Commit ee74eb7f50dbb67cdca9b332fb183139ed4d1b1e

Authored by Marion Bandet
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update fig ADCP V50 20140506 experiment

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88 >index</a></li> 95 >index</a></li>
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build/html/20140506.html
@@ -51,7 +51,17 @@ @@ -51,7 +51,17 @@
51 51
52 <div class="section" id="experiment-on-may-06-2014"> 52 <div class="section" id="experiment-on-may-06-2014">
53 <h1>Experiment on May 06, 2014<a class="headerlink" href="#experiment-on-may-06-2014" title="Permalink to this headline">¶</a></h1> 53 <h1>Experiment on May 06, 2014<a class="headerlink" href="#experiment-on-may-06-2014" title="Permalink to this headline">¶</a></h1>
54 -<p>In this experiment, 8 buoys were deployed in the Lower Saint Lawrence Estuary (LSLE). Each buoy was instrumented with a GPS and a SPOT. Each buoy had its drogue at various depths in order to sample the water column.</p> 54 +<p>On May 6, 2014, eight (8) buoys were deployed in the Lower Saint Lawrence Estuary. Each buoy was instrumented with a Global Positioning System (GPS) and a SPOT (<a class="reference external" href="https://www.findmespot.ca/en/">https://www.findmespot.ca/en/</a>). Each buoy was designed with a boyant surface float linked to a drogue via a chain. Three (3) different chain lengths were used in order to observe the effect of the dynamics of the water masses at various depths along the trajectories of the buoys. Each chain length (5, 205 and 750 cm, respectively) was duplicated. Additionally, two buoys were deployed without drogue and allowed to float freely at the water surface.
  55 +GPS were programmed to sample every 10 seconds and spots every 5 min.</p>
  56 +<p>The buoys were deployed by pairs of matching drogue&#8217;s depth, however due to satellite communication issues, not all GPSs provided data right after deployment. A delay of up to ?? min was observed.</p>
  57 +<p>A RDInstrument 300 kHz Acoustic Doppler Current Profiler (ADCP) was deployed for four (4) hours on May 7, 2014 while the buoys were drifting. The ADCP was mounted at the center of a donut-shaped float on a swivel ring to minimize the effects of pitch and roll. The ADCP was programmed to sample the water column using twenty-six (26) 0.5m bins. Vertical velocity profiles were exploited to compare with other estimates of velocity components.</p>
  58 +<p>A portable YSI CTD was used to sample vertical profiles of temperature and conductivity at 10 locations in the study area. The data were used to identify different water masses.</p>
  59 +<p>In addition, velocity field from MOGSL model output was obtained for comparison purposes.</p>
  60 +<p>Tides were obtained from <a class="reference external" href="http://tides.gc.ca/eng/data/table/2014/">http://tides.gc.ca/eng/data/table/2014/</a> at Rimouski.
  61 +Hourly wind data were downloaded from <a class="reference external" href="http://climat.meteo.gc.ca/">http://climat.meteo.gc.ca/</a> at station Pointe-au-Père, QC.
  62 +Simulated wave data were obtained from the wave model WAVEWATCH III (<a class="reference external" href="http://polar.ncep.noaa.gov/waves/index2.shtml">http://polar.ncep.noaa.gov/waves/index2.shtml</a>) outputs run at UQAR for the area of interest.</p>
  63 +<p>ADCP V50 data
  64 +/home/bandma01/Dropbox/UQAR/MEOPAR_Marion/Matlab_scripts/ADCP/html/ADCP_V50_May2014.html</p>
55 </div> 65 </div>
56 66
57 67
build/html/20140506_ADCP_V50.html 0 → 100644
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  45 +<h1>Data from ADCP V50 (from routine<a class="headerlink" href="#data-from-adcp-v50-from-routine" title="Permalink to this headline">¶</a></h1>
  46 +<p>roll - pitch - heading</p>
  47 +<div class="figure align-center">
  48 +<img alt="_images/ADCP_V50_May2014_01.png" src="_images/ADCP_V50_May2014_01.png" />
  49 +</div>
  50 +<div class="figure align-center">
  51 +<img alt="_images/ADCP_V50_May2014_03.png" src="_images/ADCP_V50_May2014_03.png" />
  52 +</div>
  53 +<div class="figure align-center">
  54 +<img alt="_images/ADCP_V50_May2014_04.png" src="_images/ADCP_V50_May2014_04.png" />
  55 +</div>
  56 +<div class="figure align-center">
  57 +<img alt="_images/ADCP_V50_May2014_05.png" src="_images/ADCP_V50_May2014_05.png" />
  58 +</div>
  59 +<p>range</p>
  60 +<div class="figure align-center">
  61 +<img alt="_images/ADCP_V50_May2014_08.png" src="_images/ADCP_V50_May2014_08.png" />
  62 +</div>
  63 +<p>Percent Good</p>
  64 +<div class="figure align-center">
  65 +<img alt="_images/ADCP_V50_May2014_09.png" src="_images/ADCP_V50_May2014_09.png" />
  66 +</div>
  67 +<p>Correlation</p>
  68 +<div class="figure align-center">
  69 +<img alt="_images/ADCP_V50_May2014_10.png" src="_images/ADCP_V50_May2014_10.png" />
  70 +</div>
  71 +<p>Intensity</p>
  72 +<div class="figure align-center">
  73 +<img alt="_images/ADCP_V50_May2014_11.png" src="_images/ADCP_V50_May2014_11.png" />
  74 +</div>
  75 +<p>Velocity (ENUErr)</p>
  76 +<div class="figure align-center">
  77 +<img alt="_images/ADCP_V50_May2014_12.png" src="_images/ADCP_V50_May2014_12.png" />
  78 +</div>
  79 +<p>Averaged velocity</p>
  80 +<div class="figure align-center">
  81 +<img alt="_images/ADCP_V50_May2014_13.png" src="_images/ADCP_V50_May2014_13.png" />
  82 +</div>
  83 +<p>Averaged Intensity</p>
  84 +<div class="figure align-center">
  85 +<img alt="_images/ADCP_V50_May2014_14.png" src="_images/ADCP_V50_May2014_14.png" />
  86 +</div>
  87 +<p>Averaged Correlation</p>
  88 +<div class="figure align-center">
  89 +<img alt="_images/ADCP_V50_May2014_15.png" src="_images/ADCP_V50_May2014_15.png" />
  90 +</div>
  91 +<p>Vertical Profiles of averaged velocity components</p>
  92 +<div class="figure align-center">
  93 +<img alt="_images/ADCP_V50_May2014_16.png" src="_images/ADCP_V50_May2014_16.png" />
  94 +</div>
  95 +<div class="figure align-center">
  96 +<img alt="_images/ADCP_V50_May2014_17.png" src="_images/ADCP_V50_May2014_17.png" />
  97 +</div>
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  99 +<img alt="_images/ADCP_V50_May2014_18.png" src="_images/ADCP_V50_May2014_18.png" />
  100 +</div>
  101 +<div class="figure align-center">
  102 +<img alt="_images/ADCP_V50_May2014_19.png" src="_images/ADCP_V50_May2014_19.png" />
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  104 +</div>
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205 >index</a></li> 205 >index</a></li>
206 <li class="right" > 206 <li class="right" >
207 - <a href="CurrentsCombination.html" title="Current combination and OGSL data feed" 207 + <a href="Comparison_WERA-ADCP_MayJune2013.html" title="Comparison WERA and ADCP radial velocities May-June 2013"
208 >next</a> |</li> 208 >next</a> |</li>
209 <li class="right" > 209 <li class="right" >
210 <a href="calibPAB.html" title="Outputs of WERAcalibration.m for PAB site" 210 <a href="calibPAB.html" title="Outputs of WERAcalibration.m for PAB site"
build/html/CurrentsCombination.html
@@ -25,7 +25,7 @@ @@ -25,7 +25,7 @@
25 <script type="text/javascript" src="_static/doctools.js"></script> 25 <script type="text/javascript" src="_static/doctools.js"></script>
26 <link rel="top" title="documentation_HFR_analysis 0.0.1 documentation" href="index.html" /> 26 <link rel="top" title="documentation_HFR_analysis 0.0.1 documentation" href="index.html" />
27 <link rel="next" title="Experiment on May 15, 2013" href="20130515.html" /> 27 <link rel="next" title="Experiment on May 15, 2013" href="20130515.html" />
28 - <link rel="prev" title="Comparison WERA and ADCP radial velocities September 2013" href="Comparison_WERA-ADCP_Sept2013.html" /> 28 + <link rel="prev" title="Comparison WERA and ADCP radial velocities May-June 2013" href="Comparison_WERA-ADCP_MayJune2013.html" />
29 </head> 29 </head>
30 <body> 30 <body>
31 <div class="related"> 31 <div class="related">
@@ -38,7 +38,7 @@ @@ -38,7 +38,7 @@
38 <a href="20130515.html" title="Experiment on May 15, 2013" 38 <a href="20130515.html" title="Experiment on May 15, 2013"
39 accesskey="N">next</a> |</li> 39 accesskey="N">next</a> |</li>
40 <li class="right" > 40 <li class="right" >
41 - <a href="Comparison_WERA-ADCP_Sept2013.html" title="Comparison WERA and ADCP radial velocities September 2013" 41 + <a href="Comparison_WERA-ADCP_MayJune2013.html" title="Comparison WERA and ADCP radial velocities May-June 2013"
42 accesskey="P">previous</a> |</li> 42 accesskey="P">previous</a> |</li>
43 <li><a href="index.html">documentation_HFR_analysis 0.0.1 documentation</a> &raquo;</li> 43 <li><a href="index.html">documentation_HFR_analysis 0.0.1 documentation</a> &raquo;</li>
44 </ul> 44 </ul>
@@ -101,8 +101,8 @@ The processing is conducted on the WERA server (ssh &lt;a class=&quot;reference external @@ -101,8 +101,8 @@ The processing is conducted on the WERA server (ssh &lt;a class=&quot;reference external
101 <div class="sphinxsidebar"> 101 <div class="sphinxsidebar">
102 <div class="sphinxsidebarwrapper"> 102 <div class="sphinxsidebarwrapper">
103 <h4>Previous topic</h4> 103 <h4>Previous topic</h4>
104 - <p class="topless"><a href="Comparison_WERA-ADCP_Sept2013.html"  
105 - title="previous chapter">Comparison WERA and ADCP radial velocities September 2013</a></p> 104 + <p class="topless"><a href="Comparison_WERA-ADCP_MayJune2013.html"
  105 + title="previous chapter">Comparison WERA and ADCP radial velocities May-June 2013</a></p>
106 <h4>Next topic</h4> 106 <h4>Next topic</h4>
107 <p class="topless"><a href="20130515.html" 107 <p class="topless"><a href="20130515.html"
108 title="next chapter">Experiment on May 15, 2013</a></p> 108 title="next chapter">Experiment on May 15, 2013</a></p>
@@ -138,7 +138,7 @@ The processing is conducted on the WERA server (ssh &lt;a class=&quot;reference external @@ -138,7 +138,7 @@ The processing is conducted on the WERA server (ssh &lt;a class=&quot;reference external
138 <a href="20130515.html" title="Experiment on May 15, 2013" 138 <a href="20130515.html" title="Experiment on May 15, 2013"
139 >next</a> |</li> 139 >next</a> |</li>
140 <li class="right" > 140 <li class="right" >
141 - <a href="Comparison_WERA-ADCP_Sept2013.html" title="Comparison WERA and ADCP radial velocities September 2013" 141 + <a href="Comparison_WERA-ADCP_MayJune2013.html" title="Comparison WERA and ADCP radial velocities May-June 2013"
142 >previous</a> |</li> 142 >previous</a> |</li>
143 <li><a href="index.html">documentation_HFR_analysis 0.0.1 documentation</a> &raquo;</li> 143 <li><a href="index.html">documentation_HFR_analysis 0.0.1 documentation</a> &raquo;</li>
144 </ul> 144 </ul>
build/html/WERAprocessing.html
@@ -24,7 +24,7 @@ @@ -24,7 +24,7 @@
24 <script type="text/javascript" src="_static/underscore.js"></script> 24 <script type="text/javascript" src="_static/underscore.js"></script>
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27 - <link rel="next" title="Comparison WERA and ADCP radial velocities September 2013" href="Comparison_WERA-ADCP_Sept2013.html" /> 27 + <link rel="next" title="Calibrations" href="calibration.html" />
28 <link rel="prev" title="CODAR radial currents processing" href="CODARprocessing.html" /> 28 <link rel="prev" title="CODAR radial currents processing" href="CODARprocessing.html" />
29 </head> 29 </head>
30 <body> 30 <body>
@@ -35,7 +35,7 @@ @@ -35,7 +35,7 @@
35 <a href="genindex.html" title="General Index" 35 <a href="genindex.html" title="General Index"
36 accesskey="I">index</a></li> 36 accesskey="I">index</a></li>
37 <li class="right" > 37 <li class="right" >
38 - <a href="Comparison_WERA-ADCP_Sept2013.html" title="Comparison WERA and ADCP radial velocities September 2013" 38 + <a href="calibration.html" title="Calibrations"
39 accesskey="N">next</a> |</li> 39 accesskey="N">next</a> |</li>
40 <li class="right" > 40 <li class="right" >
41 <a href="CODARprocessing.html" title="CODAR radial currents processing" 41 <a href="CODARprocessing.html" title="CODAR radial currents processing"
@@ -94,8 +94,8 @@ @@ -94,8 +94,8 @@
94 <p class="topless"><a href="CODARprocessing.html" 94 <p class="topless"><a href="CODARprocessing.html"
95 title="previous chapter">CODAR radial currents processing</a></p> 95 title="previous chapter">CODAR radial currents processing</a></p>
96 <h4>Next topic</h4> 96 <h4>Next topic</h4>
97 - <p class="topless"><a href="Comparison_WERA-ADCP_Sept2013.html"  
98 - title="next chapter">Comparison WERA and ADCP radial velocities September 2013</a></p> 97 + <p class="topless"><a href="calibration.html"
  98 + title="next chapter">Calibrations</a></p>
99 <h3>This Page</h3> 99 <h3>This Page</h3>
100 <ul class="this-page-menu"> 100 <ul class="this-page-menu">
101 <li><a href="_sources/WERAprocessing.txt" 101 <li><a href="_sources/WERAprocessing.txt"
@@ -125,7 +125,7 @@ @@ -125,7 +125,7 @@
125 <a href="genindex.html" title="General Index" 125 <a href="genindex.html" title="General Index"
126 >index</a></li> 126 >index</a></li>
127 <li class="right" > 127 <li class="right" >
128 - <a href="Comparison_WERA-ADCP_Sept2013.html" title="Comparison WERA and ADCP radial velocities September 2013" 128 + <a href="calibration.html" title="Calibrations"
129 >next</a> |</li> 129 >next</a> |</li>
130 <li class="right" > 130 <li class="right" >
131 <a href="CODARprocessing.html" title="CODAR radial currents processing" 131 <a href="CODARprocessing.html" title="CODAR radial currents processing"
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build/html/_sources/20140506.txt
1 Experiment on May 06, 2014 1 Experiment on May 06, 2014
2 ========================== 2 ==========================
3 -In this experiment, 8 buoys were deployed in the Lower Saint Lawrence Estuary (LSLE). Each buoy was instrumented with a GPS and a SPOT. Each buoy had its drogue at various depths in order to sample the water column. 3 +
  4 +On May 6, 2014, eight (8) buoys were deployed in the Lower Saint Lawrence Estuary. Each buoy was instrumented with a Global Positioning System (GPS) and a SPOT (https://www.findmespot.ca/en/). Each buoy was designed with a boyant surface float linked to a drogue via a chain. Three (3) different chain lengths were used in order to observe the effect of the dynamics of the water masses at various depths along the trajectories of the buoys. Each chain length (5, 205 and 750 cm, respectively) was duplicated. Additionally, two buoys were deployed without drogue and allowed to float freely at the water surface.
  5 +GPS were programmed to sample every 10 seconds and spots every 5 min.
  6 +
  7 +The buoys were deployed by pairs of matching drogue's depth, however due to satellite communication issues, not all GPSs provided data right after deployment. A delay of up to ?? min was observed.
  8 +
  9 +A RDInstrument 300 kHz Acoustic Doppler Current Profiler (ADCP) was deployed for four (4) hours on May 7, 2014 while the buoys were drifting. The ADCP was mounted at the center of a donut-shaped float on a swivel ring to minimize the effects of pitch and roll. The ADCP was programmed to sample the water column using twenty-six (26) 0.5m bins. Vertical velocity profiles were exploited to compare with other estimates of velocity components.
  10 +
  11 +A portable YSI CTD was used to sample vertical profiles of temperature and conductivity at 10 locations in the study area. The data were used to identify different water masses.
  12 +
  13 +In addition, velocity field from MOGSL model output was obtained for comparison purposes.
  14 +
  15 +Tides were obtained from http://tides.gc.ca/eng/data/table/2014/ at Rimouski.
  16 +Hourly wind data were downloaded from http://climat.meteo.gc.ca/ at station Pointe-au-Père, QC.
  17 +Simulated wave data were obtained from the wave model WAVEWATCH III (http://polar.ncep.noaa.gov/waves/index2.shtml) outputs run at UQAR for the area of interest.
  18 +
  19 +ADCP V50 data
  20 +/home/bandma01/Dropbox/UQAR/MEOPAR_Marion/Matlab_scripts/ADCP/html/ADCP_V50_May2014.html
4 21
5 22
6 23
build/html/_sources/20140506_ADCP_V50.txt 0 → 100644
@@ -0,0 +1,71 @@ @@ -0,0 +1,71 @@
  1 +Data from ADCP V50 (from routine
  2 +*******************************************
  3 +
  4 +roll - pitch - heading
  5 +
  6 +
  7 +.. figure:: figures/20140506/html/ADCP_V50_May2014_01.png
  8 + :align: center
  9 +
  10 +.. figure:: figures/20140506/html/ADCP_V50_May2014_03.png
  11 + :align: center
  12 +
  13 +.. figure:: figures/20140506/html/ADCP_V50_May2014_04.png
  14 + :align: center
  15 +
  16 +.. figure:: figures/20140506/html/ADCP_V50_May2014_05.png
  17 + :align: center
  18 +
  19 +range
  20 +
  21 +.. figure:: figures/20140506/html/ADCP_V50_May2014_08.png
  22 + :align: center
  23 +
  24 +Percent Good
  25 +
  26 +.. figure:: figures/20140506/html/ADCP_V50_May2014_09.png
  27 + :align: center
  28 +
  29 +Correlation
  30 +
  31 +.. figure:: figures/20140506/html/ADCP_V50_May2014_10.png
  32 + :align: center
  33 +
  34 +Intensity
  35 +
  36 +.. figure:: figures/20140506/html/ADCP_V50_May2014_11.png
  37 + :align: center
  38 +
  39 +Velocity (ENUErr)
  40 +
  41 +.. figure:: figures/20140506/html/ADCP_V50_May2014_12.png
  42 + :align: center
  43 +
  44 +Averaged velocity
  45 +
  46 +.. figure:: figures/20140506/html/ADCP_V50_May2014_13.png
  47 + :align: center
  48 +
  49 +Averaged Intensity
  50 +
  51 +.. figure:: figures/20140506/html/ADCP_V50_May2014_14.png
  52 + :align: center
  53 +
  54 +Averaged Correlation
  55 +
  56 +.. figure:: figures/20140506/html/ADCP_V50_May2014_15.png
  57 + :align: center
  58 +
  59 +Vertical Profiles of averaged velocity components
  60 +
  61 +.. figure:: figures/20140506/html/ADCP_V50_May2014_16.png
  62 + :align: center
  63 +
  64 +.. figure:: figures/20140506/html/ADCP_V50_May2014_17.png
  65 + :align: center
  66 +
  67 +.. figure:: figures/20140506/html/ADCP_V50_May2014_18.png
  68 + :align: center
  69 +
  70 +.. figure:: figures/20140506/html/ADCP_V50_May2014_19.png
  71 + :align: center
build/html/_sources/dailylog.txt
@@ -240,9 +240,67 @@ No school @@ -240,9 +240,67 @@ No school
240 - same for PAB: Process_TimePeriod_wera.sh -s PAB -d 2014126 -f 2014130 240 - same for PAB: Process_TimePeriod_wera.sh -s PAB -d 2014126 -f 2014130
241 - do_process_SORT_pol 2014126 2014130 /home/wera/data2/PAB 241 - do_process_SORT_pol 2014126 2014130 /home/wera/data2/PAB
242 242
  243 +
243 **1er fevrier 2016** 244 **1er fevrier 2016**
244 - transfer data on local machine from wera server 245 - transfer data on local machine from wera server
245 ./do_filetransferssh.sh PAO 2014126 2014130 246 ./do_filetransferssh.sh PAO 2014126 2014130
246 ./do_filetransferssh.sh PAB 2014126 2014130 247 ./do_filetransferssh.sh PAB 2014126 2014130
247 248
  249 +- departure for Calgary/Banff MEOPeer training meeting Feb 1-5, 2016
  250 +
  251 +**10-11-12 feb, 2016**
  252 +- work on data processing and comparisons, correlation, RMS diff with new procesing in hope it will improve the data...
  253 +
  254 +**17 feb, 2016**
  255 +- wrap up of last data analyis
  256 +- getting ready for field work
  257 +
  258 +**18-19 feb, 2016**
  259 +- field work parc du Bic - BinWin 2016
  260 +
  261 +**24-25-26 feb, 2016**
  262 +
  263 +
  264 +**2-3 Mar, 2016**
  265 +- spring break
  266 +
  267 +**4 Mar, 2016**
  268 +
  269 +**9-10-11 Mar 2016**
  270 +- Download data from wera server to create movie of combined currents
  271 +- work on script
  272 +- make movie: CombinedCurrents_20150421-20160203fig.avi
  273 +
  274 +**16 Mar, 2016**
  275 +- modifiy script to make a monthly movie of combined currents
  276 +
  277 +**17 Mar 2016**
  278 +- implemente script, generate movies for each month between April 2015 and January 2016
  279 +- update repository Matlab_scripts on gitlasso
  280 +- download .csv files from wera server
  281 +- make package for Louis Maltais with hourly data for Dec1-2 2015 (csv files + movie)
  282 +
  283 +**18 Mar 2016**
  284 +- send package to Louis Maltais
  285 +- write paper of HF radars and buoy comparison
  286 +
  287 +**29 Mar 2016**
  288 +- MEOPAR report for Dany
  289 +- work on paper
  290 +- comparison SPOT and GPS data with Paul (year 2014) for archive on Mingan
  291 +
  292 +**30 Mar 2016**
  293 +- work on paper
  294 +- download tide data for may 2014
  295 +- download wind data for May 5, 6, 7, 8 2014
  296 +
  297 +
  298 +**6 & 7 jun 2016**
  299 +- work on paper: estimate coverage area of radial velocities for each site: HFR_coverage_May2014.m
  300 +- write bash script to transfer data from CODAR server to external HD: fileTransferCODAR.sh
  301 +- transfer data from PAP for May 1-10, 2014
  302 +- transfer data from STF fro May 1-10, 2014
  303 +- apply matlab routine make_ruv2matMBtest.m to convert binary data to .mat
  304 +- run HFR_coverage_May2014.m for PAO, PAB, PAP, STF
  305 +
248 306
build/html/dailylog.html
@@ -359,6 +359,49 @@ No school&lt;/p&gt; @@ -359,6 +359,49 @@ No school&lt;/p&gt;
359 - transfer data on local machine from wera server 359 - transfer data on local machine from wera server
360 ./do_filetransferssh.sh PAO 2014126 2014130 360 ./do_filetransferssh.sh PAO 2014126 2014130
361 ./do_filetransferssh.sh PAB 2014126 2014130</p> 361 ./do_filetransferssh.sh PAB 2014126 2014130</p>
  362 +<ul class="simple">
  363 +<li>departure for Calgary/Banff MEOPeer training meeting Feb 1-5, 2016</li>
  364 +</ul>
  365 +<p><strong>10-11-12 feb, 2016</strong>
  366 +- work on data processing and comparisons, correlation, RMS diff with new procesing in hope it will improve the data...</p>
  367 +<p><strong>17 feb, 2016</strong>
  368 +- wrap up of last data analyis
  369 +- getting ready for field work</p>
  370 +<p><strong>18-19 feb, 2016</strong>
  371 +- field work parc du Bic - BinWin 2016</p>
  372 +<p><strong>24-25-26 feb, 2016</strong></p>
  373 +<p><strong>2-3 Mar, 2016</strong>
  374 +- spring break</p>
  375 +<p><strong>4 Mar, 2016</strong></p>
  376 +<p><strong>9-10-11 Mar 2016</strong>
  377 +- Download data from wera server to create movie of combined currents
  378 +- work on script
  379 +- make movie: CombinedCurrents_20150421-20160203fig.avi</p>
  380 +<p><strong>16 Mar, 2016</strong>
  381 +- modifiy script to make a monthly movie of combined currents</p>
  382 +<p><strong>17 Mar 2016</strong>
  383 +- implemente script, generate movies for each month between April 2015 and January 2016
  384 +- update repository Matlab_scripts on gitlasso
  385 +- download .csv files from wera server
  386 +- make package for Louis Maltais with hourly data for Dec1-2 2015 (csv files + movie)</p>
  387 +<p><strong>18 Mar 2016</strong>
  388 +- send package to Louis Maltais
  389 +- write paper of HF radars and buoy comparison</p>
  390 +<p><strong>29 Mar 2016</strong>
  391 +- MEOPAR report for Dany
  392 +- work on paper
  393 +- comparison SPOT and GPS data with Paul (year 2014) for archive on Mingan</p>
  394 +<p><strong>30 Mar 2016</strong>
  395 +- work on paper
  396 +- download tide data for may 2014
  397 +- download wind data for May 5, 6, 7, 8 2014</p>
  398 +<p><strong>6 &amp; 7 jun 2016</strong>
  399 +- work on paper: estimate coverage area of radial velocities for each site: HFR_coverage_May2014.m
  400 +- write bash script to transfer data from CODAR server to external HD: fileTransferCODAR.sh
  401 +- transfer data from PAP for May 1-10, 2014
  402 +- transfer data from STF fro May 1-10, 2014
  403 +- apply matlab routine make_ruv2matMBtest.m to convert binary data to .mat
  404 +- run HFR_coverage_May2014.m for PAO, PAB, PAP, STF</p>
362 </div> 405 </div>
363 406
364 407
build/html/searchindex.js
1 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3 \ No newline at end of file 3 \ No newline at end of file
source/20140506.rst
1 Experiment on May 06, 2014 1 Experiment on May 06, 2014
2 ========================== 2 ==========================
3 -In this experiment, 8 buoys were deployed in the Lower Saint Lawrence Estuary (LSLE). Each buoy was instrumented with a GPS and a SPOT. Each buoy had its drogue at various depths in order to sample the water column. 3 +
  4 +On May 6, 2014, eight (8) buoys were deployed in the Lower Saint Lawrence Estuary. Each buoy was instrumented with a Global Positioning System (GPS) and a SPOT (https://www.findmespot.ca/en/). Each buoy was designed with a boyant surface float linked to a drogue via a chain. Three (3) different chain lengths were used in order to observe the effect of the dynamics of the water masses at various depths along the trajectories of the buoys. Each chain length (5, 205 and 750 cm, respectively) was duplicated. Additionally, two buoys were deployed without drogue and allowed to float freely at the water surface.
  5 +GPS were programmed to sample every 10 seconds and spots every 5 min.
  6 +
  7 +The buoys were deployed by pairs of matching drogue's depth, however due to satellite communication issues, not all GPSs provided data right after deployment. A delay of up to ?? min was observed.
  8 +
  9 +A RDInstrument 300 kHz Acoustic Doppler Current Profiler (ADCP) was deployed for four (4) hours on May 7, 2014 while the buoys were drifting. The ADCP was mounted at the center of a donut-shaped float on a swivel ring to minimize the effects of pitch and roll. The ADCP was programmed to sample the water column using twenty-six (26) 0.5m bins. Vertical velocity profiles were exploited to compare with other estimates of velocity components.
  10 +
  11 +A portable YSI CTD was used to sample vertical profiles of temperature and conductivity at 10 locations in the study area. The data were used to identify different water masses.
  12 +
  13 +In addition, velocity field from MOGSL model output was obtained for comparison purposes.
  14 +
  15 +Tides were obtained from http://tides.gc.ca/eng/data/table/2014/ at Rimouski.
  16 +Hourly wind data were downloaded from http://climat.meteo.gc.ca/ at station Pointe-au-Père, QC.
  17 +Simulated wave data were obtained from the wave model WAVEWATCH III (http://polar.ncep.noaa.gov/waves/index2.shtml) outputs run at UQAR for the area of interest.
  18 +
  19 +ADCP V50 data
  20 +/home/bandma01/Dropbox/UQAR/MEOPAR_Marion/Matlab_scripts/ADCP/html/ADCP_V50_May2014.html
4 21
5 22
6 23
source/20140506_ADCP_V50.rst 0 → 100644
@@ -0,0 +1,71 @@ @@ -0,0 +1,71 @@
  1 +Data from ADCP V50 (from routine
  2 +*******************************************
  3 +
  4 +roll - pitch - heading
  5 +
  6 +
  7 +.. figure:: figures/20140506/html/ADCP_V50_May2014_01.png
  8 + :align: center
  9 +
  10 +.. figure:: figures/20140506/html/ADCP_V50_May2014_03.png
  11 + :align: center
  12 +
  13 +.. figure:: figures/20140506/html/ADCP_V50_May2014_04.png
  14 + :align: center
  15 +
  16 +.. figure:: figures/20140506/html/ADCP_V50_May2014_05.png
  17 + :align: center
  18 +
  19 +range
  20 +
  21 +.. figure:: figures/20140506/html/ADCP_V50_May2014_08.png
  22 + :align: center
  23 +
  24 +Percent Good
  25 +
  26 +.. figure:: figures/20140506/html/ADCP_V50_May2014_09.png
  27 + :align: center
  28 +
  29 +Correlation
  30 +
  31 +.. figure:: figures/20140506/html/ADCP_V50_May2014_10.png
  32 + :align: center
  33 +
  34 +Intensity
  35 +
  36 +.. figure:: figures/20140506/html/ADCP_V50_May2014_11.png
  37 + :align: center
  38 +
  39 +Velocity (ENUErr)
  40 +
  41 +.. figure:: figures/20140506/html/ADCP_V50_May2014_12.png
  42 + :align: center
  43 +
  44 +Averaged velocity
  45 +
  46 +.. figure:: figures/20140506/html/ADCP_V50_May2014_13.png
  47 + :align: center
  48 +
  49 +Averaged Intensity
  50 +
  51 +.. figure:: figures/20140506/html/ADCP_V50_May2014_14.png
  52 + :align: center
  53 +
  54 +Averaged Correlation
  55 +
  56 +.. figure:: figures/20140506/html/ADCP_V50_May2014_15.png
  57 + :align: center
  58 +
  59 +Vertical Profiles of averaged velocity components
  60 +
  61 +.. figure:: figures/20140506/html/ADCP_V50_May2014_16.png
  62 + :align: center
  63 +
  64 +.. figure:: figures/20140506/html/ADCP_V50_May2014_17.png
  65 + :align: center
  66 +
  67 +.. figure:: figures/20140506/html/ADCP_V50_May2014_18.png
  68 + :align: center
  69 +
  70 +.. figure:: figures/20140506/html/ADCP_V50_May2014_19.png
  71 + :align: center
source/dailylog.rst
@@ -284,3 +284,23 @@ No school @@ -284,3 +284,23 @@ No school
284 - send package to Louis Maltais 284 - send package to Louis Maltais
285 - write paper of HF radars and buoy comparison 285 - write paper of HF radars and buoy comparison
286 286
  287 +**29 Mar 2016**
  288 +- MEOPAR report for Dany
  289 +- work on paper
  290 +- comparison SPOT and GPS data with Paul (year 2014) for archive on Mingan
  291 +
  292 +**30 Mar 2016**
  293 +- work on paper
  294 +- download tide data for may 2014
  295 +- download wind data for May 5, 6, 7, 8 2014
  296 +
  297 +
  298 +**6 & 7 jun 2016**
  299 +- work on paper: estimate coverage area of radial velocities for each site: HFR_coverage_May2014.m
  300 +- write bash script to transfer data from CODAR server to external HD: fileTransferCODAR.sh
  301 +- transfer data from PAP for May 1-10, 2014
  302 +- transfer data from STF fro May 1-10, 2014
  303 +- apply matlab routine make_ruv2matMBtest.m to convert binary data to .mat
  304 +- run HFR_coverage_May2014.m for PAO, PAB, PAP, STF
  305 +
  306 +
source/figures/20140506/html/ADCP_V50_May2014.html 0 → 100644
@@ -0,0 +1,1019 @@ @@ -0,0 +1,1019 @@
  1 +
  2 +<!DOCTYPE html
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  58 + </style></head><body><div class="content"><h2>Contents</h2><div><ul><li><a href="#2">roll - pitch - heading</a></li><li><a href="#3">orientation - voltage - salinity - pressure sensor depth - temperature -</a></li><li><a href="#4">speed of sound</a></li><li><a href="#5">cell depth</a></li><li><a href="#6">range</a></li><li><a href="#7">PG</a></li><li><a href="#8">CORR</a></li><li><a href="#9">intensity</a></li><li><a href="#10">velocity ENUErr</a></li><li><a href="#11">averaged velocity</a></li><li><a href="#12">intensity</a></li><li><a href="#13">correlation</a></li><li><a href="#14">Vertical profile of averaged velocity</a></li><li><a href="#15">make movie of u and v vs depth</a></li></ul></div><pre class="codeinput"><span class="comment">% ADCP-V50</span>
  59 +<span class="comment">% first import data (.pd0) using Velocity software dated december 2013 on</span>
  60 +<span class="comment">% windows 8, then export as .mat</span>
  61 +
  62 +clear <span class="string">all</span>
  63 +close <span class="string">all</span>
  64 +
  65 +addpath (genpath(<span class="string">'/home/bandma01/Dropbox/MEOPAR_Marion/Matlab/mfiles'</span>));
  66 +addpath (genpath(<span class="string">'/home/bandma01/Dropbox/UQAR/MEOPAR_Marion/Matlab_Analysis/'</span>));
  67 +addpath (genpath(<span class="string">'/home/bandma01/Dropbox/Matlab_Tools/'</span>));
  68 +
  69 +
  70 +
  71 +<span class="comment">%cd('H:\MEOPAR\DATA\ADCP-V50')</span>
  72 +cd(<span class="string">'/run/media/bandma01/SeagateWireless/MEOPAR/DATA/ADCP-V50'</span>)
  73 +load(<span class="string">'Meopar 20140507T091318.averaged.mat'</span>)
  74 + <span class="comment">% load structures and cell: info, names, sens, vb,wt</span>
  75 +
  76 +<span class="comment">% ADCP position (48 38.778'N; 068 37.334'W)</span>
  77 +ADCP_lon = -68.6222;
  78 +ADCP_lat = 48.6463;
  79 +
  80 +<span class="comment">% Time deployed and retrieved (from log book) UTC</span>
  81 + <span class="comment">% Td modified from 10:53am to 10:54am</span>
  82 +Td = datenum(2014,05,07,10,54,00);
  83 +Tr = datenum(2014,05,07,14,45,00);
  84 +</pre><h2>roll - pitch - heading<a name="2"></a></h2><pre class="codeinput">figure(1)
  85 +subplot(311)
  86 +plot(sens.dnum,sens.r)
  87 +grid <span class="string">on</span>
  88 +datetick(<span class="string">'x'</span>,15)
  89 +ylabel(<span class="string">'roll (deg)'</span>)
  90 +title([<span class="string">'start date = '</span> num2str(datestr(sens.dnum(1))) ])
  91 +