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High-sensitivity radiometry of air-water interface fast temperature and heat flux variances
Fast variances of temperature profile and heat flux through the water-air interface caused by atmospheric turbulence in weak wind conditions have been determined on the basis of measurements of radio brightness evolution of water at the frequencies of 60 and 131 GHz. Two components of the heat flux...
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Published in: | IEEE transactions on geoscience and remote sensing 2003-12, Vol.41 (12), p.2760-2766 |
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container_title | IEEE transactions on geoscience and remote sensing |
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creator | Gaikovich, K.P. |
description | Fast variances of temperature profile and heat flux through the water-air interface caused by atmospheric turbulence in weak wind conditions have been determined on the basis of measurements of radio brightness evolution of water at the frequencies of 60 and 131 GHz. Two components of the heat flux related to evaporation and to thermal conductivity have been obtained, which enabled us to determine evaporation rate and viscous sublayer depth variances. Statistical parameters of water surface temperature variations have been calculated. |
doi_str_mv | 10.1109/TGRS.2003.815668 |
format | article |
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Two components of the heat flux related to evaporation and to thermal conductivity have been obtained, which enabled us to determine evaporation rate and viscous sublayer depth variances. Statistical parameters of water surface temperature variations have been calculated.</description><identifier>ISSN: 0196-2892</identifier><identifier>EISSN: 1558-0644</identifier><identifier>DOI: 10.1109/TGRS.2003.815668</identifier><identifier>CODEN: IGRSD2</identifier><language>eng</language><publisher>New York: IEEE</publisher><subject>Atmospheric measurements ; Brightness ; Evaporation ; Evolution ; Frequency measurement ; Heat flux ; Heat transfer ; Integral equations ; Mathematical analysis ; Ocean temperature ; Radiometry ; Temperature measurement ; Temperature sensors ; Thermal conductivity ; Viscous sublayers ; Water heating</subject><ispartof>IEEE transactions on geoscience and remote sensing, 2003-12, Vol.41 (12), p.2760-2766</ispartof><rights>Copyright The Institute of Electrical and Electronics Engineers, Inc. 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Two components of the heat flux related to evaporation and to thermal conductivity have been obtained, which enabled us to determine evaporation rate and viscous sublayer depth variances. Statistical parameters of water surface temperature variations have been calculated.</description><subject>Atmospheric measurements</subject><subject>Brightness</subject><subject>Evaporation</subject><subject>Evolution</subject><subject>Frequency measurement</subject><subject>Heat flux</subject><subject>Heat transfer</subject><subject>Integral equations</subject><subject>Mathematical analysis</subject><subject>Ocean temperature</subject><subject>Radiometry</subject><subject>Temperature measurement</subject><subject>Temperature sensors</subject><subject>Thermal conductivity</subject><subject>Viscous sublayers</subject><subject>Water heating</subject><issn>0196-2892</issn><issn>1558-0644</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2003</creationdate><recordtype>article</recordtype><recordid>eNqN0k2LFDEQBuAgCo6rd8FL8KBeeqzKd46y6K6wIOh68tBk0xU3y0z3mKRX59_b4wiCh9VL6vJUUSlexp4irBHBv748-_hpLQDk2qE2xt1jK9TadWCUus9WgN50wnnxkD2q9QYAlUa7Yl_O89frrtJYc8u3ue15CUOettTKnk-Jh1y676FR4Xlc3hQi8RRq4422OyqhzYV4GAd-TaHxtJl_8NtQchgj1cfsQQqbSk9-1xP2-d3by9Pz7uLD2fvTNxddlN63TkCyOGgFkSQkL2AYQF_JwcegriRq5xxohTEMgETSuiEZS5owLoRSlCfs5XHurkzfZqqt3-YaabMJI01z7T2gsQYBF_niTrkcSApQ4j-gFNpZ9U-IDpRDlAt8dTe0FoQ13uuFPv-L3kxzGZcT9s4p4Z3_9RU4olimWgulflfyNpR9j9AfEtEfEtEfEtEfE7G0PDu2ZCL6w4UBsyz4Ez9VsaA</recordid><startdate>20031201</startdate><enddate>20031201</enddate><creator>Gaikovich, K.P.</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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source | IEEE Electronic Library (IEL) Journals |
subjects | Atmospheric measurements Brightness Evaporation Evolution Frequency measurement Heat flux Heat transfer Integral equations Mathematical analysis Ocean temperature Radiometry Temperature measurement Temperature sensors Thermal conductivity Viscous sublayers Water heating |
title | High-sensitivity radiometry of air-water interface fast temperature and heat flux variances |
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