Written in EnglishRead online
|Other titles||Laser glint measurements of sea surface roughness|
|Statement||Joseph A. Shaw|
|Series||NOAA technical memorandum ERL ETL -- 272|
|Contributions||Environmental Technology Laboratory (Environmental Research Laboratories)|
|The Physical Object|
|Pagination||v, 134 p.|
|Number of Pages||134|
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Scanning-laser glint measurements of sea-surface slope statistics Joseph A. Shaw and James H. Churnside A scanning-laser glint meter designed for ﬁeld measurements of sea-surface slope Cited by: Get this from a library.
Laser-glint measurements of sea-surface roughness. [Joseph A Shaw; Environmental Technology Laboratory (Environmental Research Laboratories)]. Laser-glint measurements of sea-surface roughness (SuDoc C /2:ERL ETL) [Joseph A.
Shaw] on *FREE* shipping on qualifying : Joseph A. Shaw. A scanning-laser glint meter designed for field measurements of sea-surface slope statistics is described. A narrow laser beam is scanned in a line, and specular reflections (glints) are counted. Joseph A Shaw has written: 'Laser-glint measurements of sea-surface roughness' -- subject(s): Remote sensing, Optical oceanography, Ocean waves, Oceanography.
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Fractal laser glints from the ocean surface Article (PDF Available) in Journal of the Optical Society of America A 14(5) May with Reads How we measure 'reads'.
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Laser-glint techniques for sensing sea-surface roughness Joseph A. Shaw ; James H. Churnside Proc. SPIEAdvances in Laser Remote Sensing for Terrestrial and Oceanographic Applications, pg.
Measurements of biologically effective UV doses, total ozone abundances, and cloud effects with multichannel, moderate bandwidth filter instruments. Appl. Opt., 35 (33), –Cited by: Cox, C., Munk, W.: Measurements of the roughness of the sea surface from photographs of the sun glitter.
Optical Soc. 44 (11), – () ADS CrossRef Google ScholarCited by: 1. James H. Churnside. Physicist at National Oceanic and Atmospheric Administration.
SPIE Involvement: Author Publications (26) SPIE Journal Paper | 23 August Airborne lidar detection. Infrared laser-glint sensor for measuring fractal sea-surface roughness p. Optical coherent model of atmosphere-ocean boundary layer p.
Spatial coherence modulus retrieval using a method based. Search the leading research in optics and photonics applied research from SPIE journals, conference proceedings and presentations, and eBooks. The color of sunlight reflected from the ocean to orbiting visible radiometers hasprovided a great deal of information about the global ocean, after suitable corrections aremade for atmospheric effects.
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