Dataset requirements for ADCP structure function: Difference between revisions

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This page details all the ADCP data channels and metadata required to utilize the structure function techniques to reliably determine [[turbulence kinetic energy dissipation]] rate estimates.  These will be divided into essential and supplementary categories.
This page details all the ADCP data channels and metadata required to utilize the structure function techniques to reliably determine [[turbulence kinetic energy dissipation]] rate estimates.  These will be divided into essential and supplementary categories.


== Essential ADCP channels & metadata ==
== Benchmark datasets: Velocity profilers ==


ATOMIX provides several benchmark datasets consisting of four processing levels.


== Supplementary data ==
# [[Level 1 data (velocity profilers)|Raw timeseries]]
#* full resolution data in physical units
# [[Level 2 data (velocity profilers)|Quality-controlled and segmented timeseries]]
#* Quality-controlled from level 1
#* [[Detrending time series|Detrended]] and subdivided further in individual [[segmenting|segments]].
# [[Level 3 data (velocity profilers)|Structure function]]
# [[Level 4 data (velocity profilers)|Dissipation <math>\varepsilon</math> estimates]]
#* dissipation estimates and corresponding quality parameter as time series
 
 
 
 
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return to [[Velocity profilers]]




[[Category:Velocity profilers]]
[[Category:Velocity profilers]]

Revision as of 18:27, 15 December 2021

This page details all the ADCP data channels and metadata required to utilize the structure function techniques to reliably determine turbulence kinetic energy dissipation rate estimates. These will be divided into essential and supplementary categories.

Benchmark datasets: Velocity profilers

ATOMIX provides several benchmark datasets consisting of four processing levels.

  1. Raw timeseries
    • full resolution data in physical units
  2. Quality-controlled and segmented timeseries
    • Quality-controlled from level 1
    • Detrended and subdivided further in individual segments.
  3. Structure function
  4. Dissipation [math]\displaystyle{ \varepsilon }[/math] estimates
    • dissipation estimates and corresponding quality parameter as time series




return to Velocity profilers