Rates of Dissipation of Turbulent Kinetic Energy in a High Reynolds Number Tidal Channel

The ability to estimate the rate of dissipation ( epsilon ) of turbulent kinetic energy at middepth in a high-speed tidal channel using broadband acoustic Doppler current profilers (ADCPs) is assessed by making comparisons to direct measurements of epsilon obtained using shear probes mounted on a st...

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Veröffentlicht in:Journal of atmospheric and oceanic technology 2016-04, Vol.33 (4), p.817-837
Hauptverfasser: McMillan, Justine M, Hay, Alex E, Lueck, Rolf G, Wolk, Fabian
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Sprache:eng
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Zusammenfassung:The ability to estimate the rate of dissipation ( epsilon ) of turbulent kinetic energy at middepth in a high-speed tidal channel using broadband acoustic Doppler current profilers (ADCPs) is assessed by making comparisons to direct measurements of epsilon obtained using shear probes mounted on a streamlined underwater buoy. The investigation was carried out in Grand Passage, Nova Scotia, Canada, where the depth-averaged flow speed reached 2 m s super(-1) and the Reynolds number was 8 10 super(7). The speed bin-averaged dissipation rates estimated from the ADCP data agree with the shear probe data to within a factor of 2. Both the ADCP and the shear probe measurements indicate a linear dependence of epsilon on the cube of the flow speed during flood and much lower dissipation rates during ebb. The ebb-flood asymmetry and the small-scale intermittency in epsilon are also apparent in the lognormal distributions of the shear probe data. Possible sources of bias and error in the epsilon estimates are investigated, and the most likely causes of the discrepancy between the ADCP and shear probe estimates are the cross-channel separation of the instruments and the high degree of spatial variability that exists in the channel.
ISSN:0739-0572
1520-0426
DOI:10.1175/JTECH-D-15-0167.1