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  Fluid particle accelerations in fully developed turbulence

La Porta, A., Voth, G. A., Crawford, A. M., Alexander, J., & Bodenschatz, E. (2001). Fluid particle accelerations in fully developed turbulence. Nature, 409(6823), 1017-1019. doi:10.1038/35059027.

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La Porta, A., Autor
Voth, G. A., Autor
Crawford, A. M., Autor
Alexander, J., Autor
Bodenschatz, E.1, Autor                 
Affiliations:
1Laboratory for Fluid Dynamics, Pattern Formation and Biocomplexity, Max Planck Institute for Dynamics and Self-Organization, Max Planck Society, ou_2063287              

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 Zusammenfassung: The motion of fluid particles as they are pushed along erratic trajectories by fluctuating pressure gradients is fundamental to transport and mixing in turbulence. It is essential in cloud formation and atmospheric transport(1,2), processes in stirred chemical reactors and combustion systems(3), and in the industrial production of nanoparticles(4). The concept of particle trajectories has been used successfully to describe mixing and transport in turbulence(3,5), but issues of fundamental importance remain unresolved. One such issue is the Heisenberg-Yaglom prediction of fluid particle accelerations(6,7), based on the 1941 scaling theory of Kolmogorov(8,9). Here we report acceleration measurements using a detector adapted from high-energy physics to track particles in a laboratory water flow at Reynolds numbers up to 63,000. We find that, within experimental errors, Kolmogorov scaling of the acceleration variance is attained at high Reynolds numbers. Our data indicate that the acceleration is an extremely intermittent variable-particles are observed with accelerations of up to 1,500 times the acceleration of gravity (equivalent to 40 times the root mean square acceleration). We find that the acceleration data reflect the anisotropy of the large-scale flow at all Reynolds numbers studied.

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Sprache(n): eng - English
 Datum: 2001-02
 Publikationsstatus: Erschienen
 Seiten: -
 Ort, Verlag, Ausgabe: -
 Inhaltsverzeichnis: -
 Art der Begutachtung: Expertenbegutachtung
 Identifikatoren: DOI: 10.1038/35059027
BibTex Citekey: LaPorta.Voth.ea2001
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Titel: Nature
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: -
Seiten: - Band / Heft: 409 (6823) Artikelnummer: - Start- / Endseite: 1017 - 1019 Identifikator: -