Flow chart for shear probes: Difference between revisions

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== Conversion to physical units ==
== Conversion to physical units ==
<div class="mw-collapsible mw-collapsed" id="physical units" data-collapsetext="Collapse" data-expandtext="Expand conditions">
<div class="mw-collapsible mw-collapsed" id="physical units" data-collapsetext="Collapse" data-expandtext="Expand">
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As a first step, the raw binary data needs to be transformed into physical units.
As a first step, the raw binary data needs to be transformed into physical units.
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:#  [[Convert the shear probe data]] samples into physical units
:#  [[Convert the shear probe data]] samples into physical units
:#  Convert all other signals per the recommendations of the manufacturer of the sensor or instruments that produce these signals.
:#  Convert all other signals per the recommendations of the manufacturer of the sensor or instruments that produce these signals.
Please note that most choices made must be included in a data set, as described
in the [[Netcdf meta data (shear probes)|list of meta data]].
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Please note that most choices made must be included in a data set, as described
== "Section" selection ==
in the [[Netcdf meta data (shear probes)|list of meta data]].
== "Section" selection ==
<div class="mw-collapsible  mw-collapsed" id="Section" data-collapsetext="Collapse" data-expandtext="Expand">
<div class="mw-collapsible  mw-collapsed" id="Section" data-collapsetext="Collapse" data-expandtext="Expand">
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==     Choosing the [[processing parameters]] ==
 
<div class="mw-collapsible" id="processing parameters" data-collapsetext="Collapse" data-expandtext="Expand">
== Choosing the [[processing parameters]] ==
<div class="mw-collapsible mw-collapsed" id="processing parameters" data-collapsetext="Collapse" data-expandtext="Expand">
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:* Choose the length of data (in meters) used for each dissipation estimate – [[diss-length]].  
:# Choose the lowest wavenumber of spectral estimation (as a function of the vehicle's length) – [[fft-length]].
:* Choose the lowest wavenumber of spectral estimation [[fft-length]].
:# Choose the length of data (in meters) used for each dissipation estimate – [[diss-length]].
:* Translate [[diss-length]] and [[fft-length]] into [[duration]] (time).
:# Choose a [[high-pass filter cut-off frequency]] to be consistent with duration of the [[fft-length]].
:* Round these up to [[nearest power-of-two number]] of samples.
:# Choose [[de-spiking parameters]].
:* Choose a [[high-pass filter cut-off frequency]] to be consistent with duration of the [[fft-length]].  
:# Choose [[vibration-coherent noise removal]].
:* Choose [[de-spiking parameters]].  
:# Choose [[quality-control parameters]].
:* Choose [[vibration-coherent noise removal]].




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


<div class="mw-collapsible" id="estimates" data-collapsetext="Collapse" data-expandtext="Expand">
== Compute the [[dissipation rate estimates]] ==
<div class="mw-collapsible mw-collapsed" id="estimates" data-collapsetext="Collapse" data-expandtext="Expand">
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The following steps are recommended to obtain estimates of the turbulent dissipation rate of kinetic energy (<math>\varepsilon</math>).   
The following steps are recommended to obtain estimates of the turbulent dissipation rate of kinetic energy (<math>\varepsilon</math>).   
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==      Apply [[Shear_probes_quality_control_metrics|quality-control metrics]] ==
==      Apply [[Shear_probes_quality_control_metrics|quality-control metrics]] ==


<div class="mw-collapsible" id="quality_control" data-collapsetext="Collapse" data-expandtext="Expand">
<div class="mw-collapsible mw-collapsed" id="quality_control" data-collapsetext="Collapse" data-expandtext="Expand">
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Shear-probe data can be corrupted or compromised in several different ways.
Shear-probe data can be corrupted or compromised in several different ways.

Latest revision as of 20:15, 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


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