Flow chart for shear probes: Difference between revisions

From Atomix
Aleboyer (talk | contribs)
No edit summary
Aleboyer (talk | contribs)
→‎Choosing the processing parameters: remong step three which not a processing step.
Line 40: Line 40:
:# Choose the length of data (in meters) used for each dissipation estimate – [[diss-length]].
:# Choose the length of data (in meters) used for each dissipation estimate – [[diss-length]].
:# Choose the lowest wavenumber of spectral estimation – [[fft-length]].
:# Choose the lowest wavenumber of spectral estimation – [[fft-length]].
:# Translate [[diss-length]] and [[fft-length]] into [[duration]] (time).
:# Round these up to [[nearest power-of-two number]] of samples.
:# Round these up to [[nearest power-of-two number]] of samples.
:# Choose a [[high-pass filter cut-off frequency]] to be consistent with duration of the [[fft-length]].
:# Choose a [[high-pass filter cut-off frequency]] to be consistent with duration of the [[fft-length]].
Line 51: Line 50:


</div>
</div>


== Compute the [[dissipation rate estimates]] ==
== Compute the [[dissipation rate estimates]] ==

Revision as of 18:27, 6 June 2024

The processing of shear-probe data can be divided into five major steps, which apply to data collected with any platform or vehicle. There are many sub-steps to these major steps. The major steps are:

Conversion to physical units


"Section" selection


Choosing the processing parameters

Compute the dissipation rate estimates


Apply quality-control metrics


Return to Shear Probe Welcome Page