<div><p>See <a href="http://globec.whoi.edu/so-dir/data_doc/WHOI-2005-07_Moored_Report_updated.pdf" target="_blank">WHOI-2005-07.pdf</a> (10.2 MB)]</p>
<p>Rotation angle (rotangle): The basic coordinate system is x(east) and y (north); the x and y velocity components are u and v. for some analysis, the coordinate and velocity are rotated into a local isobath coordinate system, where xr and yr are the rotated coordinates and ur and vr are the rotated velocity components. rotangle is the angle that the rotated xr and ur point in, measured in degrees counterclockwise from east. In the A1 case, rotangle = -152 degrees. Thus, the xr axis has been rotated 152 degrees clockwise (due to the negative sign on rotangle) from x (east). The governing complex equation (as it is written in matlab) is:</p>
<p>ur + i*vr = exp(i*pi*rotangle/180)*(u + i*v) where i = sqrt(-1).</p></div>
Southern Ocean 2001 moorings: depth and pressure vs. time
<div><p>"As part of the SO GLOBEC field program, the Woods Hole Oceanographic Institution (WHOI) deployed an array of instrumented subsurface moorings near Marguerite Bay during March 2001- March 2002 and a second array during March 2002-March 2003 (Figure 1). The moored measurements included pressure, temperature, conductivity, velocity, acoustic backscatter, and ice thickness. To monitor surface forcing during the moored array observations, two automatic weather stations (AWSs) were deployed on islands in Marguerite Bay and time series of wind, air temperature, pressure, and relative humidity were collected from May 2001 through March 2003.</p>
<p>The primary goals of this effort were to measure the temporal and spatial variability of currents and physical and biological water properties in the study area on time scales from hours to seasonal, improve our description and understanding of the regional general circulation, and identify and describe those physical processes that make this region well suited for krill production and survival." <em>[from technical report <a href="http://globec.whoi.edu/so-dir/data_doc/WHOI-2005-07_Moored_Report_updated.pdf" target="_blank">WHOI-2005-07.pdf</a> (10.2 MB)]</em></p></div>
moorings_depth and pressure 2001
<div><p>See <a href="http://globec.whoi.edu/so-dir/data_doc/WHOI-2005-07_Moored_Report_updated.pdf" target="_blank">WHOI-2005-07.pdf</a> (10.2 MB)]</p></div>
3236
moorings_depth and pressure 2001
2010-06-16T16:40:40-04:00
2010-06-16T16:40:40-04:00
2023-07-07T16:10:26-04:00
urn:bcodmo:dataset:3236
Southern Ocean 2001 moorings: depth and pressure vs. time from ARSV Laurence M. Gould LMG0103, LMG0201A in the Southern Ocean from 2001-2002 (SOGLOBEC project)
Southern Ocean 2001 moorings: depth and pressure vs. time from ARSV Laurence M. Gould LMG0103, LMG0201A in the Southern Ocean from 2001-2002.
false
Beardsley, R., Limeburner, R. (2020) Southern Ocean 2001 moorings: depth and pressure vs. time from ARSV Laurence M. Gould LMG0103, LMG0201A in the Southern Ocean from 2001-2002 (SOGLOBEC project). Biological and Chemical Oceanography Data Management Office (BCO-DMO). (Version 1) Version Date 2009-10-27 [if applicable, indicate subset used]. doi:10.26008/1912/bco-dmo.3236.1 [access date]
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1
10.26008/1912/bco-dmo.3236.1
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2009-10-27
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