DocumentCode :
2402186
Title :
A Comparison between Microwave Sea Surface Temperatures and In Situ Measurements and Model Simulations in the Labrador Sea
Author :
Emery, W.J. ; Brandt, P. ; Funk, A. ; Fandre, J. ; Böning, C.
Author_Institution :
Colorado Univ., Boulder, CO
fYear :
0
fDate :
0-0 0
Firstpage :
222
Lastpage :
227
Abstract :
As one of the few places in the ocean where winter cooling and mixing creates conditions where water from the surface can penetrate into the deep ocean the Labrador Sea is an area of interest to people studying climate change in the ocean. Persistent cloud cover over this area makes it impossible to use infrared satellite imagery to relate space/time changes in sea surface temperature (SST) to changes in surface currents and air-sea interaction. Using passive microwave SSTs from the Advanced Microwave Scanning Radiometer (AMSR-E) we plot space/time changes in SST in the Labrador Sea and relate these changes to both simultaneous in situ measurements of temperature and numerical model SSTs. A direct comparison between the microwave SSTs, infrared SSTs and in situ temperatures measured from profiling ocean floats reveals that the microwave SSTs are a good representation of space/time changes in infrared SST and in ocean temperatures down to 10 m below the sea surface. Comparisons between the microwave SSTs and time series of temperatures at depths below 50 m reveal that winter/spring surface cooling makes the SST similar to temperatures at these deeper depths in the convection region of the central Labrador Sea
Keywords :
ocean temperature; oceanographic regions; remote sensing; AMSR-E; Advanced Microwave Scanning Radiometer; Labrador Sea; air-sea interaction; ocean floats; passive microwave sea surface temperatures; surface cooling; surface currents; time series; Clouds; Cooling; Extraterrestrial measurements; Infrared imaging; Microwave measurements; Ocean temperature; Sea measurements; Sea surface; Temperature measurement; Time measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
IEEE MicroRad, 2006
Conference_Location :
SanJuan
Print_ISBN :
0-7803-9417-8
Type :
conf
DOI :
10.1109/MICRAD.2006.1677093
Filename :
1677093
Link To Document :
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