NASA Cold Land Processes Experiment (CLPX 2002/03): Ground-Based and Near-Surface Meteorological Observations

Author:

Elder Kelly1,Goodbody Angus1,Cline Don2,Houser Paul3,Liston Glen E.4,Mahrt Larry5,Rutter Nick6

Affiliation:

1. Rocky Mountain Research Station, USDA Forest Service, Fort Collins, Colorado

2. National Operational Remote Sensing Hydrology Center, National Weather Service, Chanhassen, Minnesota

3. Hydrologic Sciences Branch, NASA Goddard Space Flight Center, Greenbelt, Maryland

4. Cooperative Institute for Research in the Atmosphere, Colorado State University, Fort Collins, Colorado

5. Oregon State University, Corvallis, Oregon

6. Department of Geography, University of Sheffield, Sheffield, United Kingdom

Abstract

Abstract A short-term meteorological database has been developed for the Cold Land Processes Experiment (CLPX). This database includes meteorological observations from stations designed and deployed exclusively for CLPX as well as observations available from other sources located in the small regional study area (SRSA) in north-central Colorado. The measured weather parameters include air temperature, relative humidity, wind speed and direction, barometric pressure, short- and longwave radiation, leaf wetness, snow depth, snow water content, snow and surface temperatures, volumetric soil moisture content, soil temperature, precipitation, water vapor flux, carbon dioxide flux, and soil heat flux. The CLPX weather stations include 10 main meteorological towers, 1 tower within each of the nine intensive study areas (ISA) and one near the local scale observation site (LSOS); and 36 simplified towers, with one tower at each of the four corners of each of the nine ISAs, which measured a reduced set of parameters. An eddy covariance system within the North Park mesocell study area (MSA) collected a variety of additional parameters beyond the 10 standard CLPX tower components. Additional meteorological observations come from a variety of existing networks maintained by the U.S. Forest Service, U.S. Geological Survey, Natural Resource Conservation Service, and the Institute of Arctic and Alpine Research. Temporal coverage varies from station to station, but it is most concentrated during the 2002/03 winter season. These data are useful in local meteorological energy balance research and for model development and testing. These data can be accessed through the National Snow and Ice Data Center Web site.

Publisher

American Meteorological Society

Subject

Atmospheric Science

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