DocumentCode
767865
Title
Directional ocean wave measurements in a coastal setting using a focused array imaging radar
Author
Frasier, Stephen J. ; Yong Liu ; Moller, Delwyn ; McIntosh, R.E. ; Long, C.
Author_Institution
Microwave Remote Sensing Lab., Massachusetts Univ., Amherst, MA
Volume
33
Issue
2
fYear
1995
fDate
3/1/1995 12:00:00 AM
Firstpage
428
Lastpage
440
Abstract
A unique focused array imaging Doppler radar was used to measure directional spectra of ocean surface waves in a nearshore experiment performed on the North Carolina Outer Banks. Radar images of the ocean surface´s Doppler velocity were used to generate two dimensional spectra of the radial component of the ocean surface velocity field. These are compared to simultaneous in-situ measurements made by a nearby array of submerged pressure sensors. Analysis of the resulting two-dimensional spectra include comparisons of dominant wave lengths, wave directions, and wave energy accounting for relative differences in water depth at the measurement locations. Limited estimates of the two-dimensional surface displacement spectrum are derived from the radar data. The radar measurements are analagous to those of interferometric synthetic aperture radars (INSAR), and the equivalent INSAR parameters are shown. The agreement between the remote and in-situ measurements suggests that an imaging Doppler radar is effective for these wave measurements at near grazing incidence angles
Keywords
Doppler radar; ocean waves; oceanographic regions; oceanographic techniques; radar applications; radar imaging; remote sensing by radar; Doppler radar; North Atlantic; North Carolina; Outer Banks; United States USA; coast; directional spectra; dominant wave length; focused array imaging radar; grazing incidence; measurement technique; nearshore; ocean wave direction; remote sensing; sea surface; surface wave; two-dimensional spectra; wave energy; Doppler radar; Focusing; Ocean waves; Performance evaluation; Radar imaging; Sea measurements; Sea surface; Sensor arrays; Surface waves; Synthetic aperture radar interferometry;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/36.377943
Filename
377943
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