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COAPS Library Scatterometry Bibliography:
SEASAT Scatterometer



  • Allan, T.D.; Guymer, T.H., 1984: Seasat measurements of wind and waves on selected passes over JASIN, International Journal of Remote Sensing, vol.5, no.2, p. 379- 408

  • Anderson, D.; Hollingsworth, A.; Uppala, S.; Woiceshyn, P., 1991: A study of the use of scatterometer data in the European Centre for Medium-Range Weather Forecasts Operational Analysis-Forecast Model. 1. Quality Assurance and Validation, Journal of Geophysical Research, vol.96, no.C2, p. 2619-34

  • Anderson, D.; Hollingsworth, A.; Uppala, S.; Woiceshyn, P., 1991: A study of the use of scatterometer data in the European Centre for Medium-Range Weather Forecasts operational analysis-forecast model. 2. Data impact, Journal of Geophysical Research, vol.96, no.C2, p. 2635-47

  • Atlas, R.; Busalacchi, A.J.; Ghil, M.; Bloom, S.; Kalnay, E., 1987: Global surface wind and flux fields from model assimilation of Seasat data, Journal of Geophysical Research, vol.92, no.C6, p. 6477-87

  • Baker, W.E.; Atlas, R.; Kalnay, E.; Halem, M.; Woiceshyn, P.M.; Peteherych, S.; Edelmann, D., 1984: Large-scale analysis and forecast experiments with wind data from the Seasat A scatterometer, Journal of Geophysical Research, vol.89, no.D3, p. 4927-36

  • Barrick, D.E.; Swift, C.T., 1980: The Seasat microwave instruments in historical perspective, IEEE Journal of Oceanic Engineering, vol.OE-5, no.2, p. 74-9

  • Bauer, E; Hasselmann, S; Hasselmann, K; Graber, Hc, 1992: Validation And Assimilation Of Seasat Altimeter Wave Heights Using The Wam Wave Model , Journal Of Geophysical Research-Oceans, Vol. 97 No. C8, p. 12671-12682

  • Birrer, I.J.; Bracalente, E.M.; Dome, G.J.; Sweet, J.; Berthold, G., 1982: sigma /sup 0/ signature of the Amazon rain forest obtained from the Seasat scatterometer, IEEE Transactions on Geoscience and Remote Sensing, vol.GE- 20, no.1, p. 11-17

  • Boutin, J.; Etcheto, J., 1990: Seasat scatterometer versus scanning multichannel microwave radiometer wind speeds: a comparison on a global scale, Journal of Geophysical Research, vol.95, no.C12, p. 22275-88

  • Britt, C.L., Jr.; Schroeder, L.C., 1984: SASS I model function evaluation and upgrade, IGARSS '84. Remote Sensing - From Research Towards Operational Use (ESA SP-215), p. 2 vol. (xvi+vi+880), 623-9 vol.2

  • Brooks, S.R., 1990: Microwave sensors, IEE Colloquium on 'Earth Resource Sensing and the Data Relay Satellite' (Digest No.53), p. 60, 4/1-5

  • Brown, L.E.; Christensen, J.A.; LeBorgne, R.H.; Radovich, D.; Tammaru, I., 1977: A high efficiency, 100 watt space TWT for the Seasat A scatterometer, Proceedings of SOUTHEASTCON '77 on Imaginative Engineering Thru Education and Experience, p. xx+664, 488-91

  • Brown, R.A., 1983: On a satellite scatterometer as an anemometer, Journal of Geophysical Research, vol.88, no.C3, p. 1663-73

  • Brown, R.A.; Cardone, V.J.; Guymer, T.; Hawkins, J.; Overland, J.E.; Pierson, W.J.; Peteherych, S.; Wilkerson, J.C.; Woiceshyn, P.M.; Wurtele, M., 1982: Surface wind analyses for SEASAT, Journal of Geophysical Research, vol.87, no.C5, p. 3355-64

  • Brown, R.A.; Roeder, R.S., 1998: Evolution of high spatial resolution spaceborne scatterometers , Proceedings. IEEE Southeastcon '98. `Engineering for a New Era' (Cat. No.98CH36170), p. xiv+416, 260-3

  • Brucks, J.T.; Linwood Jones, W.; Leming, T.D., 1980: Comparison of surface wind stress measurements: airborne radar scatterometer versus sonic anemometer, Journal of Geophysical Research, vol.85, no.C9, p. 4967-76

  • Carsey, F.D.; Pihos, G., 1989: Beaufort-Chukchi seas summer and fall ice margin data from Seasat: conditions with similarities to the Labrador Sea, IEEE Transactions on Geoscience and Remote Sensing, vol.27, no.5, p. 541-51

  • Chelton, D.B.; Freilich, M.H.; Johnson, J.R., 1989: Evaluation of unambiguous vector winds from the Seasat scatterometer, Journal of Atmospheric and Oceanic Technology, vol.6, no.6, p. 1024-39

  • Chelton, D.B.; Mestas-Nunez, A.M.; Freilich, M.H., 1990: Global wind stress and Sverdrup circulation from the Seasat scatterometer, Journal of Physical Oceanography, vol.20, no.8, p. 1175-205

  • Daum, D.R.; Long, D.G.; Davis, W.B., 1994:Reconstructing enhanced resolution images from spaceborne microwave sensors , IGARSS '94. International Geoscience and Remote Sensing Symposium. Surface and Atmospheric Remote Sensing: Technologies, Data Analysis and Interpretation (Cat. No.94CH3378-7), p. 4 vol. lxviii+2543, 2231-3 vol.4

  • Davidson, K.L.; Schacher, G.E.; Fairall, C.W.; Jarrell, J.D., 1981: Observational results pertaining to scatterometer interpretation, Oceanography from Space. Proceedings of the COSPAR/SCOR/IUCRM Symposium, p. xix+978, 597-605

  • Davison, J.; Harrison, D.E., 1990: Comparison of Seasat scatterometer winds with tropical Pacific observations, Journal of Geophysical Research, vol.95, no.C3, p. 3403-10

  • Delnore, V.E., 1978: Regional integration, validation, and application of SEASAT- A satellite scatterometer (SASS) data, Oceans 78. The Ocean Challenge, p. xxiii+743, 397

  • Dome, G.J.; Moore, R.K.; Birrer, I.J.; Van Sickle, K., 1980: Use of a satellite multifrequency radiometer to determine attenuation suffered by a satellite radar, Oceanography from Space. Proceedings of the COSPAR/SCOR/IUCRM Symposium, p. xix+978, 763-70

  • Dome, G.J.; Moore, R.K.; Birrer, I.J.; Van Sickle, K., 1980: Use of a satellite multi-frequency radiometer to determine attenuation suffered by a satellite radar, AGARD Conference Proceedings No.284. Propagation Effects in Space/Earth Paths, p. vii+530, 20/1-12

  • Duffy, D.G.; Atlas, R., 1986: The impact of Seasat-A scatterometer data on the numerical prediction of the Queen Elizabeth II storm, J. Geophys. Res. (USA), Journal of Geophysical Research, vol.91, no.C2, p. 2241-8

  • Duffy, D.G.; Atlas, R., 1984: Surface wind and wave height prediction for the QE II storm using SEASAT scatterometer data, OCEANS '84 Conference and Exposition. Conference Record. 'Industry, Government, Education - Designs for the Future' (Cat. No. 84CH2066-9), p. 2 vol. 1050, 183-8 vol.1

  • Duffy, D.; Atlas, R.; Rosmond, T.; Barker, E.; Rosenberg, R., 1984: The impact of Seasat scatterometer winds on the Navy's operational model, Journal of Geophysical Research, vol.89, no.D5, p. 7238-44

  • Dunne, J.A., 1978: The experimental oceanographic satellite Seasat-A, Bound.-Layer Meteorol. (Netherlands), Boundary-Layer Meteorology, vol.13, no.1-4, p. 393-404

  • Early, D.S.; Long, D.G.; Drinkwater, M.R., 1994: Comparison of enhanced resolution images of Greenland from the ERS-1 and Seasat scatterometers , IGARSS '94. International Geoscience and Remote Sensing Symposium. Surface and Atmospheric Remote Sensing: Technologies, Data Analysis and Interpretation (Cat. No.94CH3378-7), p. 4 vol. lxviii+2543, 2382-4 vol.4

  • Emmett, C.F.; Jensen, R.R.; Hardin, P.J.; Long, D.G., 1997: Detecting change in equatorial regions of Brazil using medium resolution satellite imagery , IGARSS'97. 1997 International Geoscience and Remote Sensing Symposium. Remote Sensing - A Scientific Vision for Sustainable Development (Cat. No.97CH36042), p. 4 vol. lxxi+2105, 1557-9 vol.4

  • Etcheto, J.; Merlivat, L., 1988: Satellite determination of the carbon dioxide exchange coefficient at the ocean-atmosphere interface: a first step, Journal of Geophysical Research, vol.93, no.C12, p. 15669- 78, 15791-2

  • Fedor, L.S.; Grantham, W.L.; Bracalente, E.M.; Swift, C.T.; Cardone, V., 1979: Intercomparison of the SEASAT, SASS, SMMR and altimeter derived winds, Oceans '79, p. xxiv+789, 660

  • Gerling, T.W., 1985: Remote sensing of the ocean-surface wind field with a scatterometer and a synthetic aperture radar, Johns Hopkins APL Technical Digest, vol.6, no.4, p. 320-9

  • Glazman, R.E., 1987: The effects of wind-wave coupling on scatterometer wind measurement accuracy, IGARSS '87. Remote Sensing: Understanding the Earth as a System (Cat. No.87CH2434-9), p. 2 vol. xxix+1630, 769-71 vol.2

  • Glazman, R.E.; Pihos, G.G.; Ip, J., 1988: Scatterometer wind speed bias induced by the large-scale component of the wave field, Journal of Geophysical Research, vol.93, no.C2, p. 1317-28

  • Glom, R.G., 1988: Effects of variation in look angle and wavelength in radar images of volcanic and aeolian terrains, or now you see it, now you don't, International Journal of Remote Sensing, vol.9, no.5, p. 945- 65

  • Gohil, B.S.; Pandey, P.C., 1985: An algorithm for retrieval of oceanic wind vectors from the simulated SASS normalized radar cross-section measurements, Journal of Geophysical Research, vol.90, no.C4, p. 7307-11

  • Graf, J.E.; Naderi, F.; Wu-Yang Tsai, 1995: Overview of NASA scatterometers projects , 1995 International Geoscience and Remote Sensing Symposium, IGARSS '95. Quantitative Remote Sensing for Science and Applications (Cat. No.95CH35770), p. 3 vol. lxvi+2331, 1564- 6 vol.2

  • Grantham, W.L.; Bracalente, E.M.; Jones, W.L., 1976: The SEASAT-A satellite scatterometer, Oceans 1976, p. xxii+716, 10D/1-9

  • Grantham, W.L.; Bracalente, E.M.; Jones, W.L.; Johnson, J.W., 1977: The SeaSat-A satellite scatterometer, IEEE Journal of Oceanic Engineering, vol.OE-2, no.2, p. 200- 6

  • Guymer, T.H., 1983: Validation and applications of SASS over JASIN, Satellite microwave remote sensing, p. 526, 87-104

  • Guymer, T.H., 1983: A review of Seasat scatterometer data, Philosophical Transactions of the Royal Society of London A (Mathematical and Physical Sciences), vol.309, no.1508, p. 401-16

  • Guymer, T.H., 1982: The Seasat altimeter and scatterometer, Colloquium on 'Measurement of Wave Height and Direction', p. 40, 6/1-2

  • Guymer, T.H.; Businger, J.A.; Jones, W.L.; Stewart, R.H., 1981: Anomalous wind estimates from the Seasat scatterometer, Nature, vol.294, no.5843, p. 735-7

  • Guymer, T.H.; Zecchetto, S., 1993: Applications of scatterometer winds in coastal areas , International Journal of Remote Sensing, vol.14, no.9, p. 1787-812

  • Guymer, T.H.; Zecchetto, S., 1991: Winds derived from Seasat's microwave suite, Int. J. Remote Sens. (UK), International Journal of Remote Sensing, vol.12, no.8, p. 1699-712

  • Halberstam, I., 1981: Verification studies of Seasat-A satellite scatterometer (SASS) measurements, Journal of Geophysical Research, vol.86, no.C7, p. 6599-606

  • Halberstam, I., 1980: Some considerations in the evaluation of Seasat-A scatterometer (SASS) measurements, Journal of Physical Oceanography, vol.10, no.4, p. 623-32

  • Halpern, D., 1989: Seasat A satellite scatterometer measurements of equatorial surface winds, Journal of Geophysical Research, vol.94, no.C4, p. 4829-33

  • Hardin, P.J.; Long, D.G.; Remund, Q.P.; Daum, D.R., 1996: A comparison of reconstructed Ku-band scatterometry, C-band scatterometry, and SSM/I imagery for tropical vegetation classification , IGARSS '96. 1996 International Geoscience and Remote Sensing Symposium. Remote Sensing for a Sustainable Future (Cat. No.96CH35875), p. 4 vol. lxxi+2383, 848-50 vol.2

  • Harlan, J., Jr.; O'Brien, J.J., 1986: Assimilation of scatterometer winds into surface pressure fields using a variational method, Journal of Geophysical Research, vol.91, no.D7, p. 7816-36
    [Center for Ocean-Atmospheric Prediction Studies Publication]

  • Hawkins, J.D.; Black, P.G., 1983: SEASAT scatterometer detection of gale force winds near tropical cyclones, Journal of Geophysical Research, vol.88, no.C3, p. 1674-82

  • Held, D.; Werner, C.; Wall, S., 1983: The absolute amplitude calibration of the Seasat synthetic aperture radar: An intercomparison with other Lth-band radar systems, Digest. 1983 International Geoscience and Remote Sensing Symposium (IGARSS '83), p. 2. vol (xix+1072), TA.5.3/1-5 vol.1

  • Hoffman, R.N., 1984: SASS wind ambiguity removal by direct minimization. II. Use of smoothness and dynamical constraints, Monthly Weather Review, vol.112, no.9, p. 1829-52

  • Hsu, C.S.; Wurtele, M.G.; Cunningham, G.F.; Woiceshyn, P.M., 1997: Construction of marine surface pressure fields from scatterometer winds alone , Journal of Applied Meteorology, vol.36, no.9, p. 1249-61

  • Ingleby, N.B.; Bromley, R.A., 1991: A diagnostic study of the impact of SEASAT scatterometer winds on numerical weather prediction, Monthly Weather Review, vol.119, no.1, p. 84-103

  • Janssen, P.A.E.M.; Lionello, P.; Reistad, M.; Hollingsworth, A., 1989: Hindcasts and data assimilation studies with the WAM model during the Seasat period, Journal of Geophysical Research, vol.94, no.C1, p. 973-93

  • Johnson, J.W.; Williams, L.A., Jr.; Bracalente, E.M.; Beck, F.B.; Grantham, W.L., 1980: Seasat-A satellite scatterometer instrument evaluation, IEEE Journal of Oceanic Engineering, vol.OE-5, no.2, p. 138- 44

  • Jones, W.L.; Dome, G.J.; Pierson, W.J.; Wentz, F.J., 1979: Scatterometer ocean surface wind results from the Gulf of Alaska SeaSat Experiment, Oceans '79, p. xxiv+789, 658

  • Jones, W.L.; Schroeder, L.C.; Boggs, D.H.; Bracalente, E.M.; Brown, R.A.; Dome, G.J.; Pierson, W.J.; Wentz, F.J., 1982: The SEASAT-A satellite scatterometer: the geophysical evaluation of remotely sensed wind vectors over the ocean, Journal of Geophysical Research, vol.87, no.C5, p. 3297-317

  • Jones, W.L.; Schroeder, L.C.; Mitchell, J.L., 1977: Aircraft measurements of the microwave scattering signature of the ocean, IEEE Journal of Oceanic Engineering, vol.OE-2, no.1, p. 52- 61

  • Jun-Dong Park; Alhumaidi, S.; Jones, W.L.; Ferguson, S., 1997: A neural network algorithm for sea ice edge classification, Proc. SPIE - Int. Soc. Opt. Eng. (USA), Proceedings of the SPIE - The International Society for Optical Engineering, vol.3077, p. 561-70

  • Kalmykov, A.I.; Sinitsyn, Yu.A.; Sytnick, O.V.; Tsymbal, V.N., 1989: Information content of radar remote sensing systems of Earth from space, Izvestiya Vysshikh Uchebnykh Zavedenii, Radiofizika, vol.32, no.9, p. 1055-62

  • Kalnay, E.; Atlas, R., 1984: GLAS global analysis of ocean surface wind and wind stress using Seasat scatterometer winds, OCEANS '84 Conference and Exposition. Conference Record. 'Industry, Government, Education - Designs for the Future' (Cat. No. 84CH2066-9), p. 2 vol. 1050, 189-94 vol.1

  • Keller, M.R.; Keller, W.C.; Plant, W.J., 1992: A wave tank study of the dependence of X band cross sections on wind speed and water temperature, Journal of Geophysical Research, vol.97, no.C4, p. 5771-92

  • Kennett, R.G.; Li, F.K., 1989: Seasat over-land scatterometer data. I. Global overview of the Ku-band backscatterer coefficients, IEEE Transactions on Geoscience and Remote Sensing, vol.27, no.5, p. 592-605

  • Kennett, R.G.; Li, F.K., 1987: Selection of extended area land target sites for the calibration of spaceborne scatterometers, IGARSS '87. Remote Sensing: Understanding the Earth as a System (Cat. No.87CH2434-9), p. 2 vol. xxix+1630, 179-84 vol.1

  • Kumar, R.; Sarkar, A., 1986: Quasi-specular sea scatter with modified reflection coefficient, Proceedings of the Indian Academy of Sciences, Earth and Planetary Sciences, vol.95, no.1, p. 75-82

  • Lalbeharry, R.; Khandekar, M.L.; Peteherych, S., 1990: Wind specification based on Seasat A satellite scatterometer and conventional winds for driving an ocean wave model, Journal of Geophysical Research, vol.95, no.C1, p. 761-73

  • Ledroit, M; Remy, F; Minster, JF, 1993: Observations Of The Antarctic Ice-Sheet With The Seasat Scatterometer - Relation To Katabatic-Wind Intensity And Direction , Journal Of Glaciology, Vol. 39 No. 132, p. 385-396

  • Lenzen, AJ; Johnson, DR; Atlas, R, 1993: Analysis Of The Impact Of Seasat Scatterometer Data And Horizontal Resolution On Gla Model Simulations Of The Qe-Ii Storm , Monthly Weather Review, Vol. 121 No. 2, p. 499-521

  • Levy, G, 1994: Southern-Hemisphere Low-Level Wind Circulation Statistics From The Seasat Scatterometer , Annales Geophysicae-Atmospheres Hydrospheres And Space Sciences, Vol. 12 No. 1, p. 65-79

  • Levy, G.; Brown, R.A., 1986: A simple, objective analysis scheme for scatterometer data, Journal of Geophysical Research, vol.91, no.C4, p. 5153-8

  • Levy, G.; Tiu, F.S., 1990: Thermal advection and stratification effects on surface winds and the low level meridional mass transport, Journal of Geophysical Research, vol.95, no.C11, p. 20247-57

  • Linwood Jones, W.; Wentz, F.J.; Schroeder, L.C., 1978: Algorithm for inferring wind stress from SEASAT-A, Journal of Spacecraft and Rockets, vol.15, no.6, p. 368-74

  • Liu, W.T., 1984: The effects of the variations in sea surface temperature and atmospheric stability in the estimation of average wind speed by SEASAT-SASS, Journal of Physical Oceanography, vol.14, no.2, p. 392-401

  • Liu, W.T., 1983: Error trends in SASS winds as functions of atmospheric stability and sea surface temperature, Digest. 1983 International Geoscience and Remote Sensing Symposium (IGARSS '83), p. 2. vol (xix+1072), FA.6.1/1-4 vol.2

  • Liu, W.; Large, W.G., 1981: Determination of surface stress by Seasat-SASS: a case study with JASIN data, Journal of Physical Oceanography, vol.11, no.12, p. 1603-11

  • Long, D.G., 1993: An enhanced resolution spaceborne scatterometer , ITC/USA/ '93. International Telemetering Conference. Vol.29, p. 828, 555-62

  • Long, D.G., 1993: Wind-Field Model-Based Estimation Of Seasat Scatterometer Winds , Journal Of Geophysical Research-Oceans, Vol. 98 No. C8, p. 14651-14668

  • Long, DG; Hardin, PJ, 1994: Vegetation Studies Of The Amazon Basin Using Enhanced Resolution Seasat Scatterometer Data , Ieee Transactions On Geoscience And Remote Sensing, Vol. 32 No. 2, p. 449-460

  • Long, D.G.; Hardin, P.J.; Whiting, P.T., 1993: Resolution enhancement of spaceborne scatterometer data, IEEE Transactions on Geoscience and Remote Sensing, vol.31, no.3, p. 700-15

  • Long, DG; Skouson, GB, 1996: Calibration of spaceborne scatterometers using tropical rain forests, IEEE Transactions On Geoscience And Remote Sensing,Vol. 34 No. 2, p. 413-424

  • McMurdie, L.A.; Levy, G.; Katsaros, K.B., 1987: On the relationship between scatterometer-derived convergences and atmospheric moisture, Monthly Weather Review, vol.115, no.7, p. 1281-94

  • Mestasnunez, AM; Chelton, DB; Deszoeke, RA, 1992: Evidence Of Time-Dependent Sverdrup Circulation In The South- Pacific From The Seasat Scatterometer And Altimeter, Journal Of Physical Oceanography, Vol. 22 No. 8, p. 934-943

  • Mestasnunez, AM; Chelton, DB; Freilich, MH; Richman, JG, 1994: An Evaluation Of ECMWF-Based Climatological Wind Stress-Fields, Journal Of Physical Oceanography, Vol. 24 No. 7, p. 1532-1549

  • Mognard, N.M.; Campbell, W.J., 1984: Comparison of sea surface wind speed fields by Seasat radar altimeter, scatterometer, and scanning multichannel microwave radiometer, with an emphasis on the Southern Ocean, IGARSS '84. Remote Sensing - From Research Towards Operational Use (ESA SP-215), p. 2 vol. (xvi+vi+880), 403-9 vol.1

  • Moore, R.K.; Birrer, I.J.; Bracalente, E.M.; Dome, G.J.; Wentz, F.J., 1982: Evaluation of atmospheric attenuation from SMMR brightness temperature for the SEASAT Satellite Scatterometer, Journal of Geophysical Research, vol.87, no.C5, p. 3337-54

  • Moore, R.K.; Fung, A.K., 1979: Radar determination of winds at sea, Proceedings of the IEEE, vol.67, no.11, p. 1504-21

  • Offiler, D., 1984: A comparison of Seasat scatterometer-derived winds with JASIN surface winds, International Journal of Remote Sensing, vol.5, no.2, p. 365- 78

  • Ormsby, J.P.; Blanchard, B.J.; Blanchard, A.J., 1985: Detection of lowland flooding using active microwave systems, Photogrammetric Engineering and Remote Sensing, vol.51, no.3, p. 317-28

  • Pandey, P.C., 1986: Retrieval and global comparison of oceanic winds from Seasat radiometer, scatterometer and altimeter, IGARSS '86. Remote Sensing: Today's Solutions for Tomorrow's Information Needs (ESA SP-254) (IEEE Cat. No.86CH2268-1), p. 3 vol. xxiii+1695, 1677-81 vol.3

  • Perigaud, C.; Delecluse, P.; Minster, J.F., 1989: Wind stress over the Arabian Sea from ship reports and Seasat scatterometer data, Monthly Weather Review, vol.117, no.11, p. 2348-64

  • Peterherych, S.; Davies, A.F.; Muttitt, G., 1986: Application of the Seasat scatterometer to observations of wind speed and direction and Arctic ice/water boundaries, IGARSS '86. Remote Sensing: Today's Solutions for Tomorrow's Information Needs (ESA SP-254) (IEEE Cat. No.86CH2268-1), p. 3 vol. xxiii+1695, 585-5 vol.1

  • Peteherych, S.; Woiceshyn, P.M.; Appleby, W.; Chu, L.; Spagnol, J.; Overland, J.E., 1981: High resolution marine meteorological analysis utilizing SEASAT data, Oceanography from Space. Proceedings of the COSPAR/SCOR/IUCRM Symposium, p. xix+978, 581-6

  • Pierson, W.J., Jr., 1989: Probabilities and statistics for backscatter estimates obtained by a scatterometer, Journal of Geophysical Research, vol.94, no.C7, p. 9743-59

  • Pierson, W.J., Jr., 1983: Highlights of the SEASAT-SASS program: a review, Satellite microwave remote sensing, p. 526, 69-86

  • Pierson, W.J., 1981: Winds over the ocean as measured by the scatterometer on SEASAT, Oceanography from Space. Proceedings of the COSPAR/SCOR/IUCRM Symposium, p. xix+978, 563-71

  • Pierson, W.J., Jr.; Sylvester, W.B.; Salfi, R.E., 1983: Synoptic scale wind field properties from the Seasat SASS, Proceedings OCEANS '83. 'Effective Use of the Sea: An Update', p. 3 vol. 1192, 67-74 vol.1

  • Polavarapu, Sm, 1995: Divergent Wind Analyses In The Oceanic Boundary-Layer , Tellus Series A-Dynamic Meteorology And Oceanography, Vol. 47 No. 2, p. 221-239

  • Price, J.C., 1976: The nature of multiple solutions for surface wind speed over the oceans from scatterometer measurements, Remote Sensing of Environment, vol.5, no.1, p. 47-54

  • Remy, F; Femenias, P; Ledroit, M; Minster, Jf, 1995: Empirical Microwave Backscattering Over Antarctica - Application To Radar Altimetry, Journal Of Electromagnetic Waves And Applications, Vol. 9 No. 3, p. 463-474

  • Remy, F; Ledroit, M; Minster, Jf, 1992: Katabatic Wind Intensity And Direction Over Antarctica Derived From Scatterometer Data, Geophysical Research Letters, Vol. 19 No. 10, p. 1021

  • Schroeder, L.C.; Grantham, W.L.; Bracalente, E.M.; Britt, C.L.; Shanmugam, K.S.; Wentz, F.J.; Wylie, D.P.; Hinton, B.B., 1985: Removal of ambiguous wind directions for a Ku-band wind scatterometer using three different azimuth angles, IEEE Transactions on Geoscience and Remote Sensing, vol.GE- 23, no.2, p. 91-100

  • Schroeder, L.C.; Schaffner, P.R.; Mitchell, J.L.; Jones, W.L., 1985: AAFE RADSCAT 13.9-GHz measurements and analysis: wind-speed signature of the ocean, IEEE Journal of Oceanic Engineering, vol.OE-10, no.4, p. 346- 57

  • Stoffelen, A.C.M.; Cats, G.J., 1991: The impact of Seasat-A scatterometer data on high-resolution analyses and forecasts: the development of the QE II Storm, Monthly Weather Review, vol.119, no.12, p. 2794-802

  • Swift, C.T., 1997: SeaSat Scatterometer observations of sea ice , IGARSS'97. 1997 International Geoscience and Remote Sensing Symposium. Remote Sensing - A Scientific Vision for Sustainable Development (Cat. No.97CH36042), p. 4 vol. lxxi+2105, 1297-9 vol.3

  • Thomas, I.L.; Minnett, P.J., 1986: An introductory review of the measurement of ocean surface wind vectors with a satellite radar scatterometer, International Journal of Remote Sensing, vol.7, no.3, p. 309- 23

  • Thompson, T.W.; Weissman, D.E.; Gonzalez, F.I., 1983: L band radar backscatter dependence upon surface wind stress: a summary of new SEASAT-1 and aircraft observations, Journal of Geophysical Research, vol.88, no.C3, p. 1727-35

  • Tsann-Wang Yu, 1987: A technique for deducing wind direction from satellite microwave measurements of wind speed, Monthly Weather Review, vol.115, no.9, p. 1929-39

  • Tsann-Wang Yu; McPherson, R.D., , 1984: Global data assimilation experiments with scatterometer winds from SEASAT-A, Monthly Weather Review, vol.112, no.2, p. 368-76

  • Weissman, D.E., 1993: The application of a Ku-band scatterometer model function for friction velocity to SEASAT measurements and to airborne scatterometer measurements , OCEANS '93. Engineering in Harmony with Ocean Proceedings (Cat. No.93CH3341-5), p. 3 vol. (xxiii+491+509+502), I7-12 vol.1

  • Weissman, D.E.; Freilich, M.H., 1986: Seasat scatterometer studies of the role of the wave height and environmental variables on the wind algorithm, OCEANS 86 Conference Record. Science-Engineering-Adventure (Cat. No.86CH2363-0), p. 5 vol.1472, 310-14 vol.1

  • Wentz, F.J.; Cardone, V.J.; Fedor, L.S., 1982: Intercomparison of wind speeds inferred by the SASS, altimeter, and SMMR, Journal of Geophysical Research, vol.87, no.C5, p. 3378-84

  • Wentz, F.J.; Mattox, L.A.; Peteherych, S., 1986: New algorithms for microwave measurements of ocean winds: applications to Seasat and the special sensor microwave imager, J. Geophys. Res. (USA), Journal of Geophysical Research, vol.91, no.C2, p. 2289-307

  • Wentz, F.J.; Peteherych, S.; Thomas, L.A., 1984: A model function for ocean radar cross sections at 14.6 GHz, Journal of Geophysical Research, vol.89, no.C3, p. 3689-704

  • Witter, D.L.; Chelton, D.B., 1991: A Geosat altimeter wind speed algorithm and a method for altimeter wind speed algorithm development, Journal of Geophysical Research, vol.95, no.C5, p. 8853-60

  • Wu, J, 1992: Near-Nadir Microwave Specular Returns From The Sea-Surface - Altimeter Algorithms For Wind And Wind Stress, Journal Of Atmospheric And Oceanic Technology, Vol. 9, No. 5,

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