HR: 17:20h
AN: A54A-05 [Abstracts]
TI: Evaluation of 20-min and Annual Radiation Budget Components and Cloudiness in a Mountainous Valley
AU: * Malek, E
EM: emalek@mendel.usu.edu
AF: Utah State University, 4820 Old Mail Hill, Logan, UT 84322-4820, United States
AB:
Logan, Utah (USA) is among cities located in the mountainous valley in the western portion of Rocky Mountains in
North America. It is the county seat of Cache Valley, a metropolitan area with a population of about 100,000. The
valley had the polluted air in the USA during January 2004. To evaluate the daily and annual radiation budget and
cloudiness in this mountainous valley, we set up a radiation station in the middle of the valley to measure the 20-
min radiation budget components namely: incoming (Rso) and outgoing (Rso) solar or shortwave radiation,
using to CM21 Kipp and Zonen (one inverted) and incoming (Rli) (or atmospheric) and outgoing (Rlo) or
terrestrial) longwave radiation using two CG1 Kipp and Zonen Pyrgeometers (one inverted) during the year of
2003. All pyranometers and Pyrgeometers were ventilated with four CV2 Kipp and Zonen ventilation systems
throughout the year to prevent deposition of dew, frost and snow, which otherwise would disturb the
measurements. We also measured the 2-m air temperature and relative humidity along with surface
temperature. All measurements were taken every 2 s, averaged to 20 min, continuously throughout the year 2000.
A Met One heated rain gauge measured precipitation. Comparison of the annual radiation budget components
indicates that about 25% of the annual Rsi (5848.6 MJ/ (squared m-y)) was reflected back to sky as Rso. Rli and
Rlo amounted to 9968.7 and 13303.5 MJ/ (squared m-y)), respectively. This yielded about 1364.9 MJ/ (squared m-
y)) available energy (Rn). Having the 2-m air temperature and moisture data and comparison between the
theoretical and the measured longwave radiation, we evaluated the 20-m cloudy conditions throughout the year of
2003. The average cloud base height was 587 m (ranged from zero for foggy conditions to about 3000 m).
Annual cloudiness contributed about 139.1 MJ/ (squared m-y)) more energy in this valley.
DE: 0321 Cloud/radiation interaction
DE: 3310 Clouds and cloud feedbacks
DE: 4908 Albedo
SC: Atmospheric Sciences [A]
MN: 2007 Joint Assembly