HR: 0800h
AN: SA21A-0332 [Abstracts]
TI: The Effect of Diurnal Variations on Decadal Trends in PMC Brightness
AU: * Shettle, E P
EM: shettle@nrl.navy.mil
AF: Naval Research Laboratory, Code 7227
Remote Sensing Division, Washington, DC 20375-5351
United States
AU: DeLand, M T
EM: matthew_deland@ssaihq.com
AF: SSAI, 10210 Greenbelt Rd.
Suite 400, Lanham, MD 20706
United States
AU: Thomas, G E
EM: Gary.Thomas@lasp.colorado.edu
AF: LASP, Campus Box 392
University of Colorado, Boulder, CO 80309-0392
United States
AU: Olivero, J J
EM: oliveroj@erau.edu
AF: Embry-Riddle Aeronautical University, Dept. of Physical Sciences, Daytona Beach, FL 32114
AU: Stevens, M H
EM: stevens@uap2.nrl.navy.mil
AF: Naval Research Laboratory, Code 7227
Remote Sensing Division, Washington, DC 20375-5351
United States
AB:
The Solar Backscatter Ultraviolet (SBUV and SBUV/2) instruments on the NOAA polar-orbiting meteorological satellites have
shown that there has been an increase in the average brightness of Polar Mesospheric Clouds (PMC) since 1978 [Thomas et al.
2003]. However, the equator-crossing times of most different satellite platforms have drifted over the life of the
satellite, resulting in corresponding variations in the local time of the PMC observations. Measurements from the WINDII
instrument on UARS [Shettle et al. 2002], as well several lidar groups have reported diurnal variations in the PMC
brightness. This raises the possibility that systematic changes in the local time of the PMC measurements SBUV over the past
25 years have contributed to the reported brightness trends. Each SBUV instrument provides PMC observations at different
local times on the ascending and descending nodes of the satellite, and with two or three different instruments in orbit over
most of this period there are up to six different local times of measurement on a given day (for each latitude band). We
can use these multiple daily measurements to separate the effects of any systematic changes in the local time of the
measurements from any long-term trends. Preliminary results indicate that there is still a multi-decadal increase in the
average brightness of the PMCs independent of any systematic changes in the local time of the measurements.
DE: 1610 Atmosphere (0315, 0325)
DE: 1640 Remote sensing
DE: 0305 Aerosols and particles (0345, 4801)
DE: 0340 Middle atmosphere--composition and chemistry
DE: 0360 Transmission and scattering of radiation
SC: SPA-Aeronomy [SA]
MN: 2004 AGU Fall Meeting