DocumentCode
3029253
Title
2-D inner-shelf current observations from a single VHF WEllen RAdar (WERA) station
Author
Voulgaris, George ; Kumar, Nirnimesh ; Gurgel, Klaus-Werner ; Warner, John C. ; List, Jeffrey H.
Author_Institution
Dept. of Earth & Ocean Sci., Univ. of South Carolina, Columbia, SC, USA
fYear
2011
fDate
20-23 March 2011
Firstpage
57
Lastpage
65
Abstract
The majority of High Frequency (HF) radars used worldwide operate at medium to high frequencies (8 to 30 MHz) providing spatial resolutions ranging from 3 to 1.5 km and ranges from 150 to 50 km. This paper presents results from the deployment of a single Very High Frequency (VHF, 48 MHz) WEllen RAdar (WERA) radar with spatial resolution of 150 m and range 10-15 km, used in the nearshore off Cape Hatteras, NC, USA. It consisted of a linear array of 12 antennas operating in beam forming mode. Radial velocities were estimated from radar backscatter for a variety of wind and nearshore wave conditions. A methodology similar to that used for converting acoustically derived beam velocities to an orthogonal system is presented for obtaining 2-D current fields from a single station. The accuracy of the VHF radar-derived radial velocities is examined using a new statistical technique that evaluates the system over the range of measured velocities. The VHF radar velocities showed a bias of 3 to 7 cm/s over the experimental period explainable by the differences in radar penetration and in-situ measurement height. The 2-D current field shows good agreement with the in-situ measurements. Deviations and inaccuracies are well explained by the geometric dilution analysis.
Keywords
antenna arrays; array signal processing; backscatter; geophysical signal processing; oceanographic equipment; oceanographic regions; oceanographic techniques; radar signal processing; remote sensing by radar; statistical analysis; velocity measurement; 2D current fields; 2D inner shelf current observations; Cape Hatteras; North Carolina; USA; VHF Wellen radar station; WERA station; beam forming mode; frequency 48 MHz; in situ measurement height; linear antenna array; nearshore wave conditions; radar backscatter; radar penetration; radial velocity estimation; statistical technique; very high frequency radar; wind conditions; Current measurement; Radar antennas; Radar measurements; Sea measurements; Sea surface; Spatial resolution; VHF Radar; WERA; current accuracy; nearshore; radial currents; remote sensing; surface ocean currents;
fLanguage
English
Publisher
ieee
Conference_Titel
Current, Waves and Turbulence Measurements (CWTM), 2011 IEEE/OES 10th
Conference_Location
Monterey, CA
Print_ISBN
978-1-4244-9285-5
Type
conf
DOI
10.1109/CWTM.2011.5759525
Filename
5759525
Link To Document