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- W2162744474 abstract "The length scale and the spatio-temporal variation of turbulence intensityhas relevant implications on phytoplankton dynamics. Thus, it is important to estimatethe relevant parameters that characterize the turbulence in the water column,such as epsilon (kinetic energy dissipation rates). One of the main objectives in thiswork is the characterization of the physical dynamics at scales relevant to the biology.Here we show different approaches to estimate the epsilon in the Alfacs Bay(Ebre Delta), where recurrent harmful algal bloom events occur. First, we appliedthe solid boundary layer theory wind velocities obtained by a nearby meteorologicalstation. Secondly, the gradient temperature microstructure method, based onthe Batchelor spectrum adjustment was applied on temperature data obtained bya Self-Contained Autonomous MicroProfiler (SCAMP). These two approaches havemethodological restrictions, i.e. isotropic turbulent or the process applied to do theBatchelor spectrum fitting.A new method to characterize the turbulence is proposed. The velocity fields measuredby a deployed high resolution 2 MHz acoustic Doppler current profiler wereprocessed using the Reynolds decomposition to obtain an empirical parameterwhich provides us the information about the turbulent kinetic energy in the watercolumn." @default.
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- W2162744474 date "2009-11-01" @default.
- W2162744474 modified "2023-09-24" @default.
- W2162744474 title "New methodological approach to estimate the turbulent kinetic energy dissipation rate" @default.
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