DocumentCode
1052870
Title
Short gravity and capillary wave spectra from tower-based radar
Author
Lawner, Richard T. ; Moore, RICHARD K.
Author_Institution
Univ. of Kansas Center for Research, Inc., Lawrence, KS, USA
Volume
9
Issue
5
fYear
1984
fDate
12/1/1984 12:00:00 AM
Firstpage
317
Lastpage
324
Abstract
Radar backscatter measurements made as part of Project MARSEN in 1979 from the Noordwijk tower off the Dutch coast are used to calculate apparent ripple (capillary and short-gravity wave) spectra by inverting the small-perturbation scattering theory. The measurements were made at 10 and 15 GHz for angles of incidence ranging from
to
; this means that the range of Bragg-resonant spatial wavenumbers covered is from 1.43 to 5.90 cm-1. Results of coincident
- and
-band experiments by the Institute Francais du Petrole (IFP) and
-band experiments by a group of Dutch researchers (TNO) are compared with our results and good general agreement is found. Our initial results show a steeper falloff of the spectra with increasing wavenumber than reported previously, particularly at low windspeeds. When the spectra are modified to account for the difference between previous aircraft and tower measurements [1], the observed spectra agree well with the appropriate part of Pierson\´s wave spectrum as modified by Fung and Lee [2].
to
; this means that the range of Bragg-resonant spatial wavenumbers covered is from 1.43 to 5.90 cm-1. Results of coincident
- and
-band experiments by the Institute Francais du Petrole (IFP) and
-band experiments by a group of Dutch researchers (TNO) are compared with our results and good general agreement is found. Our initial results show a steeper falloff of the spectra with increasing wavenumber than reported previously, particularly at low windspeeds. When the spectra are modified to account for the difference between previous aircraft and tower measurements [1], the observed spectra agree well with the appropriate part of Pierson\´s wave spectrum as modified by Fung and Lee [2].Keywords
Sea surface electromagnetic scattering; Antenna measurements; Backscatter; Frequency measurement; Gravity; Horn antennas; Poles and towers; Radar antennas; Radar measurements; Radar scattering; Sea measurements;
fLanguage
English
Journal_Title
Oceanic Engineering, IEEE Journal of
Publisher
ieee
ISSN
0364-9059
Type
jour
DOI
10.1109/JOE.1984.1145647
Filename
1145647
Link To Document