its free surface.

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Fußnoten
1
In practice one can expect there to be some misalignment, leading to a small contribution due to the scanning also being present in V y . However, this has no effect on the measurement of the slope itself, since the average trace of the spot in the surface is subtracted, as will be explained later.
 
2
The quality of the harmonic fit is not only due to the linearity of the imaging. Deviations of the harmonic dependence and curved scan lines can also occur due to the axis of rotation of the mirror not being parallel to the mirror surface.
 
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Metadaten
Titel
Measurement of the gradient field of a turbulent free surface
verfasst von
Ralph Savelsberg
Ad Holten
Willem van de Water
Publikationsdatum
01.10.2006
Verlag
Springer-Verlag
Erschienen in
Experiments in Fluids / Ausgabe 4/2006
Print ISSN: 0723-4864
Elektronische ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-006-0186-x

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